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肠出血性大肠杆菌和肠致病性大肠杆菌利用不同的机制形成肌动蛋白基座,这些机制都汇聚于神经Wiskott-Aldrich综合征蛋白(N-WASP)。

Enterohaemorrhagic and enteropathogenic Escherichia coli use different mechanisms for actin pedestal formation that converge on N-WASP.

作者信息

Lommel Silvia, Benesch Stefanie, Rohde Manfred, Wehland Jürgen, Rottner Klemens

机构信息

Department of Cell Biology, German Research Centre for Biotechnology (GBF), Mascheroder Weg 1, 38124 Braunschweig, Germany.

出版信息

Cell Microbiol. 2004 Mar;6(3):243-54. doi: 10.1111/j.1462-5822.2004.00364.x.

Abstract

Enteropathogenic Escherichia coli (EPEC) and enterohaemorrhagic E. coli (EHEC), two closely related diarrhoeagenic pathogens, induce actin rearrangements at the surface of infected host cells resulting in the formation of pