TY - JOUR A1 - Eckardt, Jan-Niklas A1 - Stasik, Sebastian A1 - Kramer, Michael A1 - Röllig, Christoph A1 - Krämer, Alwin A1 - Scholl, Sebastian A1 - Hochhaus, Andreas A1 - Crysandt, Martina A1 - Brümmendorf, Tim H. A1 - Naumann, Ralph A1 - Steffen, Björn A1 - Kunzmann, Volker A1 - Einsele, Hermann A1 - Schaich, Markus A1 - Burchert, Andreas A1 - Neubauer, Andreas A1 - Schäfer-Eckart, Kerstin A1 - Schliemann, Christoph A1 - Krause, Stefan W. A1 - Herbst, Regina A1 - Hänel, Mathias A1 - Frickhofen, Norbert A1 - Noppeney, Richard A1 - Kaiser, Ulrich A1 - Baldus, Claudia D. A1 - Kaufmann, Martin A1 - Rácil, Zdenek A1 - Platzbecker, Uwe A1 - Berdel, Wolfgang E. A1 - Mayer, Jiří A1 - Serve, Hubert A1 - Müller-Tidow, Carsten A1 - Ehninger, Gerhard A1 - Stölzel, Friedrich A1 - Kroschinsky, Frank A1 - Schetelig, Johannes A1 - Bornhäuser, Martin A1 - Thiede, Christian A1 - Middeke, Jan Moritz T1 - Loss-of-function mutations of BCOR are an independent marker of adverse outcomes in intensively treated patients with acute myeloid leukemia JF - Cancers N2 - Acute myeloid leukemia (AML) is characterized by recurrent genetic events. The BCL6 corepressor (BCOR) and its homolog, the BCL6 corepressor-like 1 (BCORL1), have been reported to be rare but recurrent mutations in AML. Previously, smaller studies have reported conflicting results regarding impacts on outcomes. Here, we retrospectively analyzed a large cohort of 1529 patients with newly diagnosed and intensively treated AML. BCOR and BCORL1 mutations were found in 71 (4.6%) and 53 patients (3.5%), respectively. Frequently co-mutated genes were DNTM3A, TET2 and RUNX1. Mutated BCORL1 and loss-of-function mutations of BCOR were significantly more common in the ELN2017 intermediate-risk group. Patients harboring loss-of-function mutations of BCOR had a significantly reduced median event-free survival (HR = 1.464 (95%-Confidence Interval (CI): 1.005–2.134), p = 0.047), relapse-free survival (HR = 1.904 (95%-CI: 1.163–3.117), p = 0.01), and trend for reduced overall survival (HR = 1.495 (95%-CI: 0.990–2.258), p = 0.056) in multivariable analysis. Our study establishes a novel role for loss-of-function mutations of BCOR regarding risk stratification in AML, which may influence treatment allocation. KW - acute myeloid leukemia KW - BCOR KW - BCORL1 KW - loss-of-function KW - risk stratification KW - survival Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-236735 SN - 2072-6694 VL - 13 IS - 9 ER - TY - JOUR A1 - Silvestri, Valentina A1 - Barrowdale, Daniel A1 - Mulligan, Anna Marie A1 - Neuhausen, Susan L. A1 - Fox, Stephen A1 - Karlan, Beth Y. A1 - Mitchell, Gillian A1 - James, Paul A1 - Thull, Darcy L. A1 - Zorn, Kristin K. A1 - Carter, Natalie J. A1 - Nathanson, Katherine L. A1 - Domchek, Susan M. A1 - Rebbeck, Timothy R. A1 - Ramus, Susan J. A1 - Nussbaum, Robert L. A1 - Olopade, Olufunmilayo I. A1 - Rantala, Johanna A1 - Yoon, Sook-Yee A1 - Caligo, Maria A. A1 - Spugnesi, Laura A1 - Bojesen, Anders A1 - Pedersen, Inge Sokilde A1 - Thomassen, Mads A1 - Jensen, Uffe Birk A1 - Toland, Amanda Ewart A1 - Senter, Leigha A1 - Andrulis, Irene L. A1 - Glendon, Gord A1 - Hulick, Peter J. A1 - Imyanitov, Evgeny N. A1 - Greene, Mark H. A1 - Mai, Phuong L. A1 - Singer, Christian F. A1 - Rappaport-Fuerhauser, Christine A1 - Kramer, Gero A1 - Vijai, Joseph A1 - Offit, Kenneth A1 - Robson, Mark A1 - Lincoln, Anne A1 - Jacobs, Lauren A1 - Machackova, Eva A1 - Foretova, Lenka A1 - Navratilova, Marie A1 - Vasickova, Petra A1 - Couch, Fergus J. A1 - Hallberg, Emily A1 - Ruddy, Kathryn J. A1 - Sharma, Priyanka A1 - Kim, Sung-Won A1 - Teixeira, Manuel R. A1 - Pinto, Pedro A1 - Montagna, Marco A1 - Matricardi, Laura A1 - Arason, Adalgeir A1 - Johannsson, Oskar Th A1 - Barkardottir, Rosa B. A1 - Jakubowska, Anna A1 - Lubinski, Jan A1 - Izquierdo, Angel A1 - Pujana, Miguel Angel A1 - Balmaña, Judith A1 - Diez, Orland A1 - Ivady, Gabriella A1 - Papp, Janos A1 - Olah, Edith A1 - Kwong, Ava A1 - Nevanlinna, Heli A1 - Aittomäki, Kristiina A1 - Segura, Pedro Perez A1 - Caldes, Trinidad A1 - Van Maerken, Tom A1 - Poppe, Bruce A1 - Claes, Kathleen B. M. A1 - Isaacs, Claudine A1 - Elan, Camille A1 - Lasset, Christine A1 - Stoppa-Lyonnet, Dominique A1 - Barjhoux, Laure A1 - Belotti, Muriel A1 - Meindl, Alfons A1 - Gehrig, Andrea A1 - Sutter, Christian A1 - Engel, Christoph A1 - Niederacher, Dieter A1 - Steinemann, Doris A1 - Hahnen, Eric A1 - Kast, Karin A1 - Arnold, Norbert A1 - Varon-Mateeva, Raymonda A1 - Wand, Dorothea A1 - Godwin, Andrew K. A1 - Evans, D. Gareth A1 - Frost, Debra A1 - Perkins, Jo A1 - Adlard, Julian A1 - Izatt, Louise A1 - Platte, Radka A1 - Eeles, Ros A1 - Ellis, Steve A1 - Hamann, Ute A1 - Garber, Judy A1 - Fostira, Florentia A1 - Fountzilas, George A1 - Pasini, Barbara A1 - Giannini, Giuseppe A1 - Rizzolo, Piera A1 - Russo, Antonio A1 - Cortesi, Laura A1 - Papi, Laura A1 - Varesco, Liliana A1 - Palli, Domenico A1 - Zanna, Ines A1 - Savarese, Antonella A1 - Radice, Paolo A1 - Manoukian, Siranoush A1 - Peissel, Bernard A1 - Barile, Monica A1 - Bonanni, Bernardo A1 - Viel, Alessandra A1 - Pensotti, Valeria A1 - Tommasi, Stefania A1 - Peterlongo, Paolo A1 - Weitzel, Jeffrey N. A1 - Osorio, Ana A1 - Benitez, Javier A1 - McGuffog, Lesley A1 - Healey, Sue A1 - Gerdes, Anne-Marie A1 - Ejlertsen, Bent A1 - Hansen, Thomas V. O. A1 - Steele, Linda A1 - Ding, Yuan Chun A1 - Tung, Nadine A1 - Janavicius, Ramunas A1 - Goldgar, David E. A1 - Buys, Saundra S. A1 - Daly, Mary B. A1 - Bane, Anita A1 - Terry, Mary Beth A1 - John, Esther M. A1 - Southey, Melissa A1 - Easton, Douglas F. A1 - Chenevix-Trench, Georgia A1 - Antoniou, Antonis C. A1 - Ottini, Laura T1 - Male breast cancer in BRCA1 and BRCA2 mutation carriers: pathology data from the Consortium of Investigators of Modifiers of BRCA1/2 JF - Breast Cancer Research N2 - Background BRCA1 and, more commonly, BRCA2 mutations are associated with increased risk of male breast cancer (MBC). However, only a paucity of data exists on the pathology of breast cancers (BCs) in men with BRCA1/2 mutations. Using the largest available dataset, we determined whether MBCs arising in BRCA1/2 mutation carriers display specific pathologic features and whether these features differ from those of BRCA1/2 female BCs (FBCs). Methods We characterised the pathologic features of 419 BRCA1/2 MBCs and, using logistic regression analysis, contrasted those with data from 9675 BRCA1/2 FBCs and with population-based data from 6351 MBCs in the Surveillance, Epidemiology, and End Results (SEER) database. Results Among BRCA2 MBCs, grade significantly decreased with increasing age at diagnosis (P = 0.005). Compared with BRCA2 FBCs, BRCA2 MBCs were of