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Mechanism of homologous recombination: Analysis of pathway intermediates and influence of chromatin structure

2 December - 11h00 - 23h59

Centre de recherche - Orsay

Amphithéâtre du Bâtiment 111

Campus universitaire, Orsay (91)

Description

Repairing DNA double-strand breaks is crucial for maintaining genome integrity, which occurs primarily through homologous recombination (HR) in S. cerevisiae. Nucleosomes, composed of DNA wrapped around a histone octamer, present a natural barrier to end-resection to initiate HR, but the impact on the downstream HR steps of homology search, DNA strand invasion and repair synthesis remain to be determined. Using the D-loop capture (DLC) and D-loop extension (DLE) assays to track HR intermediates, we revealed that H2B mono-ubiquitylation (H2Bubi) affects multiple steps during HR repair. We infer that H2Bubi modulates chromatin structure, not only promoting histone degradation for nascent D-loop formation but also stabilizing extended D-loops through nucleosome assembly. Furthermore, H2Bubi regulates DNA resection via Rad9 recruitment to suppress a feedback control mechanism that dampens D-loop formation and extension at hyper-resected ends. Through physical and genetic assays to determine repair outcomes, we demonstrate that H2Bubi plays a crucial role in preventing break-induced replication and thus promoting genomic stability.

Speakers

Wolf-Dietrich Heyer

University of California, Department of Microbiology & Molecular Genetics

Invited by

Valerie Borde

Institut Curie

Sarah Lambert

Institut Curie

A question about the seminar?

Research Director Valerie Borde

Valerie.Borde@curie.fr

Research Director Sarah Lambert

Sarah.Lambert@curie.fr