@article{ZahoGhirlandoAlfonsoetal.2015, author = {Zaho, Huaying and Ghirlando, Rodolfo and Alfonso, Carlos and Arisaka, Fumio and Attali, Ilan and Bain, David L. and Bakhtina, Marina M. and Becker, Donald F. and Bedwell, Gregory J. and Bekdemir, Ahmet and Besong, Tabot M. D. and Birck, Catherine and Brautigam, Chad A. and Brennerman, William and Byron, Olwyn and Bzowska, Agnieszka and Chaires, Jonathan B. and Chaton, Catherine T. and Coelfen, Helmbut and Connaghan, Keith D. and Crowley, Kimberly A. and Curth, Ute and Daviter, Tina and Dean, William L. and Diez, Ana I. and Ebel, Christine and Eckert, Debra M. and Eisele, Leslie E. and Eisenstein, Edward and England, Patrick and Escalante, Carlos and Fagan, Jeffrey A. and Fairman, Robert and Finn, Ron M. and Fischle, Wolfgang and Garcia de la Torre, Jose and Gor, Jayesh and Gustafsson, Henning and Hall, Damien and Harding, Stephen E. and Hernandez Cifre, Jose G. and Herr, Andrew B. and Howell, Elizabeth E. and Isaac, Richard S. and Jao, Shu-Chuan and Jose, Davis and Kim, Soon-Jong and Kokona, Bashkim and Kornblatt, Jack A. and Kosek, Dalibor and Krayukhina, Elena and Krzizike, Daniel and Kusznir, Eric A. and Kwon, Hyewon and Larson, Adam and Laue, Thomas M. and Le Roy, Aline and Leech, Andrew P. and Lilie, Hauke and Luger, Karolin and Luque-Ortega, Juan R. and Ma, Jia and May, Carrie A. and Maynard, Ernest L. and Modrak-Wojcik, Anna and Mok, Yee-Foong and M{\"u}cke, Norbert and Nagel-Steger, Luitgard and Narlikar, Geeta J. and Noda, Masanori and Nourse, Amanda and Obsil, Thomas and Park, Chad K and Park, Jin-Ku and Pawelek, Peter D. and Perdue, Erby E. and Perkins, Stephen J. and Perugini, Matthew A. and Peterson, Craig L. and Peverelli, Martin G. and Piszczek, Grzegorz and Prag, Gali and Prevelige, Peter E. and Raynal, Bertrand D. E. and Rezabkova, Lenka and Richter, Klaus and Ringel, Alison E. and Rosenberg, Rose and Rowe, Arthur J. and Rufer, Arne C. and Scott, David J. and Seravalli, Javier G. and Solovyova, Alexandra S. and Song, Renjie and Staunton, David and Stoddard, Caitlin and Stott, Katherine and Strauss, Holder M. and Streicher, Werner W. and Sumida, John P. and Swygert, Sarah G. and Szczepanowski, Roman H. and Tessmer, Ingrid and Toth, Ronald T. and Tripathy, Ashutosh and Uchiyama, Susumu and Uebel, Stephan F. W. and Unzai, Satoru and Gruber, Anna Vitlin and von Hippel, Peter H. and Wandrey, Christine and Wang, Szu-Huan and Weitzel, Steven E and Wielgus-Kutrowska, Beata and Wolberger, Cynthia and Wolff, Martin and Wright, Edward and Wu, Yu-Sung and Wubben, Jacinta M. and Schuck, Peter}, title = {A Multilaboratory Comparison of Calibration Accuracy and the Performance of External References in Analytical Ultracentrifugation}, series = {PLoS ONE}, volume = {10}, journal = {PLoS ONE}, number = {5}, doi = {10.1371/journal.pone.0126420}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-151903}, pages = {e0126420}, year = {2015}, abstract = {Analytical ultracentrifugation (AUC) is a first principles based method to determine absolute sedimentation coefficients and buoyant molar masses of macromolecules and their complexes, reporting on their size and shape in free solution. The purpose of this multi-laboratory study was to establish the precision and accuracy of basic data dimensions in AUC and validate previously proposed calibration techniques. Three kits of AUC cell assemblies containing radial and temperature calibration tools and a bovine serum albumin (BSA) reference sample were shared among 67 laboratories, generating 129 comprehensive data sets. These allowed for an assessment of many parameters of instrument performance, including