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发光杆菌的HcaR调节蛋白影响参与氧化应激和毒血症的蛋白质的产生。

The HcaR regulatory protein of Photorhabdus luminescens affects the production of proteins involved in oxidative stress and toxemia.

作者信息

Chalabaev Sabina, Turlin Evelyne, Charles Jean-François, Namane Abdelkader, Pagès Sylvie, Givaudan Alain, Brito-Fravallo Emma, Danchin Antoine, Biville Francis

机构信息

Unité de Génétique des Génomes Bactériens (URA2171), Institut Pasteur, Paris, France.

出版信息

Proteomics. 2007 Dec;7(24):4499-510. doi: 10.1002/pmic.200700609.

Abstract

Comparison of the proteomes of wild-type Photorhabdus luminescens and its hcaR derivative, grown in insect hemolymph, showed that hcaR disruption decreased the production of toxins (tcdA1, mcf, and pirAB) and proteins involved in oxidative stress response (SodA, AhpC, Gor). The disruption of hcaR did not affect growth rate in insects, but did delay the virulence of P. luminescens in Bombyx mori and Spodoptera littoralis larvae. This delayed virulence was associated with a lower toxemia rather than delay in bacteremia. The disruption of hcaR also increased bacterial sensitivity to hydrogen peroxide. A sodA mutant and an hcaR mutant had similar phenotypes in terms of sensitivity to hydrogen peroxide, virulence, toxin gene expression, and growth rate in insects. Thus, the two processes affected by hcaR disruption - toxemia and oxidative stress response - appear to be related. Besides, expression of toxin genes tcdA1, mcf, and pirAB was decreased by paraquat challenge. We provide here the first demonstration of the importance of toxemia for P. luminescens virulence. Our results also highlight the power of proteomic analysis for detecting unexpected links between different, concomitant processes in bacteria.

摘要

对在昆虫血淋巴中生长的野生型发光光杆状菌及其hcaR衍生物的蛋白质组进行比较,结果表明,hcaR基因的破坏降低了毒素(tcdA1、mcf和pirAB)以及参与氧化应激反应的蛋白质(SodA、AhpC、Gor)的产生。hcaR基因的破坏并不影响在昆虫体内的生长速度,但确实延迟了发光光杆状菌对家蚕和斜纹夜蛾幼虫的毒力。这种毒力延迟与较低的毒血症有关,而不是菌血症延迟。hcaR基因的破坏还增加了细菌对过氧化氢的敏感性。一个sodA突变体和一个hcaR突变体在对过氧化氢的敏感性、毒力、毒素基因表达以及在昆虫体内的生长速度方面具有相似的表型。因此,受hcaR基因破坏影响的两个过程——毒血症和氧化应激反应——似乎是相关的。此外,百草枯刺激会降低毒素基因tcdA1、mcf和pirAB的表达。我们在此首次证明了毒血症对发光光杆状菌毒力的重要性。我们的结果还突出了蛋白质组学分析在检测细菌中不同的、同时发生的过程之间意外联系方面的作用。

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