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Biologie
Anschrift
Universitätsstr. 5
D-45141 Essen
D-45141 Essen
Raum
S05 R01 H75
Telefon
Telefax
E-Mail
Funktionen
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Gruppe der Professorinnen und Professoren, Fakultätsrat Biologie
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Vorsitzender, Promotionsausschuss Fakultät Biologie
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Professor/in, Molekulare Genetik I
Aktuelle Veranstaltungen
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2024 WS
- Modern Biomedicine/Beispiele biologischer Forschung (Teil 1)
- Anleitung zum wissenschaftlichen Arbeiten
- Seminar zur Genetik
- Allgemeine Methoden in der Molekularbiologie
- Grundlagen der Biotechnologie (LA Ba); Platzvergabe: 3 Präferenzen angeben
- Molekulare Genetik f. Molbio (VO u. PR)
- Begleitmodul zur Masterarbeit: Professionelles Handeln wissenschaftsbasiert weiterentwickeln aus der Perspektive des Unterrichtsfachs Biologie (LA Master)
- Molekulare Genetik
- Molekulare Genetik
- Group Meeting
- Einführung in die Genetik
Vergangene Veranstaltungen (max. 10)
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2024 SS
- Molekularbiologie der Chromosomen und genetische Stabilität (Spezielle Genetik)
- Applied Molecular Biology
- Struktur und Funktion (LA Ba) - Anmeldung mit mehreren Prioritäten
- Anleitungen zum wissenschaftlichen Arbeiten
- Begleitmodul zur Masterarbeit: Professionelles Handeln wissenschaftsbasiert weiterentwickeln aus der Perspektive des Unterrichtsfachs Biologie (LA Master)
- Group Meeting
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2023 WS
Die folgenden Publikationen sind in der Online-Universitätsbibliographie der Universität Duisburg-Essen verzeichnet. Weitere Informationen finden Sie gegebenenfalls auch auf den persönlichen Webseiten der Person.
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Microtubule end-on attachment maturation regulates Mps1 association with its kinetochore receptorIn: Current Biology Jg. 34 (2024) Nr. 11, S. 2279 - 2293.e6Online Volltext: dx.doi.org/ (Open Access)
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Multivalent Molecular Tweezers Disrupt the Essential NDC80 Interaction with MicrotubulesIn: Journal of the American Chemical Society: JACS Jg. 145 (2023) Nr. 28, S. 15251 - 15264Online Volltext: dx.doi.org/
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Systematic analysis of microtubule plus-end networks defines EB-cargo complexes critical for mitosis in budding yeastIn: Molecular Biology of the Cell Jg. 34 (2023) Nr. 5, ar37Online Volltext: dx.doi.org/ Online Volltext (Open Access)
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Cdc4 phospho-degrons allow differential regulation of ame1ceⁿp⁻u protein stability across the cell cycleIn: eLife Jg. 10 (2021) e67390Online Volltext: dx.doi.org/ (Open Access)
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Phospho-regulated Bim1/EB1 interactions trigger Dam1c ring assembly at the budding yeast outer kinetochoreIn: The EMBO Journal Jg. 40 (2021) Nr. 18, e108004Online Volltext: dx.doi.org/ (Open Access)
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Auto-inhibition of Mif2/CENP-C ensures centromere-dependent kinetochore assembly in budding yeastIn: The EMBO Journal Jg. 39 (2020) Nr. 14, S. e102938Online Volltext: dx.doi.org/ Online Volltext (Open Access)
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The EB1-Kinesin-14 complex is required for efficient metaphase spindle assembly and kinetochore bi-orientationIn: The Journal of Cell Biology (JCB) Jg. 219 (2020) Nr. 12, 202003072Online Volltext: dx.doi.org/ (Open Access)
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Molecular basis for inner kinetochore configuration through RWD domain–peptide interactionsIn: The EMBO Journal Jg. 36 (2017) Nr. 23, S. 3458 - 3482Online Volltext: dx.doi.org/ (Open Access)
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Structural differences between yeast and mammalian microtubules revealed by cryo-EMIn: The Journal of Cell Biology (JCB) Jg. 216 (2017) Nr. 9, S. 2669 - 2677Online Volltext: dx.doi.org/ (Open Access)
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TORC1 signaling exerts spatial control over microtubule dynamics by promoting nuclear export of Stu2In: The Journal of Cell Biology (JCB) Jg. 216 (2017) Nr. 11, S. 3471 - 3484Online Volltext: dx.doi.org/ (Open Access)
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A Force-Induced Directional Switch of a Molecular Motor Enables Parallel Microtubule Bundle FormationIn: Cell Jg. 167 (2016) Nr. 2, S. 539 - 552.e14Online Volltext: dx.doi.org/ Online Volltext (Open Access)
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BiGBac enables rapid gene assembly for the expression of large multisubunit protein complexesIn: Proceedings of the National Academy of Sciences of the United States of America (PNAS) Jg. 113 (2016) Nr. 19, S. E2564 - E2569Online Volltext: dx.doi.org/ (Open Access)
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CCAN Assembly Configures Composite Binding Interfaces to Promote Cross-Linking of Ndc80 Complexes at the KinetochoreIn: Current Biology Jg. 26 (2016) Nr. 17, S. 2370 - 2378Online Volltext: dx.doi.org/ Online Volltext (Open Access)
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Non-catalytic motor domains enable processive movement and functional diversification of the kinesin-14 Kar3In: eLife Jg. 4 (2015) S. e04489Online Volltext: dx.doi.org/ (Open Access)
