TY - JOUR A1 - Adelfinger, Marion A1 - Gentschev, Ivaylo A1 - de Guibert, Julio Grimm A1 - Weibel, Stephanie A1 - Langbein-Laugwitz, Johanna A1 - Härtl, Barbara A1 - Escobar, Hugo Murua A1 - Nolte, Ingo A1 - Chen, Nanhai G. A1 - Aguilar, Richard J. A1 - Yu, Yong A. A1 - Zhang, Qian A1 - Frentzen, Alexa A1 - Szalay, Aladar A. T1 - Evaluation of a New Recombinant Oncolytic Vaccinia Virus Strain GLV-5b451 for Feline Mammary Carcinoma Therapy JF - PLoS ONE N2 - Virotherapy on the basis of oncolytic vaccinia virus (VACV) infection is a promising approach for cancer therapy. In this study we describe the establishment of a new preclinical model of feline mammary carcinoma (FMC) using a recently established cancer cell line, DT09/06. In addition, we evaluated a recombinant vaccinia virus strain, GLV-5b451, expressing the anti-vascular endothelial growth factor (VEGF) single-chain antibody (scAb) GLAF-2 as an oncolytic agent against FMC. Cell culture data demonstrate that GLV-5b451 virus efficiently infected, replicated in and destroyed DT09/06 cancer cells. In the selected xenografts of FMC, a single systemic administration of GLV-5b451 led to significant inhibition of tumor growth in comparison to untreated tumor-bearing mice. Furthermore, tumor-specific virus infection led to overproduction of functional scAb GLAF-2, which caused drastic reduction of intratumoral VEGF levels and inhibition of angiogenesis. In summary, here we have shown, for the first time, that the vaccinia virus strains and especially GLV-5b451 have great potential for effective treatment of FMC in animal model. KW - antibodies KW - cancer treatment KW - carcinomas KW - vaccinia virus KW - oncolytic viruses KW - viral replication KW - cell cultures KW - enzyme-linked immunoassays Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-119387 VL - 9 IS - 8 ER - TY - JOUR A1 - Ahmed, Zeeshan A1 - Zeeshan, Saman A1 - Huber, Claudia A1 - Hensel, Michael A1 - Schomburg, Dietmar A1 - Münch, Richard A1 - Eylert, Eva A1 - Eisenreich, Wolfgang A1 - Dandekar, Thomas T1 - ‘Isotopo’ a database application for facile analysis and management of mass isotopomer data JF - Database N2 - The composition of stable-isotope labelled isotopologues/isotopomers in metabolic products can be measured by mass spectrometry and supports the analysis of pathways and fluxes. As a prerequisite, the original mass spectra have to be processed, managed and stored to rapidly calculate, analyse and compare isotopomer enrichments to study, for instance, bacterial metabolism in infection. For such applications, we provide here the database application ‘Isotopo’. This software package includes (i) a database to store and process isotopomer data, (ii) a parser to upload and translate different data formats for such data and (iii) an improved application to process and convert signal intensities from mass spectra of \(^{13}C\)-labelled metabolites such as tertbutyldimethylsilyl-derivatives of amino acids. Relative mass intensities and isotopomer distributions are calculated applying a partial least square method with iterative refinement for high precision data. The data output includes formats such as graphs for overall enrichments in amino acids. The package is user-friendly for easy and robust data management of multiple experiments. KW - stable-isotope Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-120102 VL - 2014 IS - bau077 ER - TY - JOUR A1 - Akhoon, Bashir A. A1 - Singh, Krishna P. A1 - Varshney, Megha A1 - Gupta, Shishir K. A1 - Shukla, Yogeshwar A1 - Gupta, Shailendra K. T1 - Understanding the Mechanism of Atovaquone Drug Resistance in Plasmodium falciparum Cytochrome b Mutation Y268S Using Computational Methods JF - PLOS ONE N2 - The rapid appearance of resistant malarial parasites after introduction of atovaquone (ATQ) drug has prompted the search for new drugs as even single point mutations in the active site of Cytochrome b protein can rapidly render ATQ ineffective. The presence of Y268 mutations in the Cytochrome b (Cyt b) protein is previously suggested to be responsible for the ATQ resistance in Plasmodium falciparum (P. falciparum). In this study, we examined the resistance mechanism against ATQ in P. falciparum through computational methods. Here, we reported a reliable protein model of Cyt bc1 complex containing Cyt b and the Iron-Sulphur Protein (ISP) of P. falciparum using composite modeling method by combining threading, ab initio modeling and atomic-level structure refinement approaches. The molecular dynamics simulations suggest that Y268S mutation causes ATQ resistance by reducing hydrophobic interactions between Cyt bc1 protein complex and ATQ. Moreover, the important histidine contact of ATQ with the ISP chain is also lost due to Y268S mutation. We noticed the induced mutation alters the arrangement of active site residues in a fashion that enforces ATQ to find its new stable binding site far away from the wild-type binding pocket. The MM-PBSA calculations also shows that the