accuracy of the reported scan time after the start of centrifugation, the accuracy of the temperature calibration, and the accuracy of the radial magnification. The range of sedimentation coefficients obtained for BSA monomer in different instruments and using different optical systems was from 3.655 S to 4.949 S, with a mean and standard deviation of (4.304\(\pm\)0.188) S (4.4\%). After the combined application of correction factors derived from the external calibration references for elapsed time, scan velocity, temperature, and radial magnification, the range of s-values was reduced 7-fold with a mean of 4.325 S and a 6-fold reduced standard deviation of \(\pm\)0.030 S (0.7\%). In addition, the large data set provided an opportunity to determine the instrument-to-instrument variation of the absolute radial positions reported in the scan files, the precision of photometric or refractometric signal magnitudes, and the precision of the calculated apparent molar mass of BSA monomer and the fraction of BSA dimers. These results highlight the necessity and effectiveness of independent calibration of basic AUC data dimensions for reliable quantitative studies.}, language = {en} } @phdthesis{Eulert2008, author = {Eulert, Stephan}, title = {Analyse diverser Matrixproteine im Einheilgewebe um medizinische Implantatwerkstoffe mittels Konfokaler Laserscanning Mikroskopie - Eine tierexperimentelle Untersuchung}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-29103}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2008}, abstract = {Ziel der vorliegenden tierexperimentellen Studie war es, Unterschiede im Einheilverhalten der Werkstoffe Titan und VA-Stahl (316L) anhand der Matrixproteine Kollagen Typ I (C1), Kollagen Typ III (C3) und Fibronektin im implantatumgebenden Interface zu untersuchen und darzustellen. Hierzu wurden die Einheilkapseln der Implantate nach subkutaner, intramuskul{\"a}rer und intraoss{\"a}rer Implantation nach den Bewertungskriterien Kapselqualit{\"a}t, Kapseldicke und Verteilungsmuster der Matrixproteine mittels konventioneller Mikroskopie und Konfokaler Laserscanning Mikroskopie (CLSM) analysiert. Nach subkutaner Implantation zeigten beide Werkstoffe in {\"U}bereinstimmung mit den Ergebnissen von SHANNON et al. (1997) vermehrt locker angeordnete, teils parallel orientierte Kollagenfasern mit erh{\"o}htem Zellaufkommen an Fibroblasten und Makrophagen. Nach intramuskul{\"a}rer Implantation jedoch fanden sich vorwiegend parallel angeordnete, teils dicht gepackte Kollagenfasern mit nur m{\"a}ßig erh{\"o}htem Zellaufkommen. Intramuskul{\"a}r eingebrachte Implantate heilten in d{\"u}nneren Kapseln ein, als subkutan eingebrachte Implantate. Es ergab sich keine Korrelation zu den ermittelten Kapselqualit{\"a}ten. Dies erstaunt umso mehr, da unter der fortw{\"a}hrenden funktionellen Beanspruchung der intramuskul{\"a}ren Implantate im Bereich der Bauchmuskulatur gegen{\"u}ber der statischeren Platzierung im subkutanen R{\"u}ckenfett eine erh{\"o}hte Zell- und Matrixreaktion erwartet worden war. Im Lokalisationsvergleich zeigte sich intramuskul{\"a}r f{\"u}r beide Werkstoffe ein erh{\"o}htes Aufkommen an Fibronektin. Dies k{\"o}nnte auf die erh{\"o}hte Stoffwechselaktivit{\"a}t und funktionelle Belastung im Muskelgewebe zur{\"u}ckgef{\"u}hrt werden (ROSENGREN et al. 1994). Nach intraoss{\"a}rer Implantation konnten d{\"u}nnere Kallusformationen f{\"u}r VA-Stahl gegen{\"u}ber Titan in allen Proteinfluoreszenzen nachgewiesen werden. Die Qualit{\"a}t der Kallusformation und die histologische Kallusstruktur glichen sich mit zunehmender Implantationsdauer der regul{\"a}ren