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SMC1协调DNA双链断裂修复途径。

SMC1 coordinates DNA double-strand break repair pathways.

作者信息

Schär Primo, Fäsi Margaret, Jessberger Rolf

机构信息

Institute of Biochemistry and Genetics, DKBW, University of Basel, CH-4058 Basel, Switzerland.

出版信息

Nucleic Acids Res. 2004 Jul 27;32(13):3921-9. doi: 10.1093/nar/gkh716. Print 2004.

Abstract

The SMC1/SMC3 heterodimer acts in sister chromatid cohesion, and recent data indicate a function in DNA double-strand break repair (DSBR). Since this role of SMC proteins has remained largely elusive, we explored interactions between SMC1 and the homologous recombination (HR) or non-homologous end-joining (NHEJ) pathways for DSBR in Saccharomyces cerevisiae. Analysis of conditional single- and double mutants of smc1-2 with rad52Delta, rad54Delta, rad50Delta or dnl4Delta illustrates a significant contribution of SMC1 to the overall capacity of cells to repair DSBs. smc1 but not smc2 mutants show increased hypersensitivity of HR mutants to ionizing irradiation and to the DNA crosslinking agent cis-platin. Haploid, but not diploid smc1-2 mutants were severely affected in repairing multiple genomic DNA breaks, suggesting a selective role of SMC1 in sister chromatid recombination. smc1-2 mutants were also 15-fold less efficient and highly error-prone in plasmid end-joining through the NHEJ pathway. Strikingly, inactivation of RAD52 or RAD54 fully rescued efficiency and accuracy of NHEJ in the smc1 background. Therefore, we propose coordination of HR and NHEJ processes by Smc1p through interaction with the RAD52 pathway.

摘要

SMC1/SMC3异二聚体在姐妹染色单体黏附中发挥作用,最近的数据表明其在DNA双链断裂修复(DSBR)中也有功能。由于SMC蛋白的这一作用在很大程度上仍不清楚,我们在酿酒酵母中探索了SMC1与DSBR的同源重组(HR)或非同源末端连接(NHEJ)途径之间的相互作用。对smc1-2与rad52Δ、rad54Δ、rad50Δ或dnl4Δ的条件性单突变体和双突变体的分析表明,SMC1对细胞修复双链断裂的总体能力有重要贡献。smc1突变体而非smc2突变体显示HR突变体对电离辐射和DNA交联剂顺铂的超敏性增加。单倍体而非二倍体的smc1-2突变体在修复多个基因组DNA断裂时受到严重影响,这表明SMC1在姐妹染色单体重组中具有选择性作用。smc1-2突变体通过NHEJ途径进行质粒末端连接的效率也低15倍,且极易出错。引人注目的是,RAD52或RAD54的失活完全挽救了smc1背景下NHEJ的效率和准确性。因此,我们提出Smc1p通过与RAD52途径相互作用来协调HR和NHEJ过程。

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