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氧化还原调节的SoxR蛋白在单个DNA位点发挥作用,既是一种阻遏物,也是一种变构激活剂。

The redox-regulated SoxR protein acts from a single DNA site as a repressor and an allosteric activator.

作者信息

Hidalgo E, Leautaud V, Demple B

机构信息

Department of Cancer Cell Biology, Harvard School of Public Health, Boston, MA 02115-6021, USA.

出版信息

EMBO J. 1998 May 1;17(9):2629-36. doi: 10.1093/emboj/17.9.2629.

Abstract

The SoxR protein of Escherichia coli responds to redox signals by activating the transcription of soxS, which encodes another transcription activator that directly stimulates oxidative stress genes. We show here that transcription of the soxR gene, which is positioned head-to-head with soxS in the chromosome, initiates in the intergenic region and is itself repressed by SoxR protein in in vitro transcription experiments. Analysis of single-copy operon fusions to soxR, combined with the results of Northern blotting experiments, verified this regulation and the transcription start site in vivo. The structure of the overlapping promoters is such that the single SoxR-binding site is located in the -10/-35 spacer of the soxS promoter, but just downstream of the -10 element of the soxR promoter. Activated and non-activated SoxR bind this site equally well, exerting nearly constant repression of soxR; activated SoxR simultaneously stimulates the soxS promoter >/=30-fold. The functional soxR promoter depresses soxS transcription when SoxR is not activated and enhances soxS transcription when SoxR is activated, as shown by comparing the expression of soxS'::lacZ fusions with and without the soxR -35 element (induction ratio only approximately 7-fold). SoxR thus represents a highly polar, redox-regulated transcriptional switch that maximizes the change in expression of soxS.

摘要

大肠杆菌的SoxR蛋白通过激活soxS的转录来响应氧化还原信号,soxS编码另一种直接刺激氧化应激基因的转录激活因子。我们在此表明,soxR基因与soxS在染色体上呈头对头排列,其转录起始于基因间区域,并且在体外转录实验中其本身受到SoxR蛋白的抑制。对与soxR的单拷贝操纵子融合体的分析,结合Northern印迹实验结果,在体内验证了这种调控和转录起始位点。重叠启动子的结构使得单个SoxR结合位点位于soxS启动子的-10 / -35间隔区,但恰好在soxR启动子的-10元件下游。活化的和未活化的SoxR与该位点结合的能力相同,对soxR发挥几乎恒定的抑制作用;活化的SoxR同时刺激soxS启动子> /= 30倍。通过比较有和没有soxR -35元件的soxS'::lacZ融合体的表达(诱导率仅约7倍)表明,功能性soxR启动子在SoxR未活化时抑制soxS转录,而在SoxR活化时增强soxS转录。因此,SoxR代表一种高度极化的、氧化还原调节的转录开关,可使soxS的表达变化最大化。

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