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人类SNM1A可抑制酵母pso2突变体的DNA修复缺陷。

Human SNM1A suppresses the DNA repair defects of yeast pso2 mutants.

作者信息

Hazrati Ali, Ramis-Castelltort Marc, Sarkar Sovan, Barber Louise J, Schofield Christopher J, Hartley John A, McHugh Peter J

机构信息

Cancer Research UK Drug-DNA Interactions Research Group, Department of Oncology, UCL Medical School, London, UK.

出版信息

DNA Repair (Amst). 2008 Feb 1;7(2):230-8. doi: 10.1016/j.dnarep.2007.09.013. Epub 2007 Nov 19.

Abstract

Pso2/Snm1 plays a key role in the repair of DNA interstrand cross-links in yeast. Human cells possess three orthologues of Pso2; SNM1A, SNM1B/Apollo and SNM1C/Artemis. Studies using mammalian cells disrupted or depleted for these genes have yielded equivocal evidence that any of these is a true functional homologues of the yeast gene. Here we show that ectopic expression of only one of the three human orthologues, hSNM1A, effectively suppresses the sensitivity of yeast pso2 (snm1) disruptants to cross-linking agents. Two other phenotypes of the pso2 mutants are also partially rescued by ectopic expression of hSNM1A, namely the double-strand repair break defect observed during cross-link processing in pso2 cells, as well as the spontaneous intrachromatid recombination defect of pso2 msh2 double mutants. Finally, we show that recombinant hSNM1A is a 5'-exonuclease, as also recently reported for the yeast Pso2 protein. Together our data suggest that hSnm1A is a functional homologue of yeast Pso2/Snm1.

摘要

Pso2/Snm1在酵母DNA链间交联修复中起关键作用。人类细胞拥有Pso2的三个直系同源基因;SNM1A、SNM1B/Apollo和SNM1C/Artemis。对这些基因进行破坏或缺失的哺乳动物细胞研究产生了模棱两可的证据,表明这些基因中的任何一个都是酵母基因的真正功能同源物。在这里,我们表明,三种人类直系同源基因中只有一种,即hSNM1A的异位表达,有效地抑制了酵母pso2(snm1)破坏株对交联剂的敏感性。pso2突变体的另外两种表型也通过hSNM1A的异位表达得到部分挽救,即在pso2细胞交联处理过程中观察到的双链修复断裂缺陷,以及pso2 msh2双突变体的自发染色单体内重组缺陷。最后,我们表明重组hSNM1A是一种5'-核酸外切酶,最近对酵母Pso2蛋白也有同样的报道。我们的数据共同表明,hSnm1A是酵母Pso2/Snm1的功能同源物。

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