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携带mutA(一种突变的glyV tRNA基因)的大肠杆菌细胞表达一种依赖recA的易出错DNA复制活性。

Escherichia coli cells bearing mutA, a mutant glyV tRNA gene, express a recA-dependent error-prone DNA replication activity.

作者信息

Al Mamun A A, Rahman M S, Humayun M Z

机构信息

Department of Microbiology and Molecular Genetics, University of Medicine and Dentistry - New Jersey Medical School, 185 South Orange Avenue, Newark, NJ 07103, USA.

出版信息

Mol Microbiol. 1999 Aug;33(4):732-40. doi: 10.1046/j.1365-2958.1999.01520.x.

DOI:10.1046/j.1365-2958.1999.01520.x
PMID:10447883
Abstract

A base substitution mutation (mutA) in the Escherichia coli glyV tRNA gene potentiates asp --> gly mistranslation and confers a strong mutator phenotype that is SOS independent, but requires recA, recB and recC genes. Here, we demonstrate that mutA cells express an error-prone DNA polymerase by using an in vitro experimental system based on the conversion of phage M13 single-stranded viral DNA bearing a model mutagenic lesion to the double-stranded replicative form. Amplification of the newly synthesized strand followed by multiplex DNA sequence analysis revealed that mutation fixation at 3, N4-ethenocytosine (varepsilonC) was approximately 3% when the DNA was replicated by normal cell extracts, approximately 48% when replicated by mutA cell extracts and approximately 3% when replicated by mutA recA double mutant cell extracts, in complete agreement with previous in vivo results. Mutagenesis at undamaged DNA sites was significantly elevated by mutA cell-free extracts in the M13 lacZ(alpha) forward mutagenesis system. Neither polA (DNA polymerase I) nor polB (DNA polymerase II) genes are required for the mutA phenotype, suggesting that the phenotype is mediated through a modification of DNA polymerase III or the activation of a previously unidentified DNA polymerase. These findings define the major features of a novel mutagenic pathway and imply the existence of previously unrecognized links between translation, recombination and replication.

摘要

大肠杆菌glyV tRNA基因中的一个碱基替换突变(mutA)增强了天冬氨酸向甘氨酸的错义翻译,并赋予了一种强烈的诱变表型,该表型不依赖SOS,但需要recA、recB和recC基因。在此,我们通过使用一种体外实验系统证明,mutA细胞表达一种易出错的DNA聚合酶,该系统基于将带有模型诱变损伤的噬菌体M13单链病毒DNA转化为双链复制形式。对新合成链进行扩增,随后进行多重DNA序列分析,结果显示,当DNA由正常细胞提取物复制时,在3,N4-乙烯基胞嘧啶(εC)处的突变固定率约为3%;当由mutA细胞提取物复制时,约为48%;当由mutA recA双突变细胞提取物复制时,约为3%,这与之前的体内结果完全一致。在M13 lacZ(α)正向诱变系统中,mutA无细胞提取物显著提高了未受损DNA位点的诱变率。mutA表型既不需要polA(DNA聚合酶I)基因也不需要polB(DNA聚合酶II)基因,这表明该表型是通过DNA聚合酶III的修饰或一种先前未鉴定的DNA聚合酶的激活来介导的。这些发现定义了一种新型诱变途径的主要特征,并暗示了翻译、重组和复制之间存在以前未被认识的联系。

相似文献

1
Escherichia coli cells bearing mutA, a mutant glyV tRNA gene, express a recA-dependent error-prone DNA replication activity.携带mutA(一种突变的glyV tRNA基因)的大肠杆菌细胞表达一种依赖recA的易出错DNA复制活性。
Mol Microbiol. 1999 Aug;33(4):732-40. doi: 10.1046/j.1365-2958.1999.01520.x.
2
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The mutA mistranslator tRNA-induced mutator phenotype requires recA and recB genes, but not the derepression of lexA-regulated functions.mutA错译tRNA诱导的突变体表型需要recA和recB基因,但不需要lexA调控功能的去阻遏。
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The Escherichia coli UVM response is accompanied by an SOS-independent error-prone DNA replication activity demonstrable in vitro.大肠杆菌UVM反应伴随着一种体外可证明的不依赖SOS的易错DNA复制活性。
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Functional recA, lexA, umuD, umuC, polA, and polB genes are not required for the Escherichia coli UVM response.大肠杆菌UVM反应不需要功能性recA、lexA、umuD、umuC、polA和polB基因。
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Hypermutagenesis in mutA cells is mediated by mistranslational corruption of polymerase, and is accompanied by replication fork collapse.mutA细胞中的超突变是由聚合酶的错译错误介导的,并伴有复制叉崩溃。
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Requirement for homologous recombination functions for expression of the mutA mistranslator tRNA-induced mutator phenotype in Escherichia coli.在大肠杆菌中,mutA错译tRNA诱导的突变体表型表达对同源重组功能的需求。
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Mistranslation induced by streptomycin provokes a RecABC/RuvABC-dependent mutator phenotype in Escherichia coli cells.链霉素诱导的错译在大肠杆菌细胞中引发了一种依赖RecABC/RuvABC的突变体表型。
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DNA polymerase III from Escherichia coli cells expressing mutA mistranslator tRNA is error-prone.来自表达mutA错译tRNA的大肠杆菌细胞的DNA聚合酶III容易出错。
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UV irradiation of Escherichia coli modulates mutagenesis at a site-specific ethenocytosine residue on M13 DNA. Evidence for an inducible recA-independent effect.紫外线照射大肠杆菌可调节M13 DNA上特定位点的乙烯基胞嘧啶残基处的诱变作用。关于一种可诱导的不依赖recA效应的证据。
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