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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Isolation and Characterization of Suppressors of Two Escherichia coli dnaG Mutations, dnaG2903 and parB
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Isolation and Characterization of Suppressors of Two Escherichia coli dnaG Mutations, dnaG2903 and parB

机译:两种大肠杆菌dnaG突变dnaG2903和parB的抑制子的分离和鉴定

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摘要

The dnaG gene of Escherichia coli encodes the primase protein, which synthesizes a short pRNA that is essential for the initiation of both leading and lagging strand DNA synthesis. Two temperature-sensitive mutations in the 3′ end of the dnaG gene, dnaG2903 and parB , cause a defect in chromosome partitioning at the nonpermissive temperature 42°. We have characterized 24 cold-sensitive suppressor mutations of these two dnaG alleles. By genetic mapping and complementation, five different classes of suppressors have been assigned: sdgC, sdgD, sdgE, sdgG and sdgH . The genes responsible for suppression in four of the five classes have been determined. Four of the sdgC suppressor alleles are complemented by the dnaE gene, which encodes the enzymatic subunit of DNA polymerase III. The sdgE class are mutations in era , an essential GTPase of unknown function. The sdgG suppressor is likely a mutation in one of three genes: ubiC, ubiA or yjbI . The sdgH class affects rpsF , which encodes the ribosomal protein S6. Possible mechanisms of suppression by these different classes are discussed.
机译:大肠埃希氏菌的dnaG基因编码启动酶蛋白,该酶合成短的pRNA,这对于启动前导链和滞后链DNA合成都是必不可少的。 dnaG基因3'端的两个对温度敏感的突变dnaG2903和parB导致在非容许温度42°下染色体分配缺陷。我们已经表征了这两个dnaG等位基因的24个冷敏感抑制基因突变。通过遗传定位和互补,已分配了五种不同的抑制子:sdgC,sdgD,sdgE,sdgG和sdgH。已经确定了在五类中的四类中负责抑制的基因。四个sdgC抑制等位基因与dnaE基因互补,后者编码DNA聚合酶III的酶亚基。 sdgE类是时代的突变,是功能未知的必需GTPase。 sdgG抑制剂可能是ubiC,ubiA或yjbI这三个基因之一的突变。 sdgH类影响rpsF,后者编码核糖体蛋白S6。讨论了这些不同类别抑制的可能机制。

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