binding affinity of ATQ with Cyt bc1 complex is enough to hold it at this new site that ultimately leads to the ATQ resistance. KW - molecular-dynamics simulations KW - HIV-1 protease KW - structure prediction KW - saccharomyces cerevisiae KW - I-tasser KW - inhibitors KW - binding KW - malaria KW - complex KW - protein-protein interactions Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-114882 VL - 9 IS - 10 ER - TY - JOUR A1 - Albert, Štefan A1 - Spaethe, Johannes A1 - Grübel, Kornelia A1 - Rössler, Wolfgang T1 - Royal jelly-like protein localization reveals differences in hypopharyngeal glands buildup and conserved expression pattern in brains of bumblebees and honeybees N2 - Royal jelly proteins (MRJPs) of the honeybee bear several open questions. One of them is their expression in tissues other than the hypopharyngeal glands (HGs), the site of royal jelly production. The sole MRJP-like gene of the bumblebee, Bombus terrestris (BtRJPL), represents a pre-diversification stage of the MRJP gene evolution in bees. Here we investigate the expression of BtRJPL in the HGs and the brain of bumblebees. Comparison of the HGs of bumblebees and honeybees revealed striking differences in their morphology with respect to sex- and caste-specific appearance, number of cells per acinus, and filamentous actin (F-actin) rings. At the cellular level, we found a temporary F-actin-covered meshwork in the secretory cells, which suggests a role for actin in the biogenesis of the end apparatus in HGs. Using immunohistochemical localization, we show that BtRJPL is expressed in the bumblebee brain, predominantly in the Kenyon cells of the mushroom bodies, the site of sensory integration in insects, and in the optic lobes. Our data suggest that a dual glandbrain function preceded the multiplication of MRJPs in the honeybee lineage. In the course of the honeybee evolution, HGs dramatically changed their morphology in order to serve a food-producing function. KW - Hypopharyngeal glands KW - Bumblebee KW - Bombus KW - Brain KW - Labial glands KW - Immunohistochemistry KW - Kenyon cells KW - Mushroom bodies KW - Honeybee Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-112733 ER - TY - JOUR A1 - Alsheimer, Manfred A1 - Link, Jana A1 - Leubner, Monika A1 - Schmitt, Johannes A1 - Göb, Eva A1 - Benavente, Ricardo A1 - Jeang, Kuan-Teh A1 - Xu, Rener T1 - Analysis of Meiosis in SUN1 Deficient Mice Reveals a Distinct Role of SUN2 in Mammalian Meiotic LINC Complex Formation and Function N2 - LINC complexes are evolutionarily conserved nuclear envelope bridges, composed of SUN (Sad-1/UNC-84) and KASH (Klarsicht/ANC-1/Syne/homology) domain proteins. They are crucial for nuclear positioning and nuclear shape determination, and also mediate nuclear envelope (NE) attachment of meiotic telomeres, essential for driving homolog synapsis and recombination. In mice, SUN1 and SUN2 are the only SUN domain proteins expressed during meiosis, sharing their localization with meiosis-specific KASH5. Recent studies have shown that loss of SUN1 severely interferes with meiotic processes. Absence of SUN1 provokes defective telomere attachment and causes infertility. Here, we report that meiotic telomere attachment is not entirely lost in mice deficient for SUN1, but numerous telomeres are still attached to the NE through SUN2/KASH5-LINC complexes. In Sun12/2 meiocytes attached telomeres retained the capacity to form bouquetlike clusters. Furthermore, we could detect significant numbers of late meiotic recombination events in Sun12/2 mice. Together, this indicates that even in the absence of SUN1 telomere attachment and their movement within the nuclear envelope per se can be functional. Author summary: Correct genome haploidization during meiosis requires tightly regulated chromosome movements that follow a highly conserved choreography during prophase I. Errors in these movements cause subsequent meiotic defects, which typically lead to infertility. At the beginning of meiotic prophase, chromosome ends are tethered to the nuclear envelope (NE). This attachment of telomeres appears to be mediated by well-conserved membrane spanning protein complexes within the NE (LINC complexes). In mouse meiosis, the two main LINC components SUN1 and SUN2 were independently described to localize at the sites of telomere attachment. While SUN1 has been demonstrated to be critical for meiotic telomere attachment, the precise role of SUN2 in this context, however, has been discussed controversially in the field. Our current study was targeted to determine the factual capacity of SUN2 in telomere attachment and chromosome movements in SUN1 deficient mice. Remarkably, although telomere attachment is impaired in the absence of SUN1, we could find a yet undescribed SUN1-independent telomere attachment, which presumably is mediated by SUN2 and KASH5. This SUN2 mediated telomere attachment is stable throughout prophase I and functional in moving telomeres within the NE. Thus, our results clearly indicate