significantly higher stage (P for trend = 2 × 10−5) and higher grade (P for trend = 0.005) and were more likely to be oestrogen receptor–positive [odds ratio (OR) 10.59; 95 % confidence interval (CI) 5.15–21.80] and progesterone receptor–positive (OR 5.04; 95 % CI 3.17–8.04). With the exception of grade, similar patterns of associations emerged when we compared BRCA1 MBCs and FBCs. BRCA2 MBCs also presented with higher grade than MBCs from the SEER database (P for trend = 4 × 10−12). Conclusions On the basis of the largest series analysed to date, our results show that BRCA1/2 MBCs display distinct pathologic characteristics compared with BRCA1/2 FBCs, and we identified a specific BRCA2-associated MBC phenotype characterised by a variable suggesting greater biological aggressiveness (i.e., high histologic grade). These findings could lead to the development of gender-specific risk prediction models and guide clinical strategies appropriate for MBC management. KW - Male breast cancer KW - BRCA1/2 KW - Pathology KW - Histologic grade KW - Genotype–phenotype correlations Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-164769 VL - 18 IS - 15 ER - TY - THES A1 - Kramer, Christian T1 - Investigation of Nanostructure-Induced Localized Light Phenomena Using Ultrafast Laser Spectroscopy T1 - Untersuchung von nanostruktur-induzierten Lichtphänomenen mit Hilfe von Ultrakurzzeit-Laserspektroskopie N2 - In recent years, the interaction of light with subwavelength structures, i.e., structures that are smaller than the optical wavelength, became more and more interesting to scientific research, since it provides the opportunity to manipulate light-induced dynamics below the optical diffraction limit. Specifically designed nanomaterials can be utilized to tailor the temporal evolution of electromagnetic fields at the nanoscale. For the investigation of strongly localized processes, it is essential to resolve both their spatial and their temporal behavior. The aim of this thesis was to study and/or control the temporal evolution of three nanostructure-induced localized light phenomena by using ultrafast laser spectroscopy with high spatial resolution. In Chapter 4, the absorption of near-infrared light in thin-film a-Si:H solar cells was investigated. Using nanotextured instead of smooth interfaces for such devices leads to an increase of absorption from < 20% to more than 50% in the near-infrared regime. Time-resolved experiments with femtosecond laser pulses were performed to clarify the reason for this enhancement. The coherent backscattered radiation from nanotextured solar cell devices was measured as a function of the sample position and evaluated via spectral interferometry. Spatially varying resonance peaks in the recorded spectra indicated the formation of localized photonic modes within the nanotextured absorber layers. In order to identify the modes separately from each other, coherent two-dimensional (2D) nanoscopy was utilized, providing a high spatial resolution < 40 nm. In a nanoscopy measurement on a modified device with an exposed nanotextured a-Si:H absorber layer, hot-spot electron emission was observed and confirmed the presence of localized modes. Fitting the local 2D nanospectra at the hot-spot positions enabled the determination of the resonance frequencies and coherence lifetimes of the modes. The obtained lifetime values varied between 50 fs and 130 fs. Using a thermionic emission model allowed the calculation of the locally absorbed energy density and, with this, an estimation of the localization length of the photonic modes (≈1 μm). The localization could be classified by means of the estimated localization length and additional data evaluation of the backscattered spectra as strong localization ─ the so-called Anderson localization. Based on the experimental results, it was concluded that the enhanced absorption of near-infrared light in thin-film silicon solar cells with nanotextured interfaces is caused by the formation of strongly localized photonic modes within the disordered absorber layers. The incoming near-infrared light is trapped in these long-living modes until absorption occurs. In Chapter 5, a novel hybridized plasmonic device was introduced and investigated in both theory and experiment. It consists of two widely separated whispering gallery mode (WGM) nanoantennas located in an elliptical plasmonic cavity. The goal was to realize a periodic long-range energy transfer between the nanoantennas. In finite-difference time-domain (FDTD) simulations, the device was first optimized with respect to strong coupling between the localized antenna modes and the spatially-extended cavity mode. The geometrical parameters of the antennas and the cavity were adjusted separately so that the m="0" antenna mode and the cavity mode were resonant at λ="800 nm" . A high spatial overlap of the modes was achieved by positioning the two antennas in the focal spots of the cavity, leading to a distance between the antenna centers of more than twice the resonant wavelength of the modes. The spectral response of the optimized device revealed an energy splitting of the antenna and the cavity mode into three separated hybridized eigenmodes within an energy range of about 90 meV due to strong coupling. It could be well reproduced by a simple model of three coupled Lorentzian oscillators. In the time domain, an oscillatory energy transfer between both antennas with a period of 86 fs and an energy transfer efficiency of about 7% was observed for single-pulse excitation. For the experiments, devices with cavities and antennas of varying size were fabricated by means of focused-ion-beam (FIB) milling. Time-resolved correlation measurements were performed with high spatial and temporal resolution by using sequences of two femtosecond laser pulses for excitation and photoemission electron microscopy (PEEM) for detection. Local correlation traces at antennas in resonant devices, i.e., devices with enhanced electron emission at both antenna positions, were investigated and reconstructed by means of the coupled-oscillator model. The corresponding spectral response revealed separated peaks, confirming the formation of hybridized eigenmodes due to strong coupling. In a subsequent simulation for single-pulse excitation, one back-and-forth energy transfer between both antennas with an energy transfer efficiency of about 10% was observed. Based on the theoretical and experimental results, it was demonstrated that in the presented plasmonic device a periodic long-range energy transfer between the two nanoantennas is possible. Furthermore, the coupled-oscillator model enables one to study in depth how specific