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金黄色葡萄球菌hemB突变体中的σB活性

sigmaB activity in a Staphylococcus aureus hemB mutant.

作者信息

Senn Maria M, Bischoff Markus, von Eiff Christof, Berger-Bächi Brigitte

机构信息

Department of Medical Microbiology, University of Zürich, Gloriastrasse 32, 8006 Zürich, Switzerland.

出版信息

J Bacteriol. 2005 Nov;187(21):7397-406. doi: 10.1128/JB.187.21.7397-7406.2005.

Abstract

Inactivation of hemB in Staphylococcus aureus strain Newman resulted in a small-colony phenotype and was accompanied by an altered expression pattern of global regulators and control of virulence factor production. Transcription profiles followed over 15 h by Northern blot analyses revealed that transcripts of the global regulators arl, rot, sae, sarR, sarS, srr, svrA, and sigB disappeared after the exponential phase and that both agr transcripts were completely absent in the hemB mutant. Apart from a general concentration of transcriptional activity to the exponential phase, premature gene expression was observed for rot, hla, and spa. Nevertheless, reported sigmaB-dependent transcripts, such as sarC and clfA, were produced throughout the 15-h growth period monitored. The absence of these transcripts in a hemB sigB double mutant demonstrated their dependence on sigmaB and indicated an unexpected, permanent sigmaB activity in the hemB mutant. Variations in the extents of the directly sigmaB-controlled asp23, rsbVW-sigB, and sarC transcripts argue for additional factors modulating sigmaB activity. This study provides the first extended synopsis of the transcriptional patterns of different regulators over the entire growth cycle in the widely used Newman strain.

摘要

金黄色葡萄球菌纽曼菌株中hemB的失活导致了小菌落表型,并伴随着全局调控因子表达模式的改变以及毒力因子产生的调控。通过Northern印迹分析在15小时内跟踪转录谱,结果显示全局调控因子arl、rot、sae、sarR、sarS、srr、svrA和sigB的转录本在指数期后消失,并且hemB突变体中agr的两个转录本完全缺失。除了转录活性普遍集中在指数期外,还观察到rot、hla和spa的基因过早表达。然而,在监测的15小时生长期间,报道的依赖sigmaB的转录本,如sarC和clfA,一直在产生。hemB sigB双突变体中这些转录本的缺失证明了它们对sigmaB的依赖性,并表明hemB突变体中存在意外的、永久性的sigmaB活性。直接受sigmaB控制的asp23、rsbVW-sigB和sarC转录本程度的变化表明存在其他调节sigmaB活性的因素。本研究首次全面概述了广泛使用的纽曼菌株在整个生长周期中不同调控因子的转录模式。

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