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Visualization of DNA Repair Proteins Interaction by Immunofluorescence
Published on: June 26, 2020
Postreplicative formation of cohesion is required for repair and induced by a single DNA break
Lena Ström1, Charlotte Karlsson, Hanna Betts Lindroos
1Department of Cell and Molecular Biology, Karolinska Institute, 171 77 Stockholm, Sweden.
Abstract:
Sister-chromatid cohesion, established during replication by the protein complex cohesin, is essential for both chromosome segregation and double-strand break (DSB) repair. Normally, cohesion formation is strictly limited to the S phase of the cell cycle, but DSBs can trigger cohesion also after DNA replication has been completed. The function of this damage-induced cohesion remains unknown. In this investigation, we show that damage-induced cohesion is essential for repair in postreplicative cells in yeast. Furthermore, it is established genome-wide after induction of a single DSB, and it is controlled by the DNA damage response and cohesin-regulating factors. We thus define a cohesion establishment pathway that is independent of DNA duplication and acts together with cohesion formed during replication in sister chromatid-based DSB repair.
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