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PMID: 17547768 Published · epublish English Editorial

Resolving RAD51C function in late stages of homologous recombination.

Cell division ·Vol. 2 ·2007-06-04 ·Pages 15

Sharan SK, Kuznetsov SG

Abstract

DNA double strand breaks are efficiently repaired by homologous recombination. One of the last steps of this process is resolution of Holliday junctions that are formed at the sites of genetic exchange between homologous DNA. Although various resolvases with Holliday junctions processing activity have been identified in bacteriophages, bacteria and archaebacteria, eukaryotic resolvases have been elusive. Recent biochemical evidence has revealed that RAD51C and XRCC3, members of the RAD51-like protein family, are involved in Holliday junction resolution in mammalian cells. However, purified recombinant RAD51C and XRCC3 proteins have not shown any Holliday junction resolution activity. In addition, these proteins did not reveal the presence of a nuclease domain, which raises doubts about their ability to function as a resolvase. Furthermore, oocytes from infertile Rad51C mutant mice exhibit precocious separation of sister chromatids at metaphase II, a phenotype that reflects a defect in sister chromatid cohesion, not a lack of Holliday junction resolution. Here we discuss a model to explain how a Holliday junction resolution defect can lead to sister chromatid separation in mouse oocytes. We also describe other recent in vitro and in vivo evidence supporting a late role for RAD51C in homologous recombination in mammalian cells, which is likely to be resolution of the Holliday junction.

Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Sharan Shyam K
Mouse Cancer Genetics Program, Center for Cancer Research, National Cancer Institute, Frederick, Maryland 21702, USA. ssharan@ncifcrf.gov
Kuznetsov Sergey G
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Article Info
Journal
Cell division
Abbr.
Cell Div
ISSN
1747-1028
Published
2007-06-04
Epub
2007-00-04
Pages
15
Language
English
Region
England
NLM ID
101251560
PMCID
PMC1892012
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