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大肠杆菌SOS组成型突变体的分离

Isolation of SOS constitutive mutants of Escherichia coli.

作者信息

O'Reilly Erin K, Kreuzer Kenneth N

机构信息

Department of Biochemistry, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

J Bacteriol. 2004 Nov;186(21):7149-60. doi: 10.1128/JB.186.21.7149-7160.2004.

Abstract

The bacterial SOS regulon is strongly induced in response to DNA damage from exogenous agents such as UV radiation and nalidixic acid. However, certain mutants with defects in DNA replication, recombination, or repair exhibit a partially constitutive SOS response. These mutants presumably suffer frequent replication fork failure, or perhaps they have difficulty rescuing forks that failed due to endogenous sources of DNA damage. In an effort to understand more clearly the endogenous sources of DNA damage and the nature of replication fork failure and rescue, we undertook a systematic screen for Escherichia coli mutants that constitutively express the SOS regulon. We identified mutant strains with transposon insertions in 42 genes that caused increased expression from a dinD1::lacZ reporter construct. Most of these also displayed significant increases in basal levels of RecA protein, confirming an effect on the SOS system. As expected, this collection includes genes, such as lexA, dam, rep, xerCD, recG, and polA, which have previously been shown to cause an SOS constitutive phenotype when inactivated. The collection also includes 28 genes or open reading frames that were not previously identified as SOS constitutive, including dcd, ftsE, ftsX, purF, tdcE, and tynA. Further study of these SOS constitutive mutants should be useful in understanding the multiple causes of endogenous DNA damage. This study also provides a quantitative comparison of the extent of SOS expression caused by inactivation of many different genes in a common genetic background.

摘要

细菌的SOS调节子在受到紫外线辐射和萘啶酸等外源性因子造成的DNA损伤时会被强烈诱导。然而,某些在DNA复制、重组或修复方面存在缺陷的突变体表现出部分组成型SOS反应。这些突变体可能经常遭遇复制叉故障,或者它们在挽救因内源性DNA损伤源而失败的复制叉时存在困难。为了更清楚地了解内源性DNA损伤源以及复制叉故障和挽救的本质,我们对组成型表达SOS调节子的大肠杆菌突变体进行了系统筛选。我们鉴定出了42个基因中有转座子插入的突变菌株,这些突变导致dinD1::lacZ报告构建体的表达增加。其中大多数突变体的RecA蛋白基础水平也显著升高,证实了对SOS系统的影响。正如预期的那样,这个集合包括一些基因,如lexA、dam、rep、xerCD、recG和polA,这些基因在失活时先前已被证明会导致SOS组成型表型。该集合还包括28个以前未被鉴定为SOS组成型的基因或开放阅读框,包括dcd、ftsE、ftsX、purF、tdcE和tynA。对这些SOS组成型突变体的进一步研究将有助于理解内源性DNA损伤的多种原因。这项研究还对在共同遗传背景下许多不同基因失活所导致的SOS表达程度进行了定量比较。

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