that SUN1 and SUN2, at least partially, fulfill redundant meiotic functions. KW - telomeres KW - spermatocytes KW - Oocytes KW - meiosis KW - protein domains KW - cytoskeleton KW - synapsis KW - homologous chromosomes Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-111355 ER - TY - JOUR A1 - Andreska, Thomas A1 - Aufmkolk, Sarah A1 - Sauer, Markus A1 - Blum, Robert T1 - High abundance of BDNF within glutamatergic presynapses of cultured hippocampal neurons JF - Frontiers in Cellular Neuroscience N2 - In the mammalian brain, the neurotrophin brain-derived neurotrophic factor (BDNF) has emerged as a key factor for synaptic refinement, plasticity and learning. Although BDNF-induced signaling cascades are well known, the spatial aspects of the synaptic BDNF localization remained unclear. Recent data provide strong evidence for an exclusive presynaptic location and anterograde secretion of endogenous BDNF at synapses of the hippocampal circuit. In contrast, various studies using BDNF overexpression in cultured hippocampal neurons support the idea that postsynaptic elements and other dendritic structures are the preferential sites of BDNF localization and release. In this study we used rigorously tested anti-BDNF antibodies and achieved a dense labeling of endogenous BDNF close to synapses. Confocal microscopy showed natural BDNF close to many, but not all glutamatergic synapses, while neither GABAergic synapses nor postsynaptic structures carried a typical synaptic BDNF label. To visualize the BDNF distribution within the fine structure of synapses, we implemented super resolution fluorescence imaging by direct stochastic optical reconstruction microscopy (dSTORM). Two-color dSTORM images of neurites were acquired with a spatial resolution of ~20 nm. At this resolution, the synaptic scaffold proteins Bassoon and Homer exhibit hallmarks of mature synapses and form juxtaposed bars, separated by a synaptic cleft. BDNF imaging signals form granule-like clusters with a mean size of ~60 nm and are preferentially found within the fine structure of the glutamatergic presynapse. Individual glutamatergic presynapses carried up to 90% of the synaptic BDNF immunoreactivity, and only a minor fraction of BDNF molecules was found close to the postsynaptic bars. Our data proof that hippocampal neurons are able to enrich and store high amounts of BDNF in small granules within the mature glutamatergic presynapse, at a principle site of synaptic plasticity. KW - hippocampal neurons KW - synapse structure KW - presynapse KW - synaptic localization KW - BDNF Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-119793 SN - 1662-5102 VL - 8 IS - 107 ER - TY - THES A1 - Andronic, Joseph T1 - Volumenregulatorische Transportwege von anorganischen und organischen Osmolyten in Säugetierzellen T1 - Volume ragulatory pathways of anorganic and organic osmolytes in mammalian cells N2 - Die Aufrechterhaltung des Zellvolumens unter variablen osmotischen Bedingungen stellt für nahezu alle tierischen Zellen eine essenzielle Aufgabe dar. Um regulatorische Volumenanpassungen vorzunehmen besitzen sie daher effektive Mechanismen, mit deren Hilfe der zelluläre Gehalt an organischen und anorganischen Osmolyten erhöht (= regulatorische Volumenzunahme; RVI) oder gesenkt (= regulatorische Volumenabnahme; RVD) werden kann. Trotz langjähriger Forschung auf diesem Gebiet konnten die hieran beteiligten Transportwege für Osmolyte bisher nur unvollständig aufgeklärt werden. Insbesondere bei T-Lymphozyten sind wichtige Zellfunktionen wie die Proliferation, Migration und die T-Zell-Aktivierung eng mit volumenregulatorischen Mechanismen verbunden. Bei all diesen Prozessen sind u. a. unterschiedliche Kaliumkanäle beteiligt, die insbesondere für die pharmakologische Manipulation von Immunsystemprozessen von wissenschaftlichem Interesse sind. Bisherige Modelle der hypotonen Volumenregulation von T-Lymphozyten berücksichtigen lediglich den spannungsabhängigen KV1.3 sowie den Ca2+-aktivierten IKCa1-Kanal, die zur Klasse der 6TM/P-K+-Kanäle gehören. Im ersten Teil der vorliegenden Arbeit wurde eine potentielle Rolle von kürzlich entdeckten Zwei-Poren Domänen Kaliumkanälen (K2P) am RVD von murinen und humanen primären CD4+-T-Lymphozyten untersucht. In einem kombinierten genetischen und pharmakologischen Ansatz mittels knockout-Tiermodellen und dem Einsatz kanalspezifischer Inhibitoren konnte mithilfe zellvolumetrischer Analysen gezeigt werden, dass die K2P-Vertreter TASK1, TASK2, TASK3 und TRESK maßgeblich am schwellungsaktivierten Efflux von K+ beteiligt sind. Beurteilt an den Ergebnissen dieser Untersuchung sind der spannungsabhängige TASK2- und der Ca2+-aktivierte TRESK-Kanal für die hypotone Volumenregulation in T-Zellen deutlich bedeutender als TASK1 und TASK3. Der Beitrag der Kanäle TASK2 und TRESK am RVD-Prozess war über dies vergleichbar mit dessen des bisher bekannten KV1.3-Kanals. In dieser Arbeit wurde damit erstmals eine Beteiligung der K2P-Kanäle am RVD muriner und humaner