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菊欧文氏菌的铁代谢:II型分泌系统内膜平台的意外作用

Erwinia chrysanthemi iron metabolism: the unexpected implication of the inner membrane platform within the type II secretion system.

作者信息

Douet Vanessa, Expert Dominique, Barras Frédéric, Py Béatrice

机构信息

LCB, CNRS, 31 Chemin Joseph Aiguier, 13402 Marseille Cedex 20, France.

出版信息

J Bacteriol. 2009 Feb;191(3):795-804. doi: 10.1128/JB.00845-08. Epub 2008 Oct 31.

Abstract

The type II secretion (T2S) system is an essential device for Erwinia chrysanthemi virulence. Previously, we reported the key role of the OutF protein in forming, along with OutELM, an inner membrane platform in the Out T2S system. Here, we report that OutF copurified with five proteins identified by matrix-assisted laser desorption ionization-time of flight analysis as AcsD, TogA, SecA, Tsp, and DegP. The AcsD protein was known to be involved in the biosynthesis of achromobactin, which is a siderophore important for E. chrysanthemi virulence. The yeast two-hybrid system allowed us to gain further evidence for the OutF-AcsD interaction. Moreover, we showed that lack of OutF produced a pleiotropic phenotype: (i) altered production of the two siderophores of E. chrysanthemi, achromobactin and chrysobactin; (ii) hypersensitivity to streptonigrin, an iron-activated antibiotic; (iii) increased sensitivity to oxidative stress; and (iv) absence of the FbpA-like iron-binding protein in the periplasmic fraction. Interestingly, outE and outL mutants also exhibited similar phenotypes, but, outD and outJ mutants did not. Moreover, using the yeast two-hybrid system, several interactions were shown to occur between components of the T2S system inner membrane platform (OutEFL) and proteins involved in achromobactin production (AcsABCDE). The OutL-AcsD interaction was also demonstrated by Ni(2+) affinity chromatography. These results fully confirm our previous view that the T2S machinery is made up of three discrete blocks. The OutEFLM-forming platform is proposed to be instrumental in two different processes essential for virulence, protein secretion and iron homeostasis.

摘要

II型分泌(T2S)系统是菊欧文氏菌毒力的关键装置。此前,我们报道了OutF蛋白与OutELM一起在Out T2S系统中形成内膜平台的关键作用。在此,我们报道OutF与通过基质辅助激光解吸电离飞行时间分析鉴定的五种蛋白质共纯化,分别为AcsD、TogA、SecA、Tsp和DegP。已知AcsD蛋白参与无荧光菌素的生物合成,无荧光菌素是一种对菊欧文氏菌毒力很重要的铁载体。酵母双杂交系统使我们能够进一步证明OutF与AcsD之间的相互作用。此外,我们发现缺乏OutF会产生多效性表型:(i)菊欧文氏菌的两种铁载体无荧光菌素和金黄菌素的产量改变;(ii)对铁激活抗生素链黑菌素过敏;(iii)对氧化应激的敏感性增加;(iv)周质部分中缺乏FbpA样铁结合蛋白。有趣的是,outE和outL突变体也表现出类似的表型,但outD和outJ突变体则没有。此外,使用酵母双杂交系统,T2S系统内膜平台(OutEFL)的组分与参与无荧光菌素产生的蛋白质(AcsABCDE)之间显示出几种相互作用。Ni(2+)亲和色谱也证明了OutL与AcsD之间的相互作用。这些结果充分证实了我们之前的观点:T2S机制由三个离散模块组成。由OutEFLM形成的平台被认为在毒力、蛋白质分泌和铁稳态这两个对毒力至关重要的不同过程中发挥作用。

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