device properties impact the temporal electric-field dynamics within the device. This can be exploited to further optimize energy transfer efficiency of the device. Future applications are envisioned in ultrafast plasmonic nanocircuitry. Moreover, the presented device can be employed to realize efficient SPP-mediated strong coupling between widely separated quantum emitters. In Chapter 6, it was investigated in theory how the local optical chirality enhancement in the near field of plasmonic nanostructures can be optimized by tuning the far-field polarization of the incident light. An analytic expression was derived that enables the calculation of the optimal far-field polarizations, i.e., the two far-field polarizations which lead to the highest positive and negative local optical chirality, for any given nanostructure geometry. The two optimal far-field polarizations depend on the local optical response of the respective nanostructure and thus are functions of both the frequency ω and the position r. Their ellipticities differ only in their sign, i.e., in their direction of rotation in the time domain, and the angle between their orientations, i.e., the angle between the principal axes of their ellipses, is ±π/"2" . The handedness of optimal local optical chirality can be switched by switching between the optimal far-field polarizations. In numerical simulations, it was exemplarily shown for two specific nanostructure assemblies that the optimal local optical chirality can significantly exceed the optical chirality values of circularly polarized light in free space ─ the highest possible values in free space. The corresponding optimal far-field polarizations were different from linear and circular and varied with frequency. Using femtosecond polarization pulse shaping provides the opportunity to coherently control local optical chirality over a continuous frequency range. Furthermore, symmetry properties of nanostructures can be exploited to determine which far-field polarization is optimal. The theoretical findings can have impact on future experimental studies about local optical chirality enhancement. Tuning the far-field polarization of the incident light offers a promising tool to enhance chirally specific interactions of local electromagnetic fields with molecular and other quantum systems in the vicinity of plasmonic nanostructures. The presented approach can be utilized for applications in chiral sensing of adsorbed molecules, time-resolved chirality-sensitive spectroscopy, and chiral quantum control. In conclusion, each of the localized light phenomena that were investigated in this thesis ─ the enhanced local absorption of near-infrared light due to the formation of localized photonic modes, the periodic long-range energy transfer between two nanoantennas within an elliptical plasmonic cavity, and the optimization of local optical chirality enhancement by tuning the far-field polarization of the incident light ─ can open up new perspectives for a variety of future applications. . N2 - In den vergangenen Jahren rückte die Wechselwirkung von Licht mit Strukturen, deren Größe kleiner als die optische Wellenlänge ist, immer mehr in den Fokus der wissenschaftlichen Forschung, da sie die Möglichkeit bietet, lichtinduzierte Dynamiken unterhalb des optischen Beugungslimits zu manipulieren. Speziell hergestellte Nanomaterialien können verwendet werden, um die zeitliche Entwicklung von elektromagnetischen Feldern auf der Nanoskala zu steuern. Für die Untersuchung von stark lokalisierten Prozessen ist es essentiell, sowohl ihr räumliches als auch ihr zeitliches Verhalten aufzulösen. Das Ziel dieser Dissertation war es, die zeitliche Entwicklung von drei lokalisierten Lichtphänomenen, hervorgerufen durch drei unterschiedliche nanostrukturierte Materialien, mit Hilfe von Ultrakurzzeit-spektroskopie unter hoher räumlicher Auflösung zu untersuchen und/oder zu kontrollieren. In Kapitel 4 dieser Arbeit wurde die Absorption von Nahinfrarotlicht in a-Si:H Dünnschicht-Solarzellen untersucht. Durch die Verwendung von nanotexturierten statt glatten Grenzschichten erreicht man bei solchen Solarzellen einen Anstieg der Absorption von < 20% auf über 50% im Nahinfrarotbereich. Um der Ursache dieser Verstärkung auf den Grund zu gehen, wurden zeitaufgelöste Experimente mit Femtosekundenlaserpulsen durchgeführt. Zunächst wurde die kohärente zurückgestreute Strahlung von nanotexturierten Solarzellen in Abhängigkeit der Probenposition gemessen und mit Hilfe von spektraler Interferometrie ausgewertet. Räumlich variierende Resonanzpeaks in den aufgenommenen Spektren deuteten auf die Bildung von lokalisierten photonischen Moden innerhalb der nanotexturierten Absorberschichten hin. Um die Moden räumlich getrennt voneinander identifizieren zu können, wurde anschließend die Methode der kohärenten zweidimensionalen (2D) Nanoskopie angewandt, die eine hohe räumliche Auflösung < 40 nm ermöglichte. In einer Nanoskopie-Messung an einer modifizierten Solarzellen-Probe mit einer freiliegenden nanotexturierten a-Si:H Absorberschicht wurde eine Elektronenemission beobachtet, die von räumlich begrenzten Hot Spots dominiert war und das Vorhandensein von lokalisierten Moden bestätigte. Über das Fitten der lokalen 2D Nanospektren an den Positionen der Hot Spots wurden die Resonanzfrequenzen und die Kohärenzlebenszeiten der Moden bestimmt. Die ermittelten Werte für die Lebenszeiten lagen zwischen 50 fs und 130 fs. Mit Hilfe eines Modells für thermionische Elektronenemission konnte die lokal absorbierte Energiedichte bestimmt und damit die Lokalisierungslänge der photonischen Moden auf etwa 1 μm abgeschätzt werden. Zudem konnte die Lokalisierung über die abgeschätzte Lokalisierungslänge und eine zusätzliche Datenauswertung der zurückgestreuten Spektren als starke Lokalisierung, die sogenannte Anderson-Lokalisierung, klassifiziert werden. Auf der Basis der experimentellen Ergebnisse wurde daher geschlussfolgert, dass die verstärkte Absorption von Nahinfrarotlicht in Silizium-Dünnschicht-Solarzellen mit nanotexturierten Grenzschichten durch die Bildung von stark lokalisierten photonischen Moden innerhalb der ungeordneten Absorberschichten verursacht wird. Das einfallende Nahinfrarotlicht wird in diesen langlebigen Moden gefangen, bis es schließlich irgendwann absorbiert wird. In Kaptiel 5 wurde eine neuartige plasmonische Struktur vorgestellt und sowohl in der Theorie als auch experimentell untersucht. Die Struktur besteht aus einer elliptischen Kavität, in der sich zwei räumlich getrennte whispering gallery mode (WGM) Nanoantennen befinden. Das Ziel war es nun, einen periodischen langreichweitigen Energietransfer zwischen