首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >DNA polymerase V-dependent mutator activity in an SOS-induced Escherichia coli strain with a temperature-sensitive DNA polymerase III.
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DNA polymerase V-dependent mutator activity in an SOS-induced Escherichia coli strain with a temperature-sensitive DNA polymerase III.

机译:用温度敏感的DNA聚合酶III在SOS诱导的大肠杆菌菌株中依赖DNA聚合酶V的突变体活性。

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摘要

The temperature-sensitive DNA polymerase III (Pol III) encoded by the dnaE486 allele confers a spontaneous mutator activity in SOS-induced bacteria that is largely dependent upon DNA polymerase V (Pol V), encoded by umuD, C. This mutator activity is influenced by the defective proof-reading sub-unit of Pol III encoded by the dnaQ905 (mutD5) allele arguing that Pol V is most likely fixing mutations arising from mismatched primer termini produced by Pol III(486). The size of the dnaQ effect is, however, modest leaving open the possibility that Pol V may be responsible for some of the mutator effect by engaging in bursts of processive activity.
机译:dnaE486等位基因编码的温度敏感型DNA聚合酶III(Pol III)在SOS诱导的细菌中具有自发突变体活性,该活性主要取决于umuD,C编码的DNA聚合酶V(Pol V)。这种突变体活性受到影响dnaQ905(mutD5)等位基因编码的Pol III的有缺陷的校对亚基所致,认为Pol V最有可能是固定的突变,这些突变是由Pol III产生的引物末端不匹配引起的(486)。但是,dnaQ效应的大小适中,这使得Pol V可能通过参与持续性活动爆发而对某些突变效应负责。

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