Knochenstruktur an. Die semiquantitativ beurteilte Verteilung der Matrixproteine mittels CLSM zeigte bei deutlichen Standardabweichungen f{\"u}r beide Werkstoffe erh{\"o}hte Fluoreszenz-Intensit{\"a}ten nur in den implantatnahen Kapselanteilen. In den mittleren und den implantatfernen Kapselabschnitten waren f{\"u}r beide Werkstoffe inkonstant h{\"o}here Fluoreszenzwerte gegen{\"u}ber den Vergleichskollektiven messbar. Der intraoss{\"a}re Materialvergleich ergab implantatnahe und implantatferne Fluoreszenzmaxima f{\"u}r alle Matrixproteine, die mit zunehmender Implantationsdauer abfielen. Reproduzierbare, materialspezifische Unterschiede waren in Analogie zu BERGER-GORBET et al. (1996) nicht zu finden. In den mittleren Kallusabschnitten konnten reproduzierbare Fluoreszenzunterschiede nur bei Detektion von Kollagen Typ I (C1) in allen Zeitintervallen gesehen werden. Im Vergleich zur Literatur konnte die von VIROLAINEN et al. (1997) beschriebene biphasische Proteinanh{\"a}ufung, wie auch ein wechselndes Proteinaufkommen (LINDHOLM et al. 1996) nach intraoss{\"a}rer Implantation nicht nachvollzogen werden. Erg{\"a}nzende Beobachtungen der hier vorgestellten Studie verdeutlichen, dass die lokale, intraoss{\"a}re Anreicherung von Matrixproteinen, unabh{\"a}ngig von Implantatinsertion oder gar Werkstoffeigenschaften, nach jeglicher Traumatisierung von Knochengewebe den kn{\"o}chernen Reparationsprozess begleitet. Unter dem Aspekt der Restitutio ad Integrum von Knochenwunden k{\"o}nnen diese Beobachtungen auf das implantatnahe und das implantatferne Restitutionszentrum {\"u}bertragen werden. Die Aktivit{\"a}t dieser Restitutionszentren h{\"a}lt bis zum Abschluss der kn{\"o}chernen Remodellierung {\"u}ber 12 Wochen hinaus an. Dies deckt sich mit Aussagen von STEFLIK et al. (1998), wonach der periimplant{\"a}re Knochenumbau langfristig dynamisch bestehen bleibt. Um der zunehmenden Verbreitung nicht nur dentaler Implantate gerecht zu werden, muss auch zuk{\"u}nftig ein besseres Verst{\"a}ndnis der Komunikationswege zwischen Implantaten und Biosystemen gewonnen werden. Dies bedeutet f{\"u}r die Herstellung und Weiterentwicklung von Implantaten, dass nicht nur die Werkstoff- und Oberfl{\"a}chenauswahl wichtig ist, sondern auch die funktionell erforderliche Oberfl{\"a}chenstrukturierung auf die gew{\"u}nschte Wechselwirkung mit Bestandteilen der EZM und den Zellen angepasst sein sollte (THULL 2005). Die CLSM kann hierbei aufgrund der M{\"o}glichkeit der 3-dimensionalen in-situ-Darstellung des Implantatinterface biologisch-strukturelle und molekularbiologisch-immunologische Fragestellungen beantworten.}, subject = {Implantat}, language = {de} } @article{WenckerMarincolaSchoenfelderetal.2021, author = {Wencker, Freya D. R and Marincola, Gabriella and Schoenfelder, Sonja M. K. and Maaß, Sandra and Becher, D{\"o}rte and Ziebuhr, Wilma}, title = {Another layer of complexity in Staphylococcus aureus methionine biosynthesis control: unusual RNase III-driven T-box riboswitch cleavage determines met operon mRNA stability and decay}, series = {Nucleic Acids Research}, volume = {49}, journal = {Nucleic Acids Research}, number = {4}, doi = {10.1093/nar/gkaa1277}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-259029}, pages = {2192-2212}, year = {2021}, abstract = {In Staphylococcus aureus, de novo methionine biosynthesis is regulated by a unique hierarchical pathway involving stringent-response controlled CodY repression in combination with a T-box riboswitch and RNA decay. The T-box riboswitch residing in the 5′ untranslated region (met leader RNA) of the S. aureus metICFE-mdh operon controls downstream gene