beiden Nanoantennen zu realisieren. Zuerst wurde die Struktur mit Hilfe von finite-difference time-domain (FDTD) Simulationen darauf optimiert, eine starke Kopplung zwischen den lokalisierten Antennenmoden und der räumlich ausgedehnten Kavitätsmode zu erreichen. Die geometrischen Parameter der Antennen und der Kavität wurden getrennt voneinander so eingestellt, dass sowohl die m="0" Antennenmode als auch die Kavitätsmode bei λ="800 nm" resonant waren. Ein hoher räumlicher Modenüberlapp wurde dadurch erzielt, dass die beiden Antennen jeweils in die Brennpunkte der elliptischen Kavität positioniert wurden. Die daraus resultierende Distanz zwischen den Antennenzentren war dadurch mehr als doppelt so hoch wie die Resonanzwellenlänge der Moden. Aufgrund starker Kopplung war in der spektralen Antwort der optimierten Struktur eine Energieaufspaltung der Antennen- und der Kavitätsmode in drei getrennte hybridisierte Eigenmoden innerhalb eines Energiebereichs von ca. 90 meV zu sehen. Die Antwortfunktionen konnten sehr gut mit Hilfe eines einfachen Modells aus drei gekoppelten Lorentz-Oszillatoren reproduziert werden. Im Zeitraum wurde für eine Einfach-Puls-Anregung der Struktur ein ozillatorischer Antennen-Energietransfer mit einer Periode von 86 fs und einer Energietransfer-Effizienz von ungefähr 7% beobachtet. Für die Experimente wurden Strukturen mit Kavitäten und Antennen unterschiedlicher Größe über focused-ion-beam (FIB) milling hergestellt. Es wurden zeitaufgelöste Korrelationsmessungen durchgeführt, wobei zwei Femtosekundenlaserpulse zur Anregung und Photoemissionselektronen-Mikroskopie (PEEM) für die Detektion verwendet wurden. Dies ermöglichte sowohl eine hohe zeitliche als auch eine hohe räumliche Auflösung. In den Messungen wurden lokale Korrelationssignale an Antennen in resonanten Strukturen, sprich, Strukturen mit deutlich erhöhter Photoemission an beiden Antennenpositionen, untersucht und mit Hilfe des gekoppelten Lorentz-Oszillatormodells rekonstruiert. Die daraus ermittelte spektrale Antwort zeigte getrennte Peaks und bestätigte damit die Bildung hybridisierter Eigenmoden aufgrund starker Kopplung. In einer nachfolgenden Simulation für Einfach-Puls-Anregung wurde ein einmaliger Hin-und-Her-Energietransfer zwischen den Antennen mit einer Energietransfereffizienz von ca. 10% beobachtet. Ausgehend von den theoretischen und experimentellen Ergebnissen wurde gezeigt, dass in der hier vorgestellten Struktur ein periodischer langreichweitiger Energietransfer zwischen den zwei Nanoantennen möglich ist. Zudem ermöglicht es das gekoppelte Oszillatoren-Modell, im Detail zu untersuchen, wie spezifische Eigenschaften der Struktur die Dynamik des zeitlichen elektrischen Feldes bzw. der Energieumverteilung innerhalb der Struktur beeinflussen. Dies kann dazu genutzt werden, die Energietransfer-Effizienz der Struktur noch weiter zu optimieren. Zukünftige Anwendungsmöglichkeiten finden sich im Bereich der ultraschnellen plasmonischen Nanoschaltkreise. Darüberhinaus kann die Struktur genutzt werden, um eine effiziente SPP-vermittelte starke Kopplung zwischen weit voneinder entfernten Quantenemittern zu erreichen. In Kapitel 6 wurde untersucht, wie die lokale Verstärkung der optischen Chiralität im Nahfeld plasmonischer Nanostrukturen durch das Einstellen der Fernfeld-Polarisation des einfallenden Lichts optimiert werden kann. Zu diesem Zweck wurde ein analytischer Ausdruck hergeleitet, welcher die Berechnung der optimalen Fernfeld-Polarisationen für jede beliebige Nanostruktur-Geometrie ermöglicht. Dabei versteht man unter den optimalen Fernfeld-Polarisationen diejenigen zwei, welche zur höchsten positiven und negativen lokalen optischen Chiralität führen. Da diese von der lokalen optischen Antwort der jeweiligen Nanostruktur abhängig sind, lassen sie sich sowohl als Funktion der Frequenz ω als auch als Funktion der Position r beschreiben. Die Elliptizitäten der beiden optimalen Fernfeld-Polarisationen unterscheiden sich nur in ihrem Vorzeichen, also ihrer Rotationsrichtung im Zeitraum, und der Winkel zwischen ihren Orientierungen (entspricht dem Winkel zwischen den Hauptachsen ihrer Ellipsen) beträgt ±π/"2" . Die Händigkeit der optimalen lokalen optischen Chiralität kann über das Schalten zwischen den optimalen Fernfeld-Polarisationen hin und her gewechselt werden. Mit Hilfe von numerischen Simulationen wurde für zwei konkrete Nanostrukturen beispielhaft demonstriert, dass für die lokale optische Chiralität Werte erreicht werden können, die deutlich höher sind als die optischen Chiralitätswerte von zirkular polarisiertem Licht im freien Raum ─ die höchstmöglichen Werte für optische Chiralität im freien Raum. Die entsprechenden optimalen Fernfeld-Polarisationen haben sich dabei von linearer und zirkularer Polarisation unterschieden und variierten mit der Frequenz. Die Anwendung von Femtosekunden-Polarisationspulsformung bietet die Möglichkeit, die lokale optische Chiralität kohärent über einen kontinuierlichen Frequenzbereich zu kontrollieren. Außerdem können Symmetrieeigenschaften der Nanostrukturen genutzt werden, um zu bestimmen, welche Fernfeld-Polarisation optimal ist. Die theoretischen Erkenntnisse können zukünftige experimentelle Studien über die lokale Verstärkung der optischen Chiralität beeinflussen. Das Einstellen der Fernfeld-Polarisation des einfallenden Lichts stellt ein vielversprechendes Hilfsmittel dar, um chiral-spezifische Wechselwirkungen von lokalen elektromagnetischen Feldern mit molekularen und anderen Quantensystemen in der Nähe plasmonischer Nanostrukturen zu verstärken. Die hier gezeigte Methode kann Anwendung finden in der chiralen Erkennung adsorbierter Moleküle, in der zeitaufgelösten chiral-sensitiven Spektroskopie und in der chiralen Quantenkontrolle. Abschließend lässt sich festhalten, dass jedes der lokalisierten Lichtphänomene, die in dieser Arbeit untersucht wurden ─ die verstärkte lokale Absorption von Nahinfrarotlicht aufgrund der Bildung von lokalisierten photonischen Moden, der periodische langreichweitige Energietransfer zwischen zwei Nanoantennen in einer plasmonischen elliptischen Kavität und die Optimierung der lokalen Verstärkung der optischen Chiralität über das Einstellen der Fernfeld-Polarisation des einfallenden Lichts ─ neue Perspektiven eröffnen kann für eine Vielzahl von zukünftigen Anwendungsmöglichkeiten. KW - Ultrakurzzeitspektroskopie KW - Kohärente Optik KW - Chiralität KW - Nahfeldoptik KW - Ultrakurzzeitspektroskopie KW - Nahfeldoptik KW - Kohärente 2D Spektroskopie KW - Oberflächenplasmonresonanz KW - Zirkulardichroismus Spektroskopie KW - Ultrafast spectroscopy KW - Nano-optics KW - Coherent 2D spectroscopy KW - Surface plasmons KW - Circular