首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Sequence analysis and phenotypes of five temperature sensitive mutator alleles of dnaE, encoding modified alpha-catalytic subunits of Escherichia coli DNA polymerase III holoenzyme.
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Sequence analysis and phenotypes of five temperature sensitive mutator alleles of dnaE, encoding modified alpha-catalytic subunits of Escherichia coli DNA polymerase III holoenzyme.

机译:dnaE的5个温度敏感突变体等位基因的序列分析和表型,它们编码大肠杆菌DNA聚合酶III全酶的修饰的α-催化亚基。

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摘要

In the 1970s, several thermosensitive alleles of dnaE (encoding the alpha-catalytic subunit of pol III) were isolated. Genetic characterization of these dnaE mutants revealed that some are mutator alleles at permissive temperature. We have determined the nucleotide changes of five such temperature sensitive mutator alleles (dnaE9, dnaE74, dnaE486, dnaE511, and dnaE1026) and find that most are single missense mutations. The exception is dnaE1026 which is a compound allele consisting of multiple missense mutations. When the previously characterized mutator alleles were moved into a lexA51(Def) recA730 strain, dnaE486, dnaE1026 and dnaE74 conferred a modest approximately two-six-fold increase in spontaneous mutagenesis when grown at the permissive temperature of 28 degrees C, while dnaE9 and dnaE511 actually resulted in a slight decrease in spontaneous mutagenesis. In isogenic DeltaumuDC derivatives, the level of spontaneous mutagenesis dropped significantly, although in each case, the overall mutator effect conferred by the dnaE allele was relatively larger, with all five dnaE alleles conferring an increased spontaneous mutation rate approximately 5-22-fold over the isogenic dnaE+ DeltaumuDC strain. Interestingly, the temperature sensitivity conferred by each allele varied considerably in the lexA51(Def) recA730 background and in many cases, this phenotype was dependent upon the presence of functional pol V (UmuD'2C). Our data suggest that pol V can compete effectively with the impaired alpha-subunit for a 3' primer terminus and as a result, a large proportion of the phenotypic effects observed with strains carrying missense temperature sensitive mutations in dnaE can, in fact, be attributed to the actions of pol V rather than pol III.
机译:在1970年代,分离了dnaE的几个热敏等位基因(编码pol III的α-催化亚基)。这些dnaE突变体的遗传特征表明,某些在允许温度下是突变体等位基因。我们已经确定了五个这样的温度敏感突变体等位基因(dnaE9,dnaE74,dnaE486,dnaE511和dnaE1026)的核苷酸变化,并且发现大多数是单个错义突变。 dnaE1026是一个例外,它是由多个错义突变组成的复合等位基因。当先前表征的突变等位基因移入lexA51(Def)recA730菌株时,dnaE486,dnaE1026和dnaE74在28℃的允许温度下生长时,自发诱变的适度增加将近六倍,而dnaE9和dnaE511实际上导致自发诱变略有减少。在同基因的DeltaumuDC衍生物中,自发诱变的水平显着下降,尽管在每种情况下,dnaE等位基因赋予的总体突变效应都相对较大,所有五个dnaE等位基因赋予的自发突变率比dnaE等位基因提高了约5-22倍。等基因dnaE + DeltaumuDC菌株。有趣的是,在lexA51(Def)recA730背景中,每个等位基因赋予的温度敏感性相差很大,并且在许多情况下,此表型取决于功能pol V(UmuD'2C)的存在。我们的数据表明,pol V可以与受损的α亚基有效竞争3'引物末端,结果,在dnaE中携带错义温度敏感突变的菌株观察到的大部分表型效应可归因于而不是波尔三世。

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