transcription upon interaction with uncharged methionyl-tRNA. met leader and metICFE-mdh (m)RNAs undergo RNase-mediated degradation in a process whose molecular details are poorly understood. Here we determined the secondary structure of the met leader RNA and found the element to harbor, beyond other conserved T-box riboswitch structural features, a terminator helix which is target for RNase III endoribonucleolytic cleavage. As the terminator is a thermodynamically highly stable structure, it also forms posttranscriptionally in met leader/ metICFE-mdh read-through transcripts. Cleavage by RNase III releases the met leader from metICFE-mdh mRNA and initiates RNase J-mediated degradation of the mRNA from the 5′-end. Of note, metICFE-mdh mRNA stability varies over the length of the transcript with a longer lifespan towards the 3′-end. The obtained data suggest that coordinated RNA decay represents another checkpoint in a complex regulatory network that adjusts costly methionine biosynthesis to current metabolic requirements.}, language = {en} } @article{GeyerChalmersMacKintoshetal.2013, author = {Geyer, Kathrin K. and Chalmers, Iain W. and MacKintosh, Neil and Hirst, Julie E. and Geoghegan, Rory and Badets, Mathieu and Brophy, Peter M. and Brehm, Klaus and Hoffmann, Karl F.}, title = {Cytosine methylation is a conserved epigenetic feature found throughout the phylum Platyhelminthes}, series = {BMC Genomics}, volume = {14}, journal = {BMC Genomics}, number = {462}, issn = {1471-2164}, doi = {10.1186/1471-2164-14-462}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-121892}, year = {2013}, abstract = {Background: The phylum Platyhelminthes (flatworms) contains an important group of bilaterian organisms responsible for many debilitating and chronic infectious diseases of human and animal populations inhabiting the planet today. In addition to their biomedical and veterinary relevance, some platyhelminths are also frequently used models for understanding tissue regeneration and stem cell biology. Therefore, the molecular (genetic and epigenetic) characteristics that underlie trophic specialism, pathogenicity or developmental maturation are likely to be pivotal in our continued studies of this important metazoan group. Indeed, in contrast to earlier studies that failed to detect evidence of cytosine or adenine methylation in parasitic flatworm taxa, our laboratory has recently defined a critical role for cytosine methylation in Schistosoma mansoni oviposition, egg maturation and ovarian development. Thus, in order to identify whether this epigenetic modification features in other platyhelminth species or is a novelty of S. mansoni, we conducted a study simultaneously surveying for DNA methylation machinery components and DNA methylation marks throughout the phylum using both parasitic and non-parasitic representatives. Results: Firstly, using both S. mansoni DNA methyltransferase 2 (SmDNMT2) and methyl-CpG binding domain protein (SmMBD) as query sequences, we illustrate that essential DNA methylation machinery components are well conserved throughout the phylum. Secondly, using both molecular (methylation specific amplification polymorphism, MSAP) and immunological (enzyme-linked immunoabsorbent assay, ELISA) methodologies, we demonstrate that representative species (Echinococcus multilocularis, Protopolystoma xenopodis, Schistosoma haematobium, Schistosoma japonicum, Fasciola hepatica and Polycelis nigra) within all four platyhelminth classes (Cestoda, Monogenea, Trematoda and 'Turbellaria') contain methylated cytosines within their genome compartments. Conclusions: Collectively, these findings provide the first direct evidence for a functionally conserved and enzymatically active DNA methylation system throughout the Platyhelminthes. Defining how this epigenetic feature shapes phenotypic diversity and development within the phylum represents an exciting new area of metazoan biology.