dichroism spectroscopy Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-150681 ER - TY - JOUR A1 - van Koolwijk, Leonieke M. E. A1 - Ramdas, Wishal D. A1 - Ikram, M. Kamran A1 - Jansonius, Nomdo M. A1 - Pasutto, Francesca A1 - Hys, Pirro G. A1 - Macgregor, Stuart A1 - Janssen, Sarah F. A1 - Hewitt, Alex W. A1 - Viswanathan, Ananth C. A1 - ten Brink, Jacoline B. A1 - Hosseini, S. Mohsen A1 - Amin, Najaf A1 - Despriet, Dominiek D. G. A1 - Willemse-Assink, Jacqueline J. M. A1 - Kramer, Rogier A1 - Rivadeneira, Fernando A1 - Struchalin, Maksim A1 - Aulchenko, Yurii S. A1 - Weisschuh, Nicole A1 - Zenkel, Matthias A1 - Mardin, Christian Y. A1 - Gramer, Eugen A1 - Welge-Lüssen, Ulrich A1 - Montgomery, Grant W. A1 - Carbonaro, Francis A1 - Young, Terri L. A1 - Bellenguez, Céline A1 - McGuffin, Peter A1 - Foster, Paul J. A1 - Topouzis, Fotis A1 - Mitchell, Paul A1 - Wang, Jie Jin A1 - Wong, Tien Y. A1 - Czudowska, Monika A. A1 - Hofman, Albert A1 - Uitterlinden, Andre G. A1 - Wolfs, Roger C. W. A1 - de Jong, Paulus T. V. M. A1 - Oostra, Ben A. A1 - Paterson, Andrew D. A1 - Mackey, David A. A1 - Bergen, Arthur A. B. A1 - Reis, Andre A1 - Hammond, Christopher J. A1 - Vingerling, Johannes R. A1 - Lemij, Hans G. A1 - Klaver, Caroline C. W. A1 - van Duijn, Cornelia M. T1 - Common Genetic Determinants of Intraocular Pressure and Primary Open-Angle Glaucoma JF - PLoS Genetics N2 - Intraocular pressure (IOP) is a highly heritable risk factor for primary open-angle glaucoma and is the only target for current glaucoma therapy. The genetic factors which determine IOP are largely unknown. We performed a genome-wide association study for IOP in 11,972 participants from 4 independent population-based studies in The Netherlands. We replicated our findings in 7,482 participants from 4 additional cohorts from the UK, Australia, Canada, and the Wellcome Trust Case-Control Consortium 2/Blue Mountains Eye Study. IOP was significantly associated with rs11656696, located in GAS7 at 17p13.1 (p = 1.4 x 10\(^{-8}\)), and with rs7555523, located in TMCO1 at 1q24.1 (p = 1.6 x 10\(^{-8}\)). In a meta-analysis of 4 case-control studies (total N = 1,432 glaucoma cases), both variants also showed evidence for association with glaucoma (p = 2.4 x 10\(^{-2}\) for rs11656696 and p = 9.1 x 10\(^{-4}\) for rs7555523). GAS7 and TMCO1 are highly expressed in the ciliary body and trabecular meshwork as well as in the lamina cribrosa, optic nerve, and retina. Both genes functionally interact with known glaucoma disease genes. These data suggest that we have identified two clinically relevant genes involved in IOP regulation. KW - expression KW - goldmann applanation tonometer KW - central corneal thickness KW - genome-wide scan KW - beaver-dam eye KW - to-disc ratio KW - onset KW - association KW - identification KW - population Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-131378 VL - 8 IS - 5 ER - TY - JOUR A1 - Willems, Coen H. M. P. A1 - Urlichs, Florian A1 - Seidenspinner, Silvia A1 - Kunzmann, Steffen A1 - Speer, Christian P. A1 - Kramer, Boris W. T1 - Poractant alfa (Curosurf (R)) increases phagocytosis of apoptotic neutrophils by alveolar macrophages in vivo JF - Respiratory Research N2 - Background: Clearance of apoptotic neutrophils in the lung is an essential process to limit inflammation, since they could become a pro-inflammatory stimulus themselves. The clearance is partially mediated by alveolar macrophages, which phagocytose these apoptotic cells. The phagocytosis of apoptotic immune cells by monocytes in vitro has been shown to be augmented by several constituents of pulmonary surfactant, e. g. phospholipids and hydrophobic surfactant proteins. In this study, we assessed the influence of exogenous poractant alfa (Curosurf (R)) instillation on the in vivo phagocytosis of apoptotic neutrophils by alveolar macrophages. Methods: Poractant alfa (200 mg/kg) was instilled intratracheally in the lungs of three months old adult male C57/Black 6 mice, followed by apoptotic neutrophil instillation. Bronchoalveloar lavage was performed and alveolar macrophages and neutrophils were counted. Phagocytosis of apoptotic neutrophils was quantified by determining the number of apoptotic neutrophils per alveolar macrophages. Results: Exogenous surfactant increased the number of alveolar macrophages engulfing apoptotic neutrophils 2.6 fold. The phagocytosis of apoptotic neutrophils was increased in the presence of exogenous surfactant by a 4.7 fold increase in phagocytosed apoptotic neutrophils per alveolar macrophage. Conclusions: We conclude that the anti-inflammatory properties of surfactant therapy may be mediated in part by increased numbers of alveolar macrophages and increased phagocytosis of apoptotic neutrophils by alveolar macrophages. KW - preterm KW - surfactant protein-A KW - respiratory-distress-syndrome KW - synthetic surfactant KW - human monocytes KW - SIRP-alpha KW - lung KW - cells KW - inflammation KW - resolution KW - anti inflammation KW - drug therapy KW - surfactant Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-130721 VL - 13 IS - 17 ER - TY - JOUR A1 - Laug, Roderich A1 - Fehrholz, Markus A1 - Schütze, Norbert A1 - Kramer, Boris W. A1 - Krump-Konvalinkova, Vera A1 - Speer, Christian P. A1 - Kunzmann, Steffen T1 - IFN-gamma and TNF-alpha synergize to inhibit CTGF expression in human lung endothelial cells N2 - Connective tissue growth factor (CTGF/CCN2) is an angiogenetic and profibrotic factor, acting downstream of TGF-b, involved in both airway- and vascular remodeling. While the T-helper 1 (Th1) cytokine interferon-gamma (IFN-c) is well characterized as immune-modulatory and anti-fibrotic cytokine, the role of IFN-c in lung endothelial cells (LEC) is less defined. Tumour necrosis factor alpha (TNF-a) is another mediator that drives vascular remodeling in inflammation by influencing CTGF expression. In the present study we investigated the influence of IFN-c and TNF-a on CTGF expression in human LEC (HPMEC-ST1.6R) and the effect of CTGF knock down on human LEC. IFN-c and TNF-a down-regulated CTGF in human LEC at the promoter-, transcriptional- and translational-level in a dose- and time-dependent manner. The inhibitory effect of IFN-c on CTGF-expression could be almost completely compensated by the Jak inhibitor AG-490, showing the involvement of the Jak-Stat signaling pathway. Besides the inhibitory effect of IFN-c and TNF-a alone on CTGF expression and LEC proliferation, these cytokines had an additive inhibitory effect on proliferation as well as on CTGF expression when administered together. To study the functional role of CTGF in LEC, endogenous CTGF expression was down-regulated by a