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PMID: 15126333 已发表 · ppublish 英语

A hot spot for RAD51C interactions revealed by a peptide that sensitizes cells to cisplatin.

Cancer research ·第 64 卷 ·第 9 期 ·2004-06-23

Connell Philip P, Siddiqui Nazli, Hoffman Sara, Kuang Audrey, Khatipov Emir-Assan, Weichselbaum Ralph R, Bishop Douglas K

摘要

DNA repair via the homologous recombination pathway requires the recombinase RAD51 and, in vertabrates, five RAD51 paralogs. The paralogs form two complexes in solution, a XRCC3/RAD51C heterodimer and a RAD51B/RAD51C/RAD51D/XRCC2 heterotetramer. Mutation of any one of the five paralog genes prevents subnuclear assembly of recombinase at damaged sites and renders cells 30-100 fold sensitive to DNA cross-linking drugs. Phage display was used to isolate peptides that bind the paralog XRCC3. Sequences of binding peptides showed similarity to residues 14-25 of RAD51C protein. Point mutations in this region of RAD51C altered its interaction with both XRCC3 and RAD51B in a two-hybrid system. A synthetic peptide composed of residues 14-25 of RAD51C fused to a membrane transduction sequence [protein transduction domain 4 (PTD4)], inhibited subnuclear assembly of RAD51 recombinase, and sensitized Chinese hamster ovary cells to cisplatin when added to growth medium. These results suggest that residues 14-25 of RAD51C contribute to a "hot spot" used in both XRCC3-RAD51C and RAD51B-RAD51C interactions. Peptide-based inhibition of homologous recombination may prove useful for improving the efficacy of existing cancer therapies.

文献信息
期刊
Cancer research
期刊简称
Cancer Res
发表日期
2004-06-23
收录日期
2004-05-05
更新日期
2013-11-21
语言
英语
国家/地区
United States
NLM ID
2984705R
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