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Novel mechanism for UV sensitivity and apparent UV nonmutability of recA432 mutants: persistent LexA cleavage following SOS induction.

机译:recA432突变体对紫外线的敏感性和明显的紫外线非突变性的新机制:SOS诱导后持续的LexA裂解。

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摘要

The recA432 mutant allele was isolated (T. Kato and Y. Shinoura, Mol. Gen. Genet. 156:121-131, 1977) by virtue of its defect in cellular mutagenesis (Mut-) and its hypersensitivity to damage by UV irradiation (UVs), which were phenotypes expected for a recA mutant. However, we found that in a different genetic background (lexA51 sulA211 uvrB+), recA432 mutants expressed certain mutant phenotypes but not the Mut- and UVs phenotypes (D.G. Ennis, N. Ossanna, and D.W. Mount, J. Bacteriol. 171:2533-2541, 1989). We present several lines of evidence that these differences resulted from the sulA genotype of the cell and that the apparent UVs and Mut- phenotypes of the sulA+ derivatives resulted from lethal filamentation of induced cells because of persistent derepression of sulA. First, transduction of sulA(Def) mutations into the recA432 strains restored cellular mutagenesis and resistance to UV. Second, recA432 sulA+ strains underwent filamentous death following SOS-inducing treatments. Third, cleavage of LexA repressor in a recA432 strain continued at a rapid rate long after UV induction, at a time when cleavage of the repressor in the recA+ parental strain had substantially declined. Fourth, we confirmed that a single mutation (recA432) conferring both the UVs and Mut- phenotypes mapped to the recA gene. These findings indicate that the RecA432 mutant protein is defective in making the transition back to the deactivated state following SOS induction; thus, the SOS-induced state of recA432 mutants is prolonged and can account for an excess of SulA protein, leading to filamentation. These results are discussed in the context of molecular models for RecA activation for LexA and UmuD cleavage and their roles in the control of mutagenesis and cell division in the SOS response.
机译:由于recA432突变体的细胞诱变缺陷(Mut-)和对紫外线照射造成的伤害超敏反应(T. Kato and Y. Shinoura,Mol.Gen.Genet.156:121-131,1977)被分离出来。 UVs),这是recA突变体的预期表型。但是,我们发现,在不同的遗传背景(lexA51 sulA211 uvrB +)中,recA432突变体表达了某些突变表型,但没有表达Mut-和UVs表型(DG Ennis,N。Ossanna和DW Mount,J。Bacteriol。171:2533- 2541,1989)。我们提供了几条证据,表明这些差异是由细胞的sulA基因型引起的,而sulA +衍生物的表观UV和多表型是由于sulA的持续抑制导致诱导细胞的致死丝化所致。首先,将sulA(Def)突变导入recA432菌株可恢复细胞诱变和对紫外线的抵抗力。第二,recA432 sulA +菌株在诱导SOS后经历了丝状死亡。第三,recA432菌株中LexA阻遏物的切割在紫外线诱导后很长一段时间内以快速速率继续进行,而此时recA +亲本菌株中的阻遏物的切割已大大减少。第四,我们确认了一个单一突变(recA432)赋予定位到recA基因的UV和多表型。这些发现表明,在SOS诱导后,RecA432突变蛋白在转变回到失活状态方面是有缺陷的。因此,SOS诱导的recA432突变体状态得以延长,并可以解释SulA蛋白的过量,从而导致丝状化。在针对LexA和UmuD裂解的RecA激活分子模型及其在SOS响应中诱变和细胞分裂的控制中的作用中讨论了这些结果。

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