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一种来自化脓性链球菌的次要RNA聚合酶σ因子。

A secondary RNA polymerase sigma factor from Streptococcus pyogenes.

作者信息

Opdyke J A, Scott J R, Moran C P

机构信息

Department of Microbiology and Immunology, Emory University School of Medicine, Atlanta, GA 30322, USA.

出版信息

Mol Microbiol. 2001 Oct;42(2):495-502. doi: 10.1046/j.1365-2958.2001.02657.x.

Abstract

The important human pathogen Streptococcus pyogenes (the group A streptococcus or GAS) causes diseases ranging from mild, self-limiting pharyngitis to severe invasive infections. Regulation of the expression of GAS genes in response to specific environmental differences within the host is probably key in determining the course of the infectious process, however, little is known of global regulators of gene expression in GAS. Although secondary RNA polymerase sigma factors act as global regulators of gene expression in many other bacteria, none has yet been isolated from the GAS. The newly available GAS genome sequence indicates that the only candidate secondary sigma factor is encoded by two identical open reading frames (ORFS). These ORFS encode a protein that is 40% identical to the transcription factor ComX, believed to act as an RNA polymerase sigma factor in Streptococcus pneumoniae. To test whether the GAS ComX homologue functions as a sigma factor, we cloned and purified it from Escherichia coli. We found that in vitro, this GAS protein, which we call sigmaX, directed core RNA polymerase from Bacillus subtilis to transcribe from two GAS promoters that contain the cin-box region, required for transcription by S. pneumoniae ComX in vivo. On the other hand, GAS sigmaX did not promote transcription of a GAS promoter (hasA) expected to be dependent on sigmaA, the housekeeping or primary RNA polymerase sigma factor. Addition of monoclonal antibody that inhibited sigmaA-directed transcription had no effect on sigmaX-directed transcription, showing that the latter was not the result of contaminating sigmaA. Transcription of both cin-box-containing promoters initiated downstream of the cin-box and two different single basepair substitutions in the cin-box of the cinA promoter each caused a severe reduction of sigmaX-directed transcription in vitro. Thus, the cin-box is required for sigmaX-directed transcription.

摘要

重要的人类病原体化脓性链球菌(A 组链球菌或 GAS)可引发多种疾病,从轻度自限性咽炎到严重的侵袭性感染。GAS 基因表达受宿主内特定环境差异的调控,这可能是决定感染过程进程的关键,但人们对 GAS 中基因表达的全局调节因子知之甚少。尽管二级 RNA 聚合酶σ因子在许多其他细菌中作为基因表达的全局调节因子发挥作用,但尚未从 GAS 中分离出此类因子。新获得的 GAS 基因组序列表明,唯一的候选二级σ因子由两个相同的开放阅读框(ORF)编码。这些 ORF 编码一种与转录因子 ComX 有 40%同源性的蛋白质,ComX 被认为在肺炎链球菌中作为 RNA 聚合酶σ因子发挥作用。为了测试 GAS ComX 同源物是否作为σ因子发挥作用,我们从大肠杆菌中克隆并纯化了它。我们发现,在体外,这种我们称为σX的 GAS 蛋白可引导枯草芽孢杆菌的核心 RNA 聚合酶从两个含有 cin 框区域的 GAS 启动子进行转录,这是肺炎链球菌 ComX 在体内转录所必需的区域。另一方面,GAS σX 并未促进预期依赖于管家或主要 RNA 聚合酶σ因子σA的 GAS 启动子(hasA)的转录。添加抑制σA介导转录的单克隆抗体对σX介导的转录没有影响,这表明后者不是由污染的σA导致的结果。两个含有 cin 框的启动子的转录均在 cin 框下游起始,并且 cinA 启动子的 cin 框中的两个不同单碱基对替换各自导致体外σX介导的转录严重减少。因此,cin 框是σX介导转录所必需的。

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