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A cooperative mechanism drives budding yeast kinetochore assembly downstream of CENP-AIn: The Journal of Cell Biology (JCB) Jg. 206 (2014) Nr. 4, S. 506 - 524Online Volltext: dx.doi.org/ (Open Access)
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“Uno, nessuno e centomila” : the different faces of the budding yeast kinetochoreIn: Chromosoma Jg. 123 (2014) Nr. 5, S. 447 - 457Online Volltext: dx.doi.org/
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A structural basis for kinetochore recruitment of the Ndc80 complex via two distinct centromere receptorsIn: The EMBO Journal Jg. 32 (2013) Nr. 3, S. 409 - 423Online Volltext: dx.doi.org/
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Esperanto for histones : CENP-A, not CenH3, is the centromeric histone H3 variantIn: Chromosome Research Jg. 21 (2013) Nr. 2, S. 101 - 106Online Volltext: dx.doi.org/
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Molecular requirements for the formation of a kinetochore–microtubule interface by Dam1 and Ndc80 complexesIn: The Journal of Cell Biology (JCB) Jg. 200 (2013) Nr. 1, S. 21 - 30Online Volltext: dx.doi.org/
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CENP-T proteins are conserved centromere receptors of the Ndc80 complexIn: Nature Cell Biology Jg. 14 (2012) Nr. 6, S. 604 - 613Online Volltext: dx.doi.org/
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Family matters: structural and functional conservation of centromere-associated proteins from yeast to humansIn: Trends in Cell Biology Jg. 23 (2012) Nr. 6, S. 260 - 269Online Volltext: dx.doi.org/
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Spatiotemporal regulation of Ipl1/Aurora activity by direct Cdk1 phosphorylationIn: Current Biology Jg. 22 (2012) Nr. 9, S. 787 - 793Online Volltext: dx.doi.org/
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A blueprint for kinetochores - new insights into the molecular mechanics of cell divisionIn: Nature reviews. Molecular cell biology Jg. 12 (2011) Nr. 7, S. 407 - 412Online Volltext: dx.doi.org/
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Molecular architecture and connectivity of the budding yeast Mtw1 kinetochore complexIn: Journal of Molecular Biology (JMB) Jg. 405 (2011) Nr. 2, S. 548 - 559Online Volltext: dx.doi.org/ Online Volltext (Open Access)
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The Dam1 complex confers microtubule plus end–tracking activity to the Ndc80 kinetochore complexIn: The Journal of Cell Biology (JCB) Jg. 189 (2010) Nr. 4, S. 641 - 649Online Volltext: dx.doi.org/
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A Dam1-based artificial kinetochore is sufficient to promote chromosome segregation in budding yeastIn: Nature Cell Biology Jg. 11 (2009) Nr. 9, S. 1109 - 1115Online Volltext: dx.doi.org/
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Phosphoregulation of the budding yeast EB1 homologue Bim1p by Aurora/Ipl1pIn: The Journal of Cell Biology (JCB) Jg. 186 (2009) Nr. 3, S. 379 - 391Online Volltext: dx.doi.org/
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Architecture and flexibility of the yeast Ndc80 kinetochore complexIn: Journal of Molecular Biology (JMB) Jg. 383 (2008) Nr. 4, S. 894 - 903Online Volltext: dx.doi.org/ Online Volltext (Open Access)
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Different assemblies of the DAM1 complex follow shortening microtubules by distinct mechanismsIn: Proceedings of the National Academy of Sciences of the United States of America (PNAS) Jg. 105 (2008) Nr. 19, S. 6918 - 6923Online Volltext: dx.doi.org/
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The Dam1 ring binds microtubules strongly enough to be a processive as well as energy-efficient coupler for chromosome motionIn: Proceedings of the National Academy of Sciences of the United States of America (PNAS) Jg. 105 (2008) Nr. 40, S. 15423 - 15428Online Volltext: dx.doi.org/
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A protein interaction map of the mitotic spindleIn: Molecular Biology of the Cell (MBoC) Jg. 18 (2007) Nr. 10, S. 3800 - 3809Online Volltext: dx.doi.org/
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Architecture of the Dam1 kinetochore ring complex and implications for microtubule-driven assembly and force-coupling mechanismsIn: Nature Structural & Molecular Biology Jg. 14 (2007) Nr. 8, S. 721 - 726Online Volltext: dx.doi.org/
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Structures and functions of yeast kinetochore complexesIn: Annual Review of Biochemistry Jg. 76 (2007) S. 563 - 591Online Volltext: dx.doi.org/
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The Dam1 kinetochore ring complex moves processively on depolymerizing microtubule endsIn: Nature Jg. 440 (2006) Nr. 7083, S. 565 - 569Online Volltext: dx.doi.org/
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Formation of a dynamic kinetochore-microtubule interface through assembly of the Dam1 ring complexIn: Molecular Cell Jg. 17 (2005) Nr. 2, S. 277 - 290Online Volltext: dx.doi.org/
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Architecture of the budding yeast kinetochore reveals a conserved molecular coreIn: The Journal of Cell Biology (JCB) Jg. 163 (2003) Nr. 2, S. 215 - 222Online Volltext: dx.doi.org/
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The Spc105Knl1/Kre28Zwint complex promotes mitotic error correction by outer kinetochore recruitment of the Ipl1Aurora B kinase(2024)Online Volltext: dx.doi.org/ (Open Access)
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Ipl1-controlled attachment maturation regulates Mps1 association with its kinetochore receptor(2023) 43 SeitenOnline Volltext: dx.doi.org/ (Open Access)