lentiviral system. CTGF silencing in LEC by transduction of CTGF shRNA reduced cell proliferation, but did not influence the anti-proliferative effect of IFN-c and TNF-a. In conclusion, our data demonstrated that CTGF was negatively regulated by IFN-c in LEC in a Jak/Stat signaling pathway-dependent manner. In addition, an additive effect of IFN-c and TNF-a on inhibition of CTGF expression and cell proliferation could be found. The inverse correlation between IFN-c and CTGF expression in LEC could mean that screwing the Th2 response to a Th1 response with an additional IFN-c production might be beneficial to avoid airway remodeling in asthma. KW - Medizin Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-76253 ER - TY - JOUR A1 - Fehrholz, Markus A1 - Bersani, Iliana A1 - Kramer, Boris W. A1 - Speer, Christian P. A1 - Kunzmann, Steffen T1 - Synergistic Effect of Caffeine and Glucocorticoids on Expression of Surfactant Protein B (SP-B) mRNA N2 - Administration of glucocorticoids and caffeine is a common therapeutic intervention in the neonatal period, but possible interactions between these substances are still unclear. The present study investigated the effect of caffeine and different glucocorticoids on expression of surfactant protein (SP)-B, crucial for the physiological function of pulmonary surfactant. We measured expression levels of SP-B, various SP-B transcription factors including erythroblastic leukemia viral oncogene homolog 4 (ErbB4) and thyroid transcription factor-1 (TTF-1), as well as the glucocorticoid receptor (GR) after administering different doses of glucocorticoids, caffeine, cAMP, or the phosphodiesterase-4 inhibitor rolipram in the human airway epithelial cell line NCI-H441. Administration of dexamethasone (1 mM) or caffeine (5 mM) stimulated SP-B mRNA expression with a maximal of 38.8611.1-fold and 5.261.4-fold increase, respectively. Synergistic induction was achieved after coadministration of dexamethasone (1 mM) in combination with caffeine (10 mM) (206659.7-fold increase, p,0.0001) or cAMP (1 mM) (2136111-fold increase, p = 0.0108). SP-B mRNA was synergistically induced also by administration of caffeine with hydrocortisone (87.9639.0), prednisolone (154666.8), and betamethasone (12366.4). Rolipram also induced SP-B mRNA (64.9621.0-fold increase). We detected a higher expression of ErbB4 and GR mRNA (7.0- and 1.7-fold increase, respectively), whereas TTF-1, Jun B, c-Jun, SP1, SP3, and HNF-3a mRNA expression was predominantly unchanged. In accordance with mRNA data, mature SP-B was induced significantly by dexamethasone with caffeine (13.869.0-fold increase, p = 0.0134). We found a synergistic upregulation of SP-B mRNA expression induced by co-administration of various glucocorticoids and caffeine, achieved by accumulation of intracellular cAMP. This effect was mediated by a caffeinedependent phosphodiesterase inhibition and by upregulation of both ErbB4 and the GR. These results suggested that caffeine is able to induce the expression of SP-transcription factors and affects the signaling pathways of glucocorticoids, amplifying their effects. Co-administration of caffeine and corticosteroids may therefore be of benefit in surfactant homeostasis. KW - Medizin Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-77927 ER - TY - JOUR A1 - Krämer, Johannes A1 - Bijnens, Bart A1 - Störk, Stefan A1 - Ritter, Christian O. A1 - Liu, Dan A1 - Ertl, Georg A1 - Wanner, Christoph A1 - Weidemann, Frank T1 - Left ventricular geometry and blood pressure as predictors of adverse progression of Fabry cardiomyopathy JF - PLoS ONE N2 - Background In spite of several research studies help to describe the heart in Fabry disease (FD), the cardiomyopathy is not entirely understood. In addition, the impact of blood pressure and alterations in geometry have not been systematically evaluated. Methods In 74 FD patients (mean age 36±12 years; 45 females) the extent of myocardial fibrosis and its progression were quantified using cardiac magnetic-resonance-imaging with late enhancement technique (LE). Results were compared to standard echocardiography complemented by 2D-speckle-tracking, 3D-sphericity-index (SI) and standardized blood pressure measurement. At baseline, no patient received enzyme replacement therapy (ERT). After 51±24 months, a follow-up examination was performed. Results Systolic blood pressure (SBP) was higher in patients with vs. without LE: 123±17 mmHg vs. 115±13 mmHg; P = 0.04. A positive correlation was found between SI and the amount of LE-positive myocardium (r = 0.51; P<0.001) indicating an association of higher SI in more advanced stages of the cardiomyopathy. SI at baseline was positively associated with the increase of LE-positive myocardium during follow-up. The highest SBP (125±19 mmHg) and also the highest SI (0.32±0.05) was found in the subgroup with a rapidly increasing LE (ie, ≥0.2% per year; n = 16; P = 0.04). Multivariate logistic regression analysis including SI, SBP, EF, left ventricular volumes, wall thickness and NT-proBNP adjusted for age and sex showed SI as the most powerful parameter to detect rapid progression of LE (AUC = 0.785; P<0.05). Conclusions LV geometry as assessed by the sphericity index is altered in relation to the stage of the Fabry cardiomyopathy. Although patients with FD are not hypertensive, the SBP has a clear impact on the progression of the cardiomyopathy. KW - cardiovascular magnetic resonance KW - clinical manifestations KW - disease KW - identification KW - fibrosis KW - 2-dimensional speckle tracking KW - myocardial infarction KW - therapy KW - diagnosis KW - impact Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-145131 VL - 10 IS - 11 ER - TY - JOUR A1 - Aeschlimann, Martin A1 - Brixner, Tobias A1 - Cinchetti, Mirko A1 - Frisch, Benjamin A1 - Hecht, Bert A1 - Hensen, Matthias A1 - Huber, Bernhard A1 - Kramer, Christian A1 - Krauss, Enno A1 - Loeber, Thomas H. A1 - Pfeiffer, Walter A1 - Piecuch, Martin A1 - Thielen, Philip T1 - Cavity-assisted ultrafast long-range periodic energy transfer between plasmonic nanoantennas JF - Light: Science & Applications N2 - Radiationless energy transfer is at the core of diverse phenomena, such as light harvesting in photosynthesis\(^1\), energy-transfer-based microspectroscopies\(^2\), nanoscale quantum entanglement\(^3\) and photonic-mode hybridization\(^4\). Typically, the transfer is efficient only for separations that are much shorter than the diffraction limit. This hampers its application in optical communication and quantum information processing, which require spatially selective addressing. Here, we demonstrate highly efficient radiationless coherent energy transfer over