CD4+-Lymphozyten identifiziert. Aufgrund der engen Verbindung zwischen T-Zell-Funktion und der Volumenregulation können Zwei-Poren Domänen K+-Kanäle damit in den engeren Kreis potentieller immunmodulierende Angriffspunkte aufgefasst werden. Im zweiten und umfangreicheren Teil dieser Arbeit wurden darüber hinaus die schwellungsaktivierten Transportwege für organische Osmolyte (small organic osmolytes; SOOs) untersucht. SOOs stellen chemisch inerte Verbindungen dar, zu denen vor allem Polyole (Sorbitol, myo-Inositol), Methylamine (Betain, α-Glycerophosphocholin) sowie Aminosäuren (α- bzw. β-Alanin und Prolin) und deren Derivate (Taurin) zählen. Da SOOs weder die zelluläre Struktur noch die Funktion von Makromolekülen beeinträchtigen, sind sie wichtige Instrumente der Volumenregulation, die sich in hohen Konzentrationen im Zytosol nahezu aller Zellen wiederfinden. Werden tierische Zellen mit hypotonen Bedingungen konfrontiert, dann ist bei nahezu allen Zellen die Freisetzung organischer Osmolyte zu beobachten, wodurch die zelluläre Osmolarität unabhängig von Elektrolyten angepasst werden kann. Trotz der wichtigen Funktion der SOOs in der Osmoregulation tierischer Zellen konnte die molekulare Identität beteiligter Effluxwege (Kanäle bzw. Transporter) bisher nicht aufgeklärt werden. Ungeachtet der molekularen Identität der SOO-Effluxwege war es aus zahlreichen biotechnologischen Anwendungen zu Beginn dieser Arbeit bekannt, dass die schwellungsaktivierten Transportwege für organische Osmolyte eine größenselektive Permeabilität für eine Reihe monomerer Zucker und verwandter Verbindungen aufweisen. Um diese Größenselektivität näher zu charakterisieren, wurde im ersten Schritt die schwellungsaktivierte Membranpermeabilität für eine Reihe strukturell homogener Polyethylenglykole unterschiedlicher Polymerlänge (PEG200–1500; hydrodynamische Radien zwischen ~0,5-1,5 nm) unter iso- und hypotonen Bedingungen in Jurkat-Lymphozyten untersucht. Unter milden hypotonen Bedingungen (200 mOsm) war die Plasmamembran der untersuchten Lymphozyten für PEG300-1500 undurchlässig, was aus der Fähigkeit der Zellen zur hypotonen Volumenregulation geschlossen werden konnte. Darüber hinaus wurde RVD in stark hypotonen Lösungen (100 mOsm) mit PEG600-1500 beobachtet, während PEG300-400 unter vergleichbaren osmotischen Bedingungen die Volumenregulation der Zellen inhibierten. Dieses Ergebnis deutet darauf hin, dass starkes hypotones Zellschwellen der Lymphozyten zur Permeabilisierung der Plasmamembran für PEG300-400, nicht jedoch für PEG600-1500, führt. Anhand der hydrodynamischen Radien Rh der verwendeten PEGs konnte ein cutoff-Radius von ~0,74 nm für schwellungsaktivierte Transportwege organischer Osmolyte bestimmt werden. Da diese schwellungsaktivierten Transportwege vielfältig für Zellbeladungstechniken verwendet werden, könnte dieses Ergebnis für zahlreiche biotechnologische und biomedizinische Anwendungen von Interesse sein. Im zweiten Schritt wurde der Versuch unternommen, potentielle Transportwege für organische Osmolyte im RVD-Prozess molekular zu identifizieren. Da es grundlegend ungeklärt war, wie viele unterschiedliche Transporter bzw. Kanäle am Efflux der zahlreichen organischen Osmolyte beteiligt sind, erfolgte zunächst die vergleichende Analyse des schwellungsaktivierten Membrantransports strukturell verschiedener SOOs einschließlich der Aminosulfonsäure Taurin und des Polyols myo-Inositol. Hierbei wurde erstmals gezeigt, dass die schwellungsaktivierten Transportwege für Taurin und myo-Inositol deutlich unterschiedliche Aktivitätsprofile aufweisen. Während der Taurintransport bereits unter milden hypotonen Bedingungen, d.h. nach einer geringen Absenkung der Osmolalität von 300 auf ~230 mOsm, aktiviert wurde, erfolgte die Aktivierung der Membranpermeabilität für myo-Inositol bei einer viel niedrigeren Osmolalität von ~150 mOsm. Darüber hinaus wiesen die beiden Transportwege unter vergleichbarem hypotonen Stress von 100 mOsm deutlich unterschiedliche Aktivitätsdauern auf (Transport von Taurin ~95 min und myo-Inositol ~40 min). Somit deuteten diese Ergebnisse erstmals auf substrat-spezifische Transportwege für SOOs hin, die voneinander stark abweichende osmotische Aktivierungsprofile besitzen. Als aussichtsreiche Kandidaten für diese Transportwege wurden zwei Mitglieder der Gruppe der Solute Carrier (SLC) untersucht, die klare Übereinstimmungen mit den gesuchten Transportern für SOOs aufweisen. Daher wurde im Weiteren eine RVD-Beteiligung dieser Transportergruppe mit einer Kombination aus molekularbiologischer und konventioneller bzw. hochaufgelöster mikroskopischen Techniken überprüft. Die semiqantitativen RT-PCR-Ergebnisse dieser Arbeit zeigen dabei, dass die Gentranskription der potentiellen SOO-Transporter SLC5A3 und SLC6A6 in den untersuchten Zelllinien Jurkat, HEK wie auch HepG2-Zellen durch hypotone Bedingungen deutlich verstärkt wird. Hierbei nimmt der zelluläre mRNA-Gehalt der Gene SLC5A3 zwischen 20-60% und SLC6A6 um 30-100% innerhalb von 10-20 min