Fakultät für Biologie
Personenverzeichnis
Die Links zu den Personen führen zum zentralen Personenverzeichnis der UDE, das die Daten aus dem LSF ausliest. Persönliche Informationen können im LSF (nach Login mit der Uni-Kennung) selbst bearbeitet werden.
Fakultät Biologie
Anschrift
Universitätsstr 2
45117 Essen
45117 Essen
Raum
S05 R02 H87
Telefon
Telefax
E-Mail
Funktionen
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Gruppe der Professorinnen und Professoren, Fakultätsrat Biologie
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Professor/in, Molekulare Genetik II
Aktuelle Veranstaltungen
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WiSe 2025
- Seminar zur Genetik
- Übungen zur Mikrobiologie und Genetik für medizinische Biologen
- Übungen zur Genetik (BSc Biologie, BSc Molekularbiologie, BSc AquaBio)
- Allgemeine Methoden (Bachelor Bio)
- Allgemeine Methoden in der Molekularbiologie
- ZJA71008, ZJA71023, ZJA40160, ZJA40166 - Genetik - Bio BA
- Molekulare Genetik f. Molbio (VO u. PR)
- ZJA91054 - Molekulare Genetik - Bio Master
- Group Meeting
- Einführung in die Genetik
Vergangene Veranstaltungen (max. 10)
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SoSe 2025
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WiSe 2024
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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TopBP1 utilises a bipartite GINS binding mode to support genome replicationIn: Nature Communications, Jg. 15, 2024, Nr. 1, 1797DOI, Online Volltext (Open Access)
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Cell-type specificity of the human mutation landscape with respect to DNA replication dynamicsIn: Cell Genomics, Jg. 3, 2023, Nr. 6, 100315DOI (Open Access)
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Refining the domain architecture model of the replication origin firing factor Treslin/TICRRIn: Life Science Alliance, Jg. 5, 2022, Nr. 5, e202101088DOI (Open Access)
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The Role of MTBP as a Replication Origin Firing FactorIn: Biology, Jg. 11, 2022, Nr. 6, 827DOI, Online Volltext (Open Access)
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The TRESLIN-MTBP complex couples completion of DNA replication with S/G2 transitionIn: Molecular Cell, Jg. 82, 2022, Nr. 18, S. 3350 – 3365.e7DOI (Open Access)
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MTBP phosphorylation controls DNA replication origin firingIn: Scientific Reports, Jg. 11, 2021, Nr. 1, 4242DOI, Online Volltext (Open Access)
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Origin firing regulations to control genome replication timingIn: Genes, Jg. 10, 2019, Nr. 3, 199DOI (Open Access)
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The Cdk8/19-cyclin C transcription regulator functions in genome replication through metazoan Sld7In: PLoS Biology, Jg. 17, 2019, Nr. 1, e2006767DOI (Open Access)
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BRCT domains of the DNA damage checkpoint proteins TOPBP1/Rad4 display distinct specificities for phosphopeptide ligandsIn: eLife, Jg. 7, 2018, e39979DOI (Open Access)
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Targeting of the Fun30 nucleosome remodeller by the Dpb11 scaffold facilitates cell cycle-regulated DNA end resectionIn: eLife, 2017, Nr. 6, e21687DOI, Online Volltext (Open Access)
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Identification of a Heteromeric Complex That Promotes DNA Replication Origin Firing in Human CellsIn: Science, Jg. 340, 2013, Nr. 6135, S. 981 – 984
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Activation of the replicative DNA helicase : breaking up is hard to doIn: Current Opinion in Cell Biology, Jg. 24, 2012, Nr. 3, S. 423 – 430
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Cleavage of cohesin rings coordinates the separation of centrioles and chromatidsIn: Nature Cell Biology, Jg. 13, 2011, Nr. 8, S. 966 – 972
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Regulation of DNA Replication through Sld3-Dpb11 Interaction Is Conserved from Yeast to HumansIn: Current Biology, Jg. 21, 2011, Nr. 13, S. 1152 – 1157
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Phosphorylation-dependent Binding of Cyclin B1 to a Cdc6-like Domain of Human SeparaseIn: The Journal of Biological Chemistry (JBC), Jg. 283, 2008, Nr. 2, S. 816 – 823
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Anaphase Topsy-Turvy : Cdk1 a Securin, Separase a CKIIn: Cell Cycle, Jg. 5, 2006, Nr. 1, S. 11 – 13
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Essential CDK1-inhibitory role for separase during meiosis I in vertebrate oocytesIn: Nature Cell Biology, Jg. 8, 2006, Nr. 9, S. 1035 – 1037
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Mutual inhibition of separase and Cdk1 by two-step complex formationIn: Molecular Cell, Jg. 19, 2005, Nr. 1, S. 135 – 141DOI (Open Access)
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Rephrasing anaphase : separase FEARs shugoshinIn: Chromosoma, Jg. 113, 2005, Nr. 8, S. 409 – 417
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Regulation of the Initiation of DNA Replication upon DNA Damage in EukaryotesIn: The Initiation of DNA Replication in Eukaryotes / Kaplan, Daniel L. (Hrsg.). Cham: Springer, 2016, S. 443 – 460
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Roles of Sld2, Sld3, and Dpb11 in Replication InitiationIn: The Initiation of DNA Replication in Eukaryotes / Kaplan, Daniel L. (Hrsg.). Cham: Springer, 2016, S. 297 – 318