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5-甲基胞嘧啶热点处的自发突变可通过极短补丁(VSP)错配修复来防止。

Spontaneous mutation at a 5-methylcytosine hotspot is prevented by very short patch (VSP) mismatch repair.

作者信息

Lieb M

机构信息

Department of Microbiology, University of Southern California School of Medicine, Los Angeles 90033.

出版信息

Genetics. 1991 May;128(1):23-7. doi: 10.1093/genetics/128.1.23.

Abstract

In many strains of Escherichia coli, the product of gene dcm methylates the internal cytosines in the sequence 5'CC(A or T)GG. Spontaneous deamination of 5-methylcytosine produces thymine which, if not corrected, can result in a transition mutation. 5-Methylcytosines in the lacI gene are hotspots for spontaneous C to T mutations. dcm is linked to vsr, a gene required for very short patch (VSP) repair. VSP repair corrects T.G mispairs in the following contexts:CTAAGGGGTCC, CTTGGGGACC, TAGGGTCC and CTAGGGTC. I have investigated the relationships between cytosine methylation, mutation, and VSP repair. Spontaneous mutations in the repressor (cI) gene of lambda prophage were isolated in wild-type and mutant lysogens. A hotspot for spontaneous mutation that corresponds with a 5-methylcytosine was observed in wild-type lysogens but was not present in bacteria lacking both methylase and VSP repair activity. Introduction of a plasmid containing dcm+ and vsr+ restored the mutation hotspot. If the added plasmid carried only dcm+, the frequency of spontaneous mutations at the 5-methylcytosine was over 10-fold higher than in Dcm+Vsr+ lysogens. The addition of vsr on a plasmid to a wild-type lysogen resulted in a 4-fold reduction in mutation at the hotspot. These findings support the previously untested hypothesis that VSP repair prevents mutations resulting from deamination of 5-methylcytosine.

摘要

在许多大肠杆菌菌株中,基因dcm的产物会使序列5'CC(A或T)GG中的内部胞嘧啶发生甲基化。5-甲基胞嘧啶的自发脱氨基会产生胸腺嘧啶,如果不加以校正,可能会导致转换突变。lacI基因中的5-甲基胞嘧啶是自发C到T突变的热点。dcm与vsr相连,vsr是极短补丁(VSP)修复所需的基因。VSP修复在以下情况下校正T.G错配:CTAAGGGGTCC、CTTGGGGACC、TAGGGTCC和CTAGGGTC。我研究了胞嘧啶甲基化、突变和VSP修复之间的关系。在野生型和突变型溶原菌中分离出λ原噬菌体阻遏物(cI)基因的自发突变。在野生型溶原菌中观察到一个与5-甲基胞嘧啶相对应的自发突变热点,但在缺乏甲基化酶和VSP修复活性的细菌中不存在。引入含有dcm+和vsr+的质粒可恢复突变热点。如果添加的质粒仅携带dcm+,5-甲基胞嘧啶处的自发突变频率比Dcm+Vsr+溶原菌高出10倍以上。将携带vsr的质粒添加到野生型溶原菌中,热点处的突变减少了4倍。这些发现支持了之前未经检验的假设,即VSP修复可防止5-甲基胞嘧啶脱氨基导致的突变。

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