zu, was auf eine potentielle RVD-Beteiligung von SLC-Transportern hindeutet. Ausgehend von diesem Ergebnis wurde daraufhin die zelluläre Lokalisation des SLC5A3-Transporters unter isotonen und hypotonen Bedingungen mikroskopisch untersucht. Wie anhand der konfokalen lasermikroskopischen Untersuchung zu erkennen ist, findet unter hypotoner Stimulation eine zelluläre Umverteilung des mit EGFP fluoreszenzmarkierten Proteins SLC5A3 statt. Innerhalb von 10 min wird der Transporter dabei von intrazellulären Regionen in Richtung Plasmamembran verlagert. Darüber hinaus konnte mit Hilfe der hochauflösenden Mikroskopie-Technik dSTORM gezeigt werden, dass der Transporter SLC5A3 unter hypotoner Stimulation verstärkt mit der Plasmamembran assoziiert vorliegt. Diese verstärkte Membranassoziation des SLC5A3-Proteins deutet damit auf einen schwellungsinduzierten exozytotischen Einbau des Transporters hin. Die Ergebnisse dieser Arbeit zeigen damit erstmals, dass SLC-Transporter wie SLC5A3, SLC6A6 und vermutlich andere Vertreter der SLC-Superfamilie potentiell am Mechanismus der hypotonen Volumenregulation beteiligt sind. Da SLC-Transporter als wichtige Transportsysteme für Therapeutika angesehen werden und die Mechanismen der Volumenregulation bereits in zahlreichen biotechnologischen Anwendungen implementiert sind, könnte der hier aufgedeckte Zusammenhang einen Erkenntnisgewinn für zahlreiche biomedizinische Forschungsgebiete darstellen. N2 - Cell volume homeostasis is critically important for the functional and structural integrity of mammalian cells. To counteract osmotically induced volume perturbations, cells possess efficient mechanisms that control the intracellular osmolyte composition. The volume regulatory mechanisms operating under hyper- and hypotonic conditions are known, respectively, as regulatory volume increase (RVI) and decrease (RVD). During both, RVI and RVD, cells adjust the cellular content of inorganic ions (most notably Na+, K+ and Cl-) and organic solutes in order to gain or lose osmotically obligated water. These mechanisms counteract osmotic cell damage and enable the adaptation of cells to a wide range of extracellular osmolarities. Despite decades of research in this field, many aspects of the mechanisms underlying RVD and RVI remain poorly understood. In case of T lymphocytes, various cellular functions, including proliferation, migration and T cell activation are closely associated with the cell volume regulatory machinery. Among other mechanisms, all these processes are tightly linked by a network of potassium channels. The identification of this network is of great biomedical interest as it provides a key to pharmacological manipulation of the immune system. Current models of hypotonic volume regulation (RVD) in T-lymphocytes consider primarily the voltage-gated KV1.3 and the calcium-activated IKCa1 channel. The first part of this thesis explores the potential role of two-pore domain (K2P) potassium channels in RVD in murine and human primary CD4+-T lymphocytes. Using a combined genetic and pharmacological approach, time-resolved cell volume analysis revealed an important role of the K2P channels TASK1, TASK2, TASK3 and TRESK in swelling activated K+ efflux from hypotonically swollen T cells. Based on the analysis carried out here, the voltage-gated TASK2 as well as the calcium-activated TRESK channel were found as the most important K2P channels involved in the RVD of both naïve and stimulated T cells. The importance of TASK2 and TRESK in the RVD process was comparable to that of KV1.3. In summary, the data provide first evidence that hypotonic volume regulation of murine and human CD4+-T lymphocytes relies on K2P channels. With respect to the close relationship of T-cell function and volume regulatory mechanisms K2P channels may thus be considered as potential targets for immunomodulation. In the second and major part of this thesis, the swelling-activated transport pathways for small organic osmolytes (SOOs) were investigated. Nearly all eukaryotic cells possess a considerable reservoir of SOOs, such as polyols (e.g. sorbitol, myo-inositol), methylamines (e.g. betaine, α-glycerophosphoryl choline) and small amino acids (e.g. α-/β- alanine, proline and the derivate taurine), which are synthesized within the cells or accumulated from the extracellular medium. Since SOOs do not interfere with the integrity of macromolecules and the membrane potential, cells tolerate great cytosolic fluctuations of these solutes without negative effects on cellular structure or function. Due to these properties, small organic osmolytes are important tools for cell volume regulatory mechanisms, by which the intracellular osmolarity can be adjusted independently of electrolytes. Although the importance of SOOs for hypotonic volume regulation has been known for long time, the molecular identity of participating membrane efflux pathways is far from being clear. Regardless of the involved transporters, swelling-activated pathways have