}, language = {en} } @article{RickmanLachAbhyankaretal.2015, author = {Rickman, Kimberly A. and Lach, Francis P. and Abhyankar, Avinash and Donovan, Frank X. and Sanborn, Erica M. and Kennedy, Jennifer A. and Sougnez, Carrie and Gabriel, Stacey B. and Elemento, Olivier and Chandrasekharappa, Settara C. and Schindler, Detlev and Auerbach, Arleen D. and Smogorzewska, Agata}, title = {Deficiency of UBE2T, the E2 Ubiquitin Ligase Necessary for FANCD2 and FANCI Ubiquitination, Causes FA-T Subtype of Fanconi Anemia}, series = {Cell Reports}, volume = {12}, journal = {Cell Reports}, doi = {10.1016/j.celrep.2015.06.014}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-151525}, pages = {35 -- 41}, year = {2015}, abstract = {Fanconi anemia (FA) is a rare bone marrow failure and cancer predisposition syndrome resulting from pathogenic mutations in genes encoding proteins participating in the repair of DNA interstrand crosslinks (ICLs). Mutations in 17 genes (FANCA-FANCS) have been identified in FA patients, defining 17 complementation groups. Here, we describe an individual presenting with typical FA features who is deficient for the ubiquitin-conjugating enzyme (E2), UBE2T. UBE2T is known to interact with FANCL, the E3 ubiquitin-ligase component of the multiprotein FA core complex, and is necessary for the monoubiquitination of FANCD2 and FANCI. Proband fibroblasts do not display FANCD2 and FANCI monoubiquitination, do not form FANCD2 foci following treatment with mitomycin C, and are hypersensitive to crosslinking agents. These cellular defects are complemented by expression of wild-type UBE2T, demonstrating that deficiency of the protein UBE2T can lead to Fanconi anemia. UBE2T gene gains an alias of FANCT.}, language = {en} } @article{HaarmannNehenDeissetal.2015, author = {Haarmann, Axel and Nehen, Mathias and Deiß, Annika and Buttmann, Mathias}, title = {Fumaric acid esters do not reduce inflammatory NF-\(\kappa\)B/p65 nuclear translocation, ICAM-1 expression and T-cell adhesiveness of human brain microvascular endothelial cells}, series = {International Journal of Molecular Sciences}, volume = {16}, journal = {International Journal of Molecular Sciences}, doi = {10.3390/ijms160819086}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-148295}, pages = {19086-19095}, year = {2015}, abstract = {Dimethyl fumarate (DMF) is approved for disease-modifying treatment of patients with relapsing-remitting multiple sclerosis. Animal experiments suggested that part of its therapeutic effect is due to a reduction of T-cell infiltration of the central nervous system (CNS) by uncertain mechanisms. Here we evaluated whether DMF and its primary metabolite monomethyl fumarate (MMF) modulate pro-inflammatory intracellular signaling and T-cell adhesiveness of nonimmortalized single donor human brain microvascular endothelial cells at low passages. Neither DMF nor MMF at concentrations of 10 or 50 \(\mu\)M blocked the IL-1\(\beta\)-induced nuclear translocation of NF-\(\kappa\)B/p65, whereas the higher concentration of DMF inhibited the nuclear entry of p65 in human umbilical vein endothelium cultured in parallel. DMF and MMF also did not alter the IL-1\(\beta\)-stimulated activation of p38 MAPK in brain endothelium. Furthermore, neither DMF nor MMF reduced the basal or IL-1\(\beta\)-inducible expression of ICAM-1. In accordance, both fumaric acid esters did not reduce the adhesion of activated Jurkat T cells to brain endothelium under basal or inflammatory conditions. Therefore, brain endothelial cells probably do not directly mediate a potential blocking effect of fumaric acid esters on the inflammatory infiltration of the CNS by T cells.