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Dynamic Architecture of DNA Repair Complexes and the Synaptonemal Complex at Sites of Meiotic Recombination.
- Source :
-
Cell [Cell] 2018 Jun 14; Vol. 173 (7), pp. 1678-1691.e16. Date of Electronic Publication: 2018 May 10. - Publication Year :
- 2018
-
Abstract
- Meiotic double-strand breaks (DSBs) are generated and repaired in a highly regulated manner to ensure formation of crossovers (COs) while also enabling efficient non-CO repair to restore genome integrity. We use structured-illumination microscopy to investigate the dynamic architecture of DSB repair complexes at meiotic recombination sites in relationship to the synaptonemal complex (SC). DSBs resected at both ends are converted into inter-homolog repair intermediates harboring two populations of BLM helicase and RPA, flanking a single population of MutSĪ³. These intermediates accumulate until late pachytene, when repair proteins disappear from non-CO sites and CO-designated sites become enveloped by SC-central region proteins, acquire a second MutSĪ³ population, and lose RPA. These and other data suggest that the SC may protect CO intermediates from being dismantled inappropriately and promote CO maturation by generating a transient CO-specific repair compartment, thereby enabling differential timing and outcome of repair at CO and non-CO sites.<br /> (Copyright © 2018 Elsevier Inc. All rights reserved.)
- Subjects :
- Animals
Caenorhabditis elegans genetics
DNA Breaks, Double-Stranded
DNA-Binding Proteins metabolism
Imaging, Three-Dimensional
Microscopy
Prophase
Rad51 Recombinase metabolism
Replication Protein A metabolism
Synaptonemal Complex chemistry
Caenorhabditis elegans metabolism
Caenorhabditis elegans Proteins metabolism
DNA Repair
Meiosis
Recombination, Genetic genetics
Synaptonemal Complex metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1097-4172
- Volume :
- 173
- Issue :
- 7
- Database :
- MEDLINE
- Journal :
- Cell
- Publication Type :
- Academic Journal
- Accession number :
- 29754818
- Full Text :
- https://doi.org/10.1016/j.cell.2018.03.066