been reported to exhibit a size selective permeability for a wide range of sugars and related compounds. To gain a deeper insight into this issue, in a first step the impact of the molecular size on the permeation of low-molecular-weight polyethylene glycols (PEG200–1500) through the plasma membrane of Jurkat cells under iso- and hypotonic conditions was analyzed. Upon moderate swelling in slightly hypotonic solutions (200 mOsm), the lymphocyte membrane was found to remain impermeable to PEG300–1500, which allowed the cells to accomplish regulatory volume decrease. RVD also occurred in strongly hypotonic solutions (100 mOsm) of PEG600–1500, whereas 100 mOsm solutions of PEG300–400 inhibited RVD. These findings suggest that extensive hypotonic swelling rendered the cell membrane highly permeable to PEG300–400, but not to PEG600–1500. Using the values of hydrodynamic radii Rh for PEGs, the observed size-selectivity of membrane permeation yielded an estimate of ∼0.74 nm for the cut-off radius of the swelling-activated pathway for organic osmolytes. This result may be of interest for many biotechnological and biomedical applications, where swelling-activated SOO-pathways are widely used for cell-loading techniques. As a second step, an attempt was made to elucidate the molecular identity of transporters for organic osmolytes potentially involved in RVD. Since it was not clear whether RVD-related efflux of SOOs is mediated by one common or several distinct transporter(s), at first, the plasma membrane permeability profiles for two structurally dissimilar SOOs, including the amino sulfonic acid taurine and the polyol myo-inositol were analyzed. The results of the time resolved volumetric measurements clearly showed that the membrane permeability to taurine was activated upon moderate cell swelling (by ~15%) in mildly hypotonic solutions (~230 mOsm). In sharp contrast, the membrane permeability to myo-inositol was activated after a much larger swelling (~50%) in strongly hypotonic media (<150 mOsm). Moreover, the swelling-activated permittivity to taurine during RVD in 100 mOsm medium persisted for about twice as long as that for myo-inositol (taurine ~95 min, myo-inositol ~40 min). These findings clearly showed that, taurine and myo-inositol utilized separate, apparently substrate-specific pathways, which were activated at different hypotonic thresholds. Since many members of SLC-family proteins (Solute Carrier) are known for their substrate selectivity and also for their contribution to osmoregulatory mechanisms a participation of SLCs was investigated in the context of RVD. To this end, a combination of molecular biological (semiquantitative RT-PCR) and fluorescence microscopy techniques (confocal and super-resolution microscopy) was used. The semiquantitative RT-PCR data showed a transcriptional upregulation for the SLC proteins SLC5A3 (myo-inositol transporter; SMIT) and SLC6A6 (taurine transporter TauT) in hypotonically stressed Jurkat lymphocytes, HEK293, and HepG2 cells. In all three human cell lines strongly hypotonic solutions (100 mOsm) increased the mRNA level of the genes SLC5A3 and SLC6A6 between 20-60% and 30-100%, respectively, suggesting a potential participation of SLC transporters in RVD. In addition, confocal microscopy images clearly showed the intracellular displacement of EGFP-tagged SLC5A3 expressed in HEK293 cells following strongly hypotonic stress (100 mOsm). Within 10 min the fluorescence of EGFP was shifted from intracellular regions towards the plasma membrane. Furthermore, super-resolution microscopy by means of dSTORM revealed a considerably increased membrane association of SLC5A3 in strongly hypotonic stressed (100 mOsm) HEK293 and Jurkat cells. This finding suggests that SLC5A3 is integrated into the plasma membrane by swelling-induced exocytosis. Taken together, the results of this investigation provided first evidence that transporters such as SLC5A3, SLC6A6 and probably other SLC-proteins participate in the mechanism of hypotonic volume regulation. Due to the relevance of SLC-proteins as potential drug delivery systems the possible role of these transporters might be of great interest for many biomedical research areas. KW - Säugetiere KW - Osmoregulation KW - Zelle KW - Regulatory Volume Decrease KW - Transporter SLC5A3 KW - Transporter SLC6A6 KW - small organic osmolytes KW - Zwei-Poren Domänen Kaliumkanäle KW - two-pore domain potassium channels KW - Zellvolumen KW - Volumenregulation Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-103255 ER - TY - THES A1 - Axmacher, Franz T1 - Die SVM-gestützte Prädiktabilität der Bindungsspezifität ‎von SH3-Domänen anhand ihrer Aminosäuresequenz T1 - The SVM-based predictability of SH3-domain binding specificity by means of its amino-acid-‎sequence. ‎ N2 - Die Identifikation der Bindungsspezifitäten von Proteininteraktionsdomänen und damit letztlich auch ‎die Fähigkeit potentielle Bindungspartner dieser in vivo vorherzusagen bildet ein grundlegendes ‎Element