}, language = {en} } @article{DiestelReschMeinhardtetal.2013, author = {Diestel, Uschi and Resch, Marcus and Meinhardt, Kathrin and Weiler, Sigrid and Hellmann, Tina V. and Mueller, Thomas D. and Nickel, Joachim and Eichler, Jutta and Muller, Yves A.}, title = {Identification of a Novel TGF-beta-Binding Site in the Zona Pellucida C-terminal (ZP-C) Domain of TGF-\(\beta\)-Receptor-3 (TGFR-3)}, series = {PLoS ONE}, volume = {8}, journal = {PLoS ONE}, number = {6}, doi = {10.1371/journal.pone.0067214}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-130904}, pages = {e67214}, year = {2013}, abstract = {The zona pellucida (ZP) domain is present in extracellular proteins such as the zona pellucida proteins and tectorins and participates in the formation of polymeric protein networks. However, the ZP domain also occurs in the cytokine signaling co-receptor transforming growth factor beta (TGF-\(\beta\)) receptor type 3 (TGFR-3, also known as betaglycan) where it contributes to cytokine ligand recognition. Currently it is unclear how the ZP domain architecture enables this dual functionality. Here, we identify a novel major TGF-beta-binding site in the FG loop of the C-terminal subdomain of the murine TGFR-3 ZP domain (ZP-C) using protein crystallography, limited proteolysis experiments, surface plasmon resonance measurements and synthetic peptides. In the murine 2.7 angstrom crystal structure that we are presenting here, the FG-loop is disordered, however, well-ordered in a recently reported homologous rat ZP-C structure. Surprisingly, the adjacent external hydrophobic patch (EHP) segment is registered differently in the rat and murine structures suggesting that this segment only loosely associates with the remaining ZP-C fold. Such a flexible and temporarily-modulated association of the EHP segment with the ZP domain has been proposed to control the polymerization of ZP domain-containing proteins. Our findings suggest that this flexibility also extends to the ZP domain of TGFR-3 and might facilitate co-receptor ligand interaction and presentation via the adjacent FG-loop. This hints that a similar C-terminal region of the ZP domain architecture possibly regulates both the polymerization of extracellular matrix proteins and cytokine ligand recognition of TGFR-3.}, language = {en} } @article{SarukhanyanShityakovDandekar2018, author = {Sarukhanyan, Edita and Shityakov, Sergey and Dandekar, Thomas}, title = {In silico designed Axl receptor blocking drug candidates against Zika virus infection}, series = {ACS Omega}, volume = {3}, journal = {ACS Omega}, number = {5}, doi = {10.1021/acsomega.8b00223}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-176739}, pages = {5281-5290}, year = {2018}, abstract = {After a large outbreak in Brazil, novel drugs against Zika virus became extremely necessary. Evaluation of virus-based pharmacological strategies concerning essential host factors brought us to the idea that targeting the Axl receptor by blocking its dimerization function could be critical for virus entry. Starting from experimentally validated compounds, such as RU-301, RU-302, warfarin, and R428, we identified a novel compound 2′ (R428 derivative) to be the most potent for this task amongst a number of alternative compounds and leads. The improved affinity of compound 2′ was confirmed by molecular docking as well as molecular dynamics simulation techniques using implicit solvation models. The current study summarizes a new possibility for inhibition of the Axl function as a potential target for future antiviral therapies.