a distance of twice the excitation wavelength by combining localized and delocalized\(^5\) plasmonic modes. Analogous to the Tavis-Cummings model, two whispering-gallery-mode antennas\(^6\) placed in the foci of an elliptical plasmonic cavity\(^7\) fabricated from single-crystal gold plates act as a pair of oscillators coupled to a common cavity mode. Time-resolved two-photon photoemission electron microscopy (TR 2P-PEEM) reveals an ultrafast long-range periodic energy transfer in accordance with the simulations. Our observations open perspectives for the optimization and tailoring of mesoscopic energy transfer and long-range quantum emitter coupling. KW - chemistry KW - nanocavities KW - nanophotonics and plasmonics KW - photonic devices Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-173265 VL - 6 ER - TY - JOUR A1 - Stetter, Christian A1 - Lopez-Caperuchipi, Simon A1 - Hopp-Krämer, Sarah A1 - Bieber, Michael A1 - Kleinschnitz, Christoph A1 - Sirén, Anna-Leena A1 - Albert-Weißenberger, Christiane T1 - Amelioration of cognitive and behavioral deficits after traumatic brain injury in coagulation factor XII deficient mice JF - International Journal of Molecular Sciences N2 - Based on recent findings that show that depletion of factor XII (FXII) leads to better posttraumatic neurological recovery, we studied the effect of FXII-deficiency on post-traumatic cognitive and behavioral outcomes in female and male mice. In agreement with our previous findings, neurological deficits on day 7 after weight-drop traumatic brain injury (TBI) were significantly reduced in FXII\(^{−/−}\) mice compared to wild type (WT) mice. Also, glycoprotein Ib (GPIb)-positive platelet aggregates were more frequent in brain microvasculature of WT than FXII\(^{−/−}\) mice 3 months after TBI. Six weeks after TBI, memory for novel object was significantly reduced in both female and male WT but not in FXII\(^{−/−}\) mice compared to sham-operated mice. In the setting of automated home-cage monitoring of socially housed mice in IntelliCages, female WT mice but not FXII\(^{−/−}\) mice showed decreased exploration and reacted negatively to reward extinction one month after TBI. Since neuroendocrine stress after TBI might contribute to trauma-induced cognitive dysfunction and negative emotional contrast reactions, we measured peripheral corticosterone levels and the ration of heart, lung, and spleen weight to bodyweight. Three months after TBI, plasma corticosterone levels were significantly suppressed in both female and male WT but not in FXII\(^{−/−}\) mice, while the relative heart weight increased in males but not in females of both phenotypes when compared to sham-operated mice. Our results indicate that FXII deficiency is associated with efficient post-traumatic behavioral and neuroendocrine recovery. KW - closed head injury KW - contact-kinin system KW - object recognition memory KW - IntelliCage KW - Crespi effect KW - stress Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-284959 SN - 1422-0067 VL - 22 IS - 9 ER - TY - JOUR A1 - Kramer, Susanne A1 - Meyer-Natus, Elisabeth A1 - Stigloher, Christian A1 - Thoma, Hanna A1 - Schnaufer, Achim A1 - Engstler, Markus T1 - Parallel monitoring of RNA abundance, localization and compactness with correlative single molecule FISH on LR White embedded samples JF - Nucleic Acids Research N2 - Single mRNA molecules are frequently detected by single molecule fluorescence in situ hybridization (smFISH) using branched DNA technology. While providing strong and background-reduced signals, the method is inefficient in detecting mRNAs within dense structures, in monitoring mRNA compactness and in quantifying abundant mRNAs. To overcome these limitations, we have hybridized slices of high pressure frozen, freeze-substituted and LR White embedded cells (LR White smFISH). mRNA detection is physically restricted to the surface of the resin. This enables single molecule detection of RNAs with accuracy comparable to RNA sequencing, irrespective of their abundance, while at the same time providing spatial information on RNA localization that can be complemented with immunofluorescence and electron microscopy, as well as array tomography. Moreover, LR White embedding restricts the number of available probe pair recognition sites for each mRNA to a small subset. As a consequence, differences in signal intensities between RNA populations reflect differences in RNA structures, and we show that the method can be employed to determine mRNA compactness. We apply the method to answer some outstanding questions related to trans-splicing, RNA granules and mitochondrial RNA editing in single-cellular trypanosomes and we show an example of differential gene expression in the metazoan Caenorhabditis elegans. KW - mRNA Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-230647 VL - 49 IS - 3 ER - TY - JOUR A1 - Vellmer, Tim A1 - Hartleb, Laura A1 - Fradera Sola, Albert A1 - Kramer, Susanne A1 - Meyer-Natus, Elisabeth A1 - Butter, Falk A1 - Janzen, Christian J. T1 - A novel SNF2 ATPase complex in Trypanosoma brucei with a role in H2A.Z-mediated chromatin remodelling JF - PLoS Pathogens N2 - A cascade of histone acetylation events with subsequent incorporation of a histone H2A variant plays an essential part in transcription regulation in various model organisms. A key player in this cascade is the chromatin remodelling complex SWR1, which replaces the canonical histone H2A with its variant H2A.Z. Transcriptional regulation of polycistronic transcription units in the unicellular parasite Trypanosoma brucei has been shown to be highly dependent on acetylation of H2A.Z, which is mediated by the histone-acetyltransferase HAT2. The chromatin remodelling complex which mediates H2A.Z incorporation is not known and an SWR1 orthologue in trypanosomes has not yet been reported. In this study, we identified and characterised an SWR1-like remodeller complex in T. brucei that is responsible for Pol II-dependent transcriptional regulation. Bioinformatic analysis of potential SNF2 DEAD/Box helicases, the key component of SWR1 complexes, identified a 1211 amino acids-long protein that exhibits key structural characteristics of the SWR1 subfamily. Systematic protein-protein interaction analysis revealed the existence of a novel complex exhibiting key features of an SWR1-like chromatin remodeller. RNAi-mediated depletion of the ATPase subunit of this complex resulted in a significant reduction of H2A.Z incorporation at transcription start sites and a subsequent decrease of steady-state mRNA levels. Furthermore, depletion of SWR1 and RNA-polymerase II (Pol II) caused massive chromatin condensation. The potential function