Rad52 Restrains Resection at DNA Double-Strand Break Ends in Yeast
No Thumbnail Available
Can’t use the file because of accessibility barriers? Contact us
Date
2019-09-18
Journal Title
Journal ISSN
Volume Title
Publisher
Permanent Link
Abstract
Rad52 is a key factor for homologous recombination (HR) in yeast. Rad52 helps assemble Rad51-ssDNA nucleoprotein filaments that catalyze DNA strand exchange, and it mediates single-strand DNA annealing. We find that Rad52 has an even earlier function in HR in restricting DNA double-stranded break ends resection that generates 3′ single-stranded DNA (ssDNA) tails. In fission yeast, Exo1 is the primary resection nuclease, with the helicase Rqh1 playing a minor role. We demonstrate that the choice of two extensive resection pathways is regulated by Rad52. In rad52 cells, the resection rate increases from ∼3–5 kb/h up to ∼10–20 kb/h in an Rqh1-dependent manner, while Exo1 becomes dispensable. Budding yeast Rad52 similarly inhibits Sgs1-dependent resection. Single-molecule analysis with purified budding yeast proteins shows that Rad52 competes with Sgs1 for DNA end binding and inhibits Sgs1 translocation along DNA. These results identify a role for Rad52 in limiting ssDNA generated by end resection.
Description
Keywords
Citation
Yan, Zhenxin, et al. "Rad52 Restrains Resection at DNA Double-Strand Break Ends in Yeast." Molecular cell, vol. 76, no. 5, 2019-09-18, https://doi.org/10.1016/j.molcel.2019.08.017.
Journal
Molecular cell