}, language = {en} } @phdthesis{Stuermer2004, author = {St{\"u}rmer, Andrea}, title = {Interaktionen und Lokalisationen der Replikationsproteine der Maus}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-9563}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2004}, abstract = {Die Initiation der DNA-Replikation in Eukaryonten ist ein hochkonservierter Prozess, der in drei Stufen unterteilt werden kann. Im ersten Schritt bindet der „origin recognition complex" (ORC) an Replikationsorigins innerhalb chromosomaler DNA, wodurch eine Assemblierung des pr{\"a}replikativen Komplexes an diesen Startpunkten ausgel{\"o}st wird. An den ORC lagern sich anschließend die Proteine CDC6 und RLF-B/CDT1 an, die beide schließlich f{\"u}r die Rekrutierung des heterohexameren MCM-Komplexes verantwortlich sind. Durch die Aktivit{\"a}t der Kinase CDC7/DBF4 wird der Origin f{\"u}r den Start der DNA-Replikation lizenziert, sobald die finale Anlagerung des Initiationsfaktors CDC45 den pr{\"a}replikativen Komplex vervollst{\"a}ndigt hat. Ein Ziel der vorliegenden Arbeit war es, das komplexe Netzwerk von Protein-Protein-Interaktionen zwischen den verschiedenen Initiationsfaktoren durch FRET-Studien aufzukl{\"a}ren. Es konnten Interaktionen zwischen MCM5 und MCM3, MCM5 und MCM7, ORC5 und MCM7, sowie CDT1 und MCM6 in vivo nachgewiesen werden. Die vorliegende Arbeit hatte weiterhin die Untersuchung der intrazellul{\"a}ren Lokalisation der sechs murinen MCM-Proteine in Fibroblasten-Zellen der Maus zum Ziel.Lokalisationsstudien der EGFP-gekoppelten MCM-Proteine zeigten, dass die Proteine EGFP-MCM4, MCM4-EGFP, MCM4-NLS-EGFP, EGFP-MCM5, MCM5-EGFP, MCM5-NLS-EGFP, und EGFP-MCM7 u.a. am Centrosom lokalisiert sind. Durch Immunfluoreszenz-F{\"a}rbung mit Antik{\"o}rpern gegen eine konservierte Dom{\"a}ne aller sechs MCM-Untereinheiten sowie mit spezifischen MCM3- und MCM6-Antik{\"o}rpern konnte eine centrosomale Lokalisation auch f{\"u}r die endogenen Proteine nachgewiesen werden. Zus{\"a}tzlich zu den Lokalisationsanalysen konnte {\"u}ber Immunpr{\"a}zipitationsstudien gezeigt werden, dass MCM3 und MCM6 mit dem centrosomalen Protein g-Tubulin pr{\"a}zipitierbar sind. Die Tatsache, dass alle Untereinheiten des MCM-Komplexes mit dem Centrosom assoziiert sind, deutet darauf hin, dass die MCM-Proteine am Centrosom als Multiproteinkomplex gebunden sind. Da MCM3 und MCM6 auch in allen Mitose-Stadien an das Centrosom gebunden sind, kann von einer funktionellen Aufgabe dieser Proteine w{\"a}hrend der Zellteilung ausgegangen werden. Im letzten Teil dieser Arbeit sollte die Funktion der MCM-Proteine am Centrosom durch „knock-down" des Proteins MCM3 mittels RNA-Interferenz-Studien untersucht werden. Ziel war, ein induzierbares MCM3-siRNA-exprimierendes System zu etablieren. Das gezielte An- und Abschalten der MCM3siRNA-Transkription sollte durch das TetOn-System erm{\"o}glicht werden. Bei diesem System wird durch Zugabe von Doxycyclin die Transkription aktiviert, bei Abwesenheit von Doxycyclin wird sie abgeschaltet. Auf dieser Basis wurde der Einfluss von Doxycyclin auf das Wachstumsverhalten der MCM3siRNA-exprimierenden Zelllinie untersucht. Im Vergleich zu NIH/3T3-Zellen und NIH/3T3-TetOn-Zellen konnte eine deutlich reduzierte Proliferation bei Behandlung der Zellen mit Doxycyclin beobachtet werden. Diese Ergebnisse deuten auf eine durch Produktion von MCM3siRNA