für das Verständnis der biologischen Funktionen dieser Domänen. In dieser Arbeit wurde ‎untersucht, inwieweit solche Vorhersagen bezüglich der SH3-Domäne – als Beispiel für eine ‎Proteininteraktionsdomäne – mithilfe von Support-Vector-Machines (SVMs) möglich sind, wenn ‎diesen als Informationsquelle ausschließlich die innerhalb der Aminosäuresequenz der Domäne ‎konservierten Informationen zur Verfügung stehen. Um den SVM-basierten Klassifikator zu ‎trainieren und zu validieren, wurde ein Satz aus 51 SH3-Domänen verwendet, die zuvor ‎entsprechend ihrer Ligandenpräferenz in ein System aus acht verschiedenen Klassen eingeteilt ‎worden waren. Da die innerhalb der Aminosäuresequenzen konservierten Informationen in ‎abstrakte Zahlenwerte konvertiert werden mussten (Voraussetzung für mathematisch basierte ‎Klassifikatoren wie SVMs), wurde jede Aminosäuresequenz durch ihren jeweiligen Fisher-Score-‎Vektor ausgedrückt. Die Ergebnisse erbrachten einen Klassifikationserror, welcher weit unterhalb des ‎Zufallsniveaus lag, was darauf hindeutet, dass sich die Bindungsspezifität (Klasse) einer SH3-Domäne ‎in der Tat von seiner Aminosäuresequenz ableiten lassen dürfte. Mithilfe klassenspezifisch ‎emittierter, artifizieller Sequenzen, implementiert in den Trainingsprozess des Klassifikators, um ‎etwaigen nachteiligen Auswirkungen von Overfitting zu entgegenzuwirken, sowie durch ‎Berücksichtigung taxonomischer Informationen des Klassensystems während Training und ‎Validierung, ließ sich der Klassifikationserror sogar noch weiter senken und lag schließlich bei lediglich ‎‎35,29% (vergleiche Zufall: 7/8 = 87.50%). Auch die Nutzung von Feature Selections zur Abmilderung ‎Overfitting-bedingter, negativer Effekte lieferte recht vielversprechende Ergebnisse, wenngleich ihr ‎volles Potential aufgrund von Software-Beschränkungen nicht ausgenutzt werden konnte.‎ Die Analyse der Positionen im Sequence-Alignment, welche für den SVM- basierten Klassifikator am ‎relevantesten waren, zeigte, dass diese häufig mit Positionen korrelierten, von denen angenommen ‎wird auch in vivo eine Schlüsselrolle bei der Determination der Bindungsspezifität (Klasse) zu spielen. ‎Dies unterstreicht nicht nur die Reliabilität des präsentierten Klassifikators, es gibt auch Grund zur ‎Annahme, dass das Verfahren möglicherweise auch als Supplement anderer Ansätze genutzt werden ‎könnte, welche zum Ziel haben die Positionen zu identifizieren, die die Ligandenpräferenz in vivo ‎determinieren. Informationen, die nicht nur für ein besseres Verständnis der SH3-Domäne (und ‎möglicherweise auch anderer Proteininteraktionsdomänen) von grundlegender Bedeutung sind, ‎sondern auch aus pharmakologischer Sicht von großem Interesse sein dürften.‎ N2 - Regarding protein-interaction-domains the identification of their binding specificities and ‎eventually ‎also the ability to predict potential binding partners for them in vivo constitutes a fundamental ‎element for the understanding of the biological functions of these domains. In this study it ‎was ‎investigated to what extent such predictions could be made for the SH3-domain – as an ‎example ‎for a protein-interaction-domain – when using support-vector-machines (SVMs) trained ‎exclusively ‎with the information conserved within the amino-acid-sequence of the domain. A set of ‎‎51 SH3-‎domains, pre-classified into a system of eight different classes according to their ligand ‎preference, was used to train and cross-validate the SVM-based classifier. To convert the ‎information ‎conserved within the amino-acid-sequences into abstract numeric values (a ‎prerequisite for a ‎mathematics-based classifier like SVMs) each sequence was represented by its ‎respective Fisher-‎score-vector. The results revealed a classification error level way below chance ‎level, indicating the ‎binding specificity (class) of an SH3-domain can indeed be inferred from its ‎amino-acid-sequence. ‎With the help of class-specific emitted, artificial sequences introduced into ‎the training process of the ‎classifier to counter adverse overfitting effects and by additionally ‎considering taxonomic ‎information of the class system during training and cross-validation, the ‎classification error level of ‎the classifier could be lowered even farther, eventually reaching a level ‎as low as 35.29% (compare ‎chance level: 7/8 = 87.50%). The use feature selections to counter ‎overfitting returned quite ‎promising results, too, however couldn't be exploited to its full potential ‎due to software limitations. ‎ The analysis of those positions in the sequence-alignment being most relevant for the SVM-‎based ‎classifier showed, they frequently correlated with positions considered to also play in vivo a ‎pivotal ‎role in binding specificity (class) determination of the SH3-domain. Not only does this ‎underline the ‎reliability of the presented classifier, it also gives reason to believe, the method could ‎possibly be ‎used as a supplement for other approaches trying to identify positions that determine ‎ligand ‎preference in vivo. Information, not only fundamental for a better understanding of the SH3-‎‎domain (and maybe also other protein-interaction-domains), but also likely to be of great interest ‎from a pharmacological point of view.