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寻找氧化应激下准确基因表达所需的蛋白质:鸟苷酸激酶和 RNA 聚合酶的作用。

Search for proteins required for accurate gene expression under oxidative stress: roles of guanylate kinase and RNA polymerase.

机构信息

From the Frontier Research Center and Department of Biochemistry, Fukuoka Dental College, Fukuoka 814-0193 and.

出版信息

J Biol Chem. 2013 Nov 15;288(46):32952-62. doi: 10.1074/jbc.M113.507772. Epub 2013 Oct 4.

Abstract

In aerobically growing cells, in which reactive oxygen species are produced, the guanine base is oxidized to 8-oxo-7,8-dihydroguanine, which can pair with adenine as well as cytosine. This mispairing causes alterations in gene expression, and cells possess mechanisms to prevent such outcomes. In Escherichia coli, 8-oxo-7,8-dihydroguanine-related phenotypic suppression of lacZ amber is enhanced by mutations in genes related to the prevention of abnormal protein synthesis under oxidative stress. A genome-wide search for the genes responsible, followed by DNA sequence determination, revealed that specific amino acid changes in guanylate kinase and in the β and β' subunits of RNA polymerase cause elevated levels of phenotypic suppression, specifically under aerobic conditions. The involvement of the DnaB, DnaN, and MsbA proteins, which are involved in DNA replication and in preserving the membrane structure, was also noted. Interactions of these proteins with each other and also with other molecules may be important for preventing errors in gene expression.

摘要

在需氧生长的细胞中,会产生活性氧物种,鸟嘌呤碱基被氧化为 8-氧代-7,8-二氢鸟嘌呤,它可以与腺嘌呤以及胞嘧啶配对。这种错配会导致基因表达的改变,而细胞拥有防止这种结果的机制。在大肠杆菌中,与氧化应激下异常蛋白质合成的预防相关的基因突变增强了 8-氧代-7,8-二氢鸟嘌呤相关的 lacZ 琥珀突变体的表型抑制。通过全基因组搜索负责的基因,然后进行 DNA 序列测定,发现鸟苷酸激酶和 RNA 聚合酶的β和β'亚基中的特定氨基酸变化导致表型抑制水平升高,特别是在需氧条件下。还注意到了 DnaB、DnaN 和 MsbA 蛋白的参与,这些蛋白参与 DNA 复制和维持膜结构。这些蛋白质之间以及与其他分子的相互作用对于防止基因表达错误可能很重要。

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