verursachte St{\"o}rung des Zellwachstums hin. Zus{\"a}tzlich beeinflusst die durch Doxycyclin induzierte Synthese von MCM3siRNA die Zellzyklusverteilung. So befinden sich nach Doxycyclinbehandlung mehr Zellen in der G2/M-Phase als in unbehandelten, asynchronen NIH/3T3-Zellen. Die MCM3-Proteinmenge wurde nach 19 Tagen Doxycyclinbehandlung fast vollst{\"a}ndig durch die produzierte MCM3siRNA herunterreguliert. Um einen m{\"o}glichen Einfluss der MCM3siRNA auf andere MCM-Proteine zu untersuchen, wurde der Protein-Level von MCM6 analysiert. Dabei wurde eine vermehrte MCM6-Expression nachgewiesen. Diese Beobachtung deutet darauf hin, dass durch Bildung von MCM3siRNA der Expressions-Level von MCM6 beeinflusst wird. Auff{\"a}llig h{\"a}ufig lagen in MCM3-„knock-down"-Zellen mehrere Zellkerne vor. Neben Zellen mit zwei Zellkernen finden sich auch Zellen mit einer ungeraden Anzahl an Zellkernen. Demnach durchlaufen die Zellkerne in einer Zelle unterschiedliche Zellzyklusstadien. Die Ph{\"a}notypen, die nach Transkription der MCM3siRNA beobachtet wurden, sind komplex und zeigen Defekte in zahlreichen Mitose-Stadien. Das Auftreten multinukle{\"a}rer Zellen ist auf eine fehlende Cytokinese zur{\"u}ckzuf{\"u}hren. Die Mikrotubuli waren in den MCM3-„knock-down"-Zellen nur unzureichend organisiert, wobei sie kaum mit der Zellperipherie verankert waren. Diese Resultate weisen darauf hin, dass die MCM-Proteine neben ihrer essentiellen Rolle in der Ausbildung des pr{\"a}replikativen Komplexes eine zus{\"a}tzliche Funktion in der Mitose aus{\"u}ben.}, subject = {Replikation}, language = {de} } @article{WagnerVolkmerSharanetal.2014, author = {Wagner, Ines and Volkmer, Michael and Sharan, Malvika and Villaveces, Jose M. and Oswald, Felix and Surendranath, Vineeth and Habermann, Bianca H.}, title = {morFeus: a web-based program to detect remotely conserved orthologs using symmetrical best hits and orthology network scoring}, series = {BMC Bioinformatics}, volume = {15}, journal = {BMC Bioinformatics}, number = {263}, doi = {10.1186/1471-2105-15-263}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-115590}, year = {2014}, abstract = {Background: Searching the orthologs of a given protein or DNA sequence is one of the most important and most commonly used Bioinformatics methods in Biology. Programs like BLAST or the orthology search engine Inparanoid can be used to find orthologs when the similarity between two sequences is sufficiently high. They however fail when the level of conservation is low. The detection of remotely conserved proteins oftentimes involves sophisticated manual intervention that is difficult to automate. Results: Here, we introduce morFeus, a search program to find remotely conserved orthologs. Based on relaxed sequence similarity searches, morFeus selects sequences based on the similarity of their alignments to the query, tests for orthology by iterative reciprocal BLAST searches and calculates a network score for the resulting network of orthologs that is a measure of orthology independent of the E-value. Detecting remotely conserved orthologs of a protein using morFeus thus requires no manual intervention. We demonstrate the performance of morFeus by comparing it to state-of-the-art orthology resources and methods. We provide an example of remotely conserved orthologs, which were experimentally shown to be functionally equivalent in the respective organisms and therefore meet the criteria of the orthology-function conjecture. Conclusions: Based on our results, we conclude that morFeus is a powerful and specific search method for detecting remotely conserved orthologs.}, language = {en} }