‎ KW - Support-Vektor-Maschine KW - Alignment KW - Hidden-Markov-Modell KW - Kreuzvalidierung KW - Taxonomie KW - SH3-Domäne KW - Fisher-Score KW - Regularisierung KW - Feature-Selection KW - PyMOL KW - WebLogo KW - e1071 Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-113349 ER - TY - JOUR A1 - Baalbergen, Els A1 - Helwerda, Renate A1 - Schelfhorst, Rense A1 - Castillo Cajas, Ruth F. A1 - van Moorsel, Coline H. M. A1 - Kundrata, Robin A1 - Welter-Schultes, Francisco W. A1 - Giokas, Sinos A1 - Schilthuizen, Menno T1 - Predator-Prey Interactions between Shell-Boring Beetle Larvae and Rock-Dwelling Land Snails JF - PLOS ONE N2 - Drilus beetle larvae (Coleoptera: Elateridae) are specialized predators of land snails. Here, we describe various aspects of the predator-prey interactions between multiple Drilus species attacking multiple Albinaria (Gastropoda: Clausiliidae) species in Greece. We observe that Drilus species may be facultative or obligate Albinaria-specialists. We map geographically varying predation rates in Crete, where on average 24% of empty shells carry fatal Drilus bore holes. We also provide first-hand observations and video-footage of prey entry and exit strategies of the Drilus larvae, and evaluate the potential mutual evolutionary impacts. We find limited evidence for an effect of shell features and snail behavioral traits on inter-and intraspecifically differing predation rates. We also find that Drilus predators adjust their predation behavior based on specific shell traits of the prey. In conclusion, we suggest that, with these baseline data, this interesting predator-prey system will be available for further, detailed more evolutionary ecology studies. KW - clausiliidae KW - evolution KW - pulmonata KW - albinaria KW - behavior KW - species gastropoda Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-115963 SN - 1932-6203 VL - 9 IS - 6 ER - TY - JOUR A1 - Bartomeus, Ignasi A1 - Potts, Simon G. A1 - Steffan-Dewenter, Ingolf A1 - Vaissiere, Bernard E. A1 - Woyciechowski, Michal A1 - Krewenka, Kristin M. A1 - Tscheulin, Thomas A1 - Roberts, Stuart P. M. A1 - Szentgyoergyi, Hajnalka A1 - Westphal, Catrin A1 - Bommarco, Riccardo T1 - Contribution of insect pollinators to crop yield and quality varies with agricultural intensification JF - PEERJ N2 - Background. Up to 75% of crop species benefit at least to some degree from animal pollination for fruit or seed set and yield. However, basic information on the level of pollinator dependence and pollinator contribution to yield is lacking for many crops. Even less is known about how insect pollination affects crop quality. Given that habitat loss and agricultural intensification are known to decrease pollinator richness and abundance, there is a need to assess the consequences for different components of crop production. Methods. We used pollination exclusion on flowers or inflorescences on a whole plant basis to assess the contribution of insect pollination to crop yield and quality in four flowering crops (spring oilseed rape, field bean, strawberry, and buckwheat) located in four regions of Europe. For each crop, we recorded abundance and species richness of flower visiting insects in ten fields located along a gradient from simple to heterogeneous landscapes. Results. Insect pollination enhanced average crop yield between 18 and 71% depending on the crop. Yield quality was also enhanced in most crops. For instance, oilseed rape had higher oil and lower chlorophyll contents when adequately pollinated, the proportion of empty seeds decreased in buckwheat, and strawberries' commercial grade improved; however, we did not find higher nitrogen content in open pollinated field beans. Complex landscapes had a higher overall species richness of wild pollinators across crops, but visitation rates were only higher in complex landscapes for some crops. On the contrary, the overall yield was consistently enhanced by higher visitation rates, but not by higher pollinator richness. Discussion. For the four crops in this study, there is clear benefit delivered by pollinators on yield quantity and/or quality, but it is not maximized under current agricultural intensification. Honeybees, the most abundant pollinator, might partially compensate the loss of wild pollinators in some areas, but our results suggest the need of landscape-scale actions to enhance wild pollinator populations. KW - biodiversity KW - pollination KW - honeybee KW - wild bees KW - agroecosystems KW - native pollinators KW - species richness KW - bee pollinators KW - wild KW - ecosystemservices KW - fruit-quality KW - oilseed rape KW - land-use KW - honey KW - patterns Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-116928 SN - 2167-9843 VL - 2 IS - e328 ER -