Mechanisms of Recombination between Diverged Sequences in Wild-Type and BLM-Deficient Mouse and Human Cells
- 1 April 2010
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 30 (8) , 1887-1897
- https://doi.org/10.1128/mcb.01553-09
Abstract
Double-strand breaks (DSBs) are particularly deleterious DNA lesions for which cells have developed multiple mechanisms of repair. One major mechanism of DSB repair in mammalian cells is homologous recombination (HR), whereby a homologous donor sequence is used as a template for repair. For this reason, HR repair of DSBs is also being exploited for gene modification in possible therapeutic approaches. HR is sensitive to sequence divergence, such that the cell has developed ways to suppress recombination between diverged (“homeologous”) sequences. In this report, we have examined several aspects of HR between homeologous sequences in mouse and human cells. We found that gene conversion tracts are similar for mouse and human cells and are generally ≤100 bp, even in Msh2−/− cells which fail to suppress homeologous recombination. Gene conversion tracts are mostly unidirectional, with no observed mutations. Additionally, no alterations were observed in the donor sequences. While both mouse and human cells suppress homeologous recombination, the suppression is substantially less in the transformed human cells, despite similarities in the gene conversion tracts. BLM-deficient mouse and human cells suppress homeologous recombination to a similar extent as wild-type cells, unlike Sgs1-deficient Saccharomyces cerevisiae.Keywords
This publication has 64 references indexed in Scilit:
- Bloom Syndrome Helicase Stimulates RAD51 DNA Strand Exchange Activity through a Novel MechanismPublished by Elsevier ,2009
- Drosophila bloom helicase maintains genome integrity by inhibiting recombination between divergent DNA sequencesNucleic Acids Research, 2008
- DNA helicases Sgs1 and BLM promote DNA double-strand break resectionGenes & Development, 2008
- Sequence Divergence Impedes Crossover More Than Noncrossover Events During Mitotic Gap Repair in YeastGenetics, 2008
- Accurate Homologous Recombination Is a Prominent Double-Strand Break Repair Pathway in Mammalian Chromosomes and Is Modulated by Mismatch Repair Protein Msh2Molecular and Cellular Biology, 2007
- BLM is required for faithful chromosome segregation and its localization defines a class of ultrafine anaphase bridgesThe EMBO Journal, 2007
- Drosophila ATR in Double-Strand Break RepairGenetics, 2007
- Distinct Roles for the Saccharomyces cerevisiae Mismatch Repair Proteins in Heteroduplex Rejection, Mismatch Repair and Nonhomologous Tail RemovalGenetics, 2005
- The Bloom's Syndrome Helicase Interacts Directly with the Human DNA Mismatch Repair Protein hMSH6Biological Chemistry, 2003
- The Bloom's Syndrome Protein (BLM) Interacts with MLH1 but Is Not Required for DNA Mismatch RepairJournal of Biological Chemistry, 2001