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大肠杆菌RecA蛋白酶和重组酶活性在自发及紫外线诱导的诱变和韦格勒修复中的作用。

Roles of RecA protease and recombinase activities of Escherichia coli in spontaneous and UV-induced mutagenesis and in Weigle repair.

作者信息

Tessman E S, Tessman I, Peterson P K, Forestal J D

出版信息

J Bacteriol. 1986 Dec;168(3):1159-64. doi: 10.1128/jb.168.3.1159-1164.1986.

Abstract

The RecA protein has a second, direct role in the mutagenesis of Escherichia coli and bacteriophage lambda in addition to its first, indirect role of inducing the SOS system by enhancing the proteolytic cleavage of the LexA repressor protein. The need for RecA protease and recombinase functions in the direct role was examined in cells containing split-phenotype RecA mutations, in the absence of LexA protein. Spontaneous mutation of E. coli (his----his+) required both the protease and recombinase activities. The mutation frequency increased with increasing RecA protease strength. In contrast, UV-induced mutation of E. coli required only the RecA protease activity. Weigle repair and mutation of UV-irradiated phage S13 required only RecA protease activity, and even weak activity was highly effective; RecA recombinase activity was not required. RecA+ protein inhibited RecA (Prtc [protease constitutive] Rec+) protein in effecting spontaneous mutation of E. coli. We discuss the nature of the direct role of the RecA protein in spontaneous mutation and in repair and mutagenesis of UV-damaged DNA and also the implications of our results for the theory that SOS-mutable cryptic lesions might be responsible for the enhanced spontaneous mutation in Prtc Rec+ strains.

摘要

RecA蛋白除了通过增强LexA阻遏蛋白的蛋白水解切割来诱导SOS系统这一间接作用外,在大肠杆菌和噬菌体λ的诱变中还有第二个直接作用。在不含LexA蛋白的情况下,利用含有分裂表型RecA突变的细胞研究了RecA蛋白酶和重组酶功能在直接作用中的必要性。大肠杆菌的自发突变(his→his+)需要蛋白酶和重组酶活性。突变频率随RecA蛋白酶强度的增加而增加。相比之下,紫外线诱导的大肠杆菌突变仅需要RecA蛋白酶活性。紫外线照射的噬菌体S13的韦格尔修复和突变仅需要RecA蛋白酶活性,即使是较弱的活性也非常有效;不需要RecA重组酶活性。RecA+蛋白在影响大肠杆菌自发突变时抑制RecA(Prtc[蛋白酶组成型]Rec+)蛋白。我们讨论了RecA蛋白在自发突变以及紫外线损伤DNA的修复和诱变中的直接作用的性质,以及我们的结果对SOS可变隐蔽损伤可能是Prtc Rec+菌株自发突变增强原因这一理论的影响。

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