Biochemistry of Meiotic Recombination: Formation, Processing, and Resolution of Recombination Intermediates
- 5 April 2008
- book chapter
- Published by Springer Nature
- Vol. 3, 91-164
- https://doi.org/10.1007/7050_2008_039
Abstract
Meiotic recombination ensures accurate chromosome segregation during the first meiotic division and provides a mechanism to increase genetic heterogeneity among the meiotic products. Unlike homologous recombination in somatic (vegetative) cells, where sister chromatid interactions prevail and crossover formation is avoided, meiotic recombination is targeted to involve homologs, resulting in crossovers to connect the homologs before anaphase of the first meiotic division. The mechanisms responsible for homolog choice and crossover control are poorly understood, but likely involve meiosis-specific recombination proteins, as well as meiosis-specific chromosome organization and architecture. Much progress has been made to identify and biochemically characterize many of the proteins acting during meiotic recombination. This review will focus on the proteins that generate and process heteroduplex DNA, as well as those that process DNA junctions during meiotic recombination, with particular attention to how recombination activities promote crossover resolution between homologs.Keywords
This publication has 334 references indexed in Scilit:
- Rad52 Promotes Postinvasion Steps of Meiotic Double-Strand-Break RepairPublished by Elsevier ,2008
- Sae2 Is an Endonuclease that Processes Hairpin DNA Cooperatively with the Mre11/Rad50/Xrs2 ComplexMolecular Cell, 2007
- BLM Ortholog, Sgs1, Prevents Aberrant Crossing-over by Suppressing Formation of Multichromatid Joint MoleculesCell, 2007
- A DNA-translocating Snf2 Molecular Motor: Saccharomyces cerevisiae Rdh54 Displays Processive Translocation and Extrudes DNA LoopsJournal of Molecular Biology, 2007
- Rad50 Adenylate Kinase Activity Regulates DNA Tethering by Mre11/Rad50 ComplexesMolecular Cell, 2007
- Single Holliday Junctions Are Intermediates of Meiotic RecombinationCell, 2006
- In Vivo Roles of Rad52, Rad54, and Rad55 Proteins in Rad51-Mediated RecombinationMolecular Cell, 2003
- DNA helicase Srs2 disrupts the Rad51 presynaptic filamentNature, 2003
- The Single-End InvasionCell, 2001
- Meiosis-Specific DNA Double-Strand Breaks Are Catalyzed by Spo11, a Member of a Widely Conserved Protein FamilyCell, 1997