of several proteins associated with the SWR1-like complex and with HAT2, the key factor of H2A.Z incorporation, is discussed. KW - Trypanosoma KW - chromatin KW - histones KW - RNA interference KW - Trypanosoma brucei gambiense KW - luciferase KW - transcriptional control KW - nucleosomes Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-301372 VL - 18 IS - 6 ER - TY - JOUR A1 - Goos, Carina A1 - Dejung, Mario A1 - Janzen, Christian J. A1 - Butter, Falk A1 - Kramer, Susanne T1 - The nuclear proteome of Trypanosoma brucei JF - PLoS ONE N2 - Trypanosoma brucei is a protozoan flagellate that is transmitted by tsetse flies into the mammalian bloodstream. The parasite has a huge impact on human health both directly by causing African sleeping sickness and indirectly, by infecting domestic cattle. The biology of trypanosomes involves some highly unusual, nuclear-localised processes. These include polycistronic transcription without classical promoters initiated from regions defined by histone variants, trans-splicing of all transcripts to the exon of a spliced leader RNA, transcription of some very abundant proteins by RNA polymerase I and antigenic variation, a switch in expression of the cell surface protein variants that allows the parasite to resist the immune system of its mammalian host. Here, we provide the nuclear proteome of procyclic Trypanosoma brucei, the stage that resides within the tsetse fly midgut. We have performed quantitative label-free mass spectrometry to score 764 significantly nuclear enriched proteins in comparison to whole cell lysates. A comparison with proteomes of several experimentally characterised nuclear and non-nuclear structures and pathways confirmed the high quality of the dataset: the proteome contains about 80% of all nuclear proteins and less than 2% false positives. Using motif enrichment, we found the amino acid sequence KRxR present in a large number of nuclear proteins. KRxR is a sub-motif of a classical eukaryotic monopartite nuclear localisation signal and could be responsible for nuclear localization of proteins in Kinetoplastida species. As a proof of principle, we have confirmed the nuclear localisation of six proteins with previously unknown localisation by expressing eYFP fusion proteins. While proteome data of several T. brucei organelles have been published, our nuclear proteome closes an important gap in knowledge to study trypanosome biology, in particular nuclear-related processes. KW - Trypanosoma KW - gambiense KW - Trypanosoma brucei KW - proteomes KW - yellow fluorescent protein KW - mitochondria KW - protein structure KW - histones Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-158572 VL - 12 IS - 7 ER - TY - JOUR A1 - Zimmermann, Henriette A1 - Subota, Ines A1 - Batram, Christopher A1 - Kramer, Susanne A1 - Janzen, Christian J. A1 - Jones, Nicola G. A1 - Engstler, Markus T1 - A quorum sensing-independent path to stumpy development in Trypanosoma brucei JF - PLoS Pathogens N2 - For persistent infections of the mammalian host, African trypanosomes limit their population size by quorum sensing of the parasite-excreted stumpy induction factor (SIF), which induces development to the tsetse-infective stumpy stage. We found that besides this cell density-dependent mechanism, there exists a second path to the stumpy stage that is linked to antigenic variation, the main instrument of parasite virulence. The expression of a second variant surface glycoprotein (VSG) leads to transcriptional attenuation of the VSG expression site (ES) and immediate development to tsetse fly infective stumpy parasites. This path is independent of SIF and solely controlled by the transcriptional status of the ES. In pleomorphic trypanosomes varying degrees of ES-attenuation result in phenotypic plasticity. While full ES-attenuation causes irreversible stumpy development, milder attenuation may open a time window for rescuing an unsuccessful antigenic switch, a scenario that so far has not been considered as important for parasite survival. KW - Trypanosoma KW - hyperexpression techniques KW - parasitic cell cycles KW - cloning KW - cell cycle and cell division KW - cell differentiation KW - tetracyclines KW - parasitic diseases Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-158230 VL - 13 IS - 4 ER - TY - JOUR A1 - Silwedel, Christine A1 - Hütten, Matthias C. A1 - Speer, Christian P. A1 - Härtel, Christoph A1 - Haarmann, Axel A1 - Henrich, Birgit A1 - Tijssen, Maud P. M. A1 - Alnakhli, Abdullah Ahmed A1 - Spiller, Owen B. A1 - Schlegel, Nicolas A1 - Seidenspinner, Silvia A1 - Kramer, Boris W. A1 - Glaser, Kirsten T1 - Ureaplasma-driven neonatal neuroinflammation: novel insights from an ovine model JF - Cellular and Molecular Neurobiology N2 - Ureaplasma species (spp.) are considered commensals of the adult genitourinary tract, but have been associated with chorioamnionitis, preterm birth, and invasive infections in neonates, including meningitis. Data on mechanisms involved in Ureaplasma-driven neuroinflammation are scarce. The present study addressed brain inflammatory responses in preterm lambs exposed to Ureaplasma parvum (UP) in utero. 7 days after intra-amniotic injection of UP (n = 10) or saline (n = 11), lambs were surgically delivered at gestational day 128–129. Expression of inflammatory markers was assessed in different brain regions using qRT-PCR and in cerebrospinal fluid (CSF) by multiplex immunoassay. CSF was analyzed for UP presence using ureB-based real-time PCR, and MRI scans documented cerebral white matter area and cortical folding. Cerebral tissue levels of atypical chemokine receptor (ACKR) 3, caspases 1-like, 2, 7, and C–X–C chemokine receptor (CXCR) 4 mRNA, as well as CSF interleukin-8 protein concentrations were significantly increased in UP-exposed lambs. UP presence in CSF was confirmed in one animal. Cortical folding and white matter area did not differ among groups. The present study confirms a role of caspases and the transmembrane receptors ACKR3 and CXCR4 in Ureaplasma-driven neuroinflammation. Enhanced caspase 1-like, 2, and 7 expression may reflect cell death. Increased ACKR3 and CXCR4 expression has been associated with inflammatory central nervous system (CNS) diseases and impaired blood–brain barrier function. According to these data and previous in vitro findings from our group, we speculate that Ureaplasma-induced caspase and receptor responses affect CNS barrier properties and thus facilitate neuroinflammation. KW - Ureaplasma parvum KW - CNS integrity KW - neonatal meningitis KW - preterm birth KW - immaturity KW - animal model Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-324285 VL - 43 IS - 2 ER -