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大肠杆菌错配修复系统中具有温度敏感性缺陷的突变体:对体内产生的错配的敏感性。

Mutants with temperature-sensitive defects in the Escherichia coli mismatch repair system: sensitivity to mispairs generated in vivo.

作者信息

Hong Esther S, Yeung Annie, Funchain Pauline, Slupska Malgorzata M, Miller Jeffrey H

机构信息

Department of Microbiology, Immunology and Molecular Genetics, University of California, Los Angeles, CA 90095, USA.

出版信息

J Bacteriol. 2005 Feb;187(3):840-6. doi: 10.1128/JB.187.3.840-846.2005.

Abstract

We have used direct selections to generate large numbers of mutants of Escherichia coli defective in the mismatch repair system and have screened these to identify mutants with temperature-sensitive defects. We detected and sequenced mutations that give rise to temperature-sensitive MutS, MutL, and MutH proteins. One mutation, mutS60, results in almost normal levels of spontaneous mutations at 37 degrees C but above this temperature gives rise to higher and higher levels of mutations, reaching the level of null mutations in mutS at 43 degrees C. However, at 37 degrees C the MutS60 protein can be much more easily titrated by mispairs than the wild-type MutS, as evidenced by the impaired ability to block homologous recombination in interspecies crosses and the increased levels of mutations from weak mutator alleles of mutD (dnaQ), mutC, and ndk. Strains with mutS60 can detect mispairs generated during replication that lead to mutation with much greater sensitivity than wild-type strains. The findings with ndk, lacking nucleotide diphosphate kinase, are striking. An ndk mutS60 strain yields four to five times the level of mutations seen in a full knockout of mutS. These results pose the question of whether similar altered Msh2 proteins result from presumed polymorphisms detected in tumor lines. The role of allele interactions in human disease susceptibility is discussed.

摘要

我们利用直接筛选法产生了大量错配修复系统缺陷的大肠杆菌突变体,并对这些突变体进行筛选以鉴定具有温度敏感缺陷的突变体。我们检测并测序了导致温度敏感型MutS、MutL和MutH蛋白的突变。一个突变体mutS60,在37℃时自发突变水平几乎正常,但高于此温度时,突变水平会越来越高,在43℃时达到mutS基因敲除的突变水平。然而,在37℃时,MutS60蛋白比野生型MutS更容易被错配滴定,这在种间杂交中阻断同源重组的能力受损以及mutD(dnaQ)、mutC和ndk弱突变等位基因导致的突变水平增加中得到了证明。带有mutS60的菌株能够比野生型菌株更灵敏地检测到复制过程中产生的导致突变的错配。缺乏核苷二磷酸激酶的ndk的研究结果令人惊讶。一个ndk mutS60菌株产生的突变水平是mutS完全敲除菌株的四到五倍。这些结果提出了一个问题,即肿瘤细胞系中检测到的假定多态性是否会导致类似的Msh2蛋白改变。本文还讨论了等位基因相互作用在人类疾病易感性中的作用。

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