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在沙门氏菌质粒毒力操纵子的调控基因spvR的控制中,H-NS、σS、SpvR与生长阶段之间的关系。

Relationships between H-NS, sigma S, SpvR and growth phase in the control of spvR, the regulatory gene of the Salmonella plasmid virulence operon.

作者信息

Robbe-Saule V, Schaeffer F, Kowarz L, Norel F

机构信息

Institut Pasteur, Unité de Génétique des Bactéries Intracellulaires INSERM U389, Paris, France.

出版信息

Mol Gen Genet. 1997 Oct;256(4):333-47. doi: 10.1007/s004380050577.

Abstract

The sigma S-regulated gene spvR of Salmonella typhimurium encodes an autoregulatory protein required for transcriptional activation of the virulence operon spvABCD. A mutation in the histone-like protein H-NS, which negatively controls the sigma S level, has been reported to increase spv gene expression in S. typhimurium strain LT2. In agreement with this, we found that transcription of spvR and spvABCD was derepressed in hns strains of Escherichia coli and S. typhimurium. Moreover, levels of spv gene expression in hns rpoS double mutants were higher than expression levels in mutants deficient in rpoS alone, and were close to those measured in wild-type strains. This demonstrates that H-NS contributes to spv gene regulation independently of its function in controlling the sigma S level. Since the same start site was used for spvR gene transcription in wild-type as in hns and hns rpoS mutant strains, it is likely that the spvR promoter. spvRp1, can be recognized efficiently by an RNA polymerase containing sigma 70. The spvR promoter region shows an intrinsic DNA curvature that might be a determinant in H-NS- and/or sigma S-mediated control. A single amino acid substitution, Leu to Pro at position 265, abolished the regulatory function of SpvR in E. coli and Salmonella, implicating the C-terminal domain of SpvR in its structure and/or regulatory function. The spvR265 allele is not transcribed at detectable levels in hns or hns rpoS strains, suggesting that activation of spvRp1 in these strains remains dependent on SpvR. Thus, we propose a model for spvR gene regulation in which SpvR acts as a co-regulator of an RNA polymerase containing either sigma 70 (in the absence of H-NS) or sigma S, to induce transcriptional initiation at spvRp1. Moreover, growth-phase regulation of spv gene expression was maintained in hns and hns rpoS strains, indicating that an additional element, besides sigma S, is involved in the growth-phase regulation in rich medium.

摘要

鼠伤寒沙门氏菌中受σS调控的基因spvR编码一种自调控蛋白,该蛋白是毒力操纵子spvABCD转录激活所必需的。据报道,组蛋白样蛋白H-NS中的一个突变会负调控σS水平,该突变会增加鼠伤寒沙门氏菌LT2菌株中spv基因的表达。与此一致的是,我们发现,在大肠杆菌和鼠伤寒沙门氏菌的hns菌株中,spvR和spvABCD的转录受到去抑制。此外,hns rpoS双突变体中spv基因的表达水平高于仅rpoS缺陷型突变体中的表达水平,且接近野生型菌株中测得的水平。这表明H-NS独立于其在控制σS水平方面的功能,对spv基因调控有贡献。由于野生型、hns和hns rpoS突变体菌株中spvR基因转录使用相同的起始位点,spvR启动子spvRp1很可能能被含有σ70的RNA聚合酶有效识别。spvR启动子区域呈现出一种内在的DNA弯曲,这可能是H-NS和/或σS介导的调控中的一个决定因素。一个单氨基酸取代,即在第265位由亮氨酸突变为脯氨酸,消除了SpvR在大肠杆菌和沙门氏菌中的调控功能,这表明SpvR的C末端结构域涉及其结构和/或调控功能。spvR265等位基因在hns或hns rpoS菌株中无法检测到转录水平,这表明这些菌株中spvRp1的激活仍然依赖于SpvR。因此,我们提出了一个spvR基因调控模型,其中SpvR作为含有σ70(在没有H-NS的情况下)或σS的RNA聚合酶的共调节因子,在spvRp1处诱导转录起始。此外,hns和hns rpoS菌株中维持了spv基因表达的生长阶段调控,这表明除了σS之外,还有一个额外的元件参与了丰富培养基中的生长阶段调控。

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