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在大肠杆菌K-12中,priA、lexA和dnaC基因的突变对priA2::kan表型的差异抑制作用

Differential suppression of priA2::kan phenotypes in Escherichia coli K-12 by mutations in priA, lexA, and dnaC.

作者信息

Sandler S J, Samra H S, Clark A J

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720-3202, USA.

出版信息

Genetics. 1996 May;143(1):5-13. doi: 10.1093/genetics/143.1.5.

Abstract

First identified as an essential component of the phi X174 in vitro DNA replication system, PriA has ATPase, helicase, translocase, and primosome-assembly activities. priA1::kan strains of Escherichia coli are sensitive to UV irradiation, deficient in homologous recombination following transduction, and filamentous. priA2::kan strains have eightfold higher levels of uninduced SOS expression than wild type. We show that (1) priA1::kan strains have eightfold higher levels of uninduced SOS expression, (2) priA2::kan strains are UVS and Rec-, (3) lexA3 suppresses the high basal levels of SOS expression of a priA2::kan strain, and (4) plasmid-encoded priA300 (K230R), a mutant allele retaining only the primosome-assembly activity of priA+, restores both UVR and Rec+ phenotypes to a priA2::kan strain. Finally, we have isolated 17 independent UVR Rec+ revertants of priA2::kan strains that carry extragenic suppressors. All 17 map in the C-terminal half of the dnaC gene. DnaC loads the DnaB helicase onto DNA as a prelude for primosome assembly and DNA replication. We conclude that priA's primosome-assembly activity is essential for DNA repair and recombination and that the dnaC suppressor mutations allow these processes to occur in the absence of priA.

摘要

PriA最初被鉴定为φX174体外DNA复制系统的一个必需组分,具有ATP酶、解旋酶、转位酶和引发体组装活性。大肠杆菌的priA1::kan菌株对紫外线照射敏感,转导后同源重组缺陷,且呈丝状。priA2::kan菌株未诱导的SOS表达水平比野生型高八倍。我们发现:(1)priA1::kan菌株未诱导的SOS表达水平高八倍;(2)priA2::kan菌株对紫外线敏感且Rec-;(3)lexA3抑制priA2::kan菌株SOS表达的高基础水平;(4)质粒编码的priA300(K230R),一个仅保留priA+引发体组装活性的突变等位基因,将UVR和Rec+表型恢复到priA2::kan菌株。最后,我们分离出17个携带基因外抑制子的priA2::kan菌株的独立UVR Rec+回复突变体。所有17个都定位于dnaC基因的C端一半区域。DnaC将DnaB解旋酶加载到DNA上,作为引发体组装和DNA复制的前奏。我们得出结论,priA的引发体组装活性对DNA修复和重组至关重要,并且dnaC抑制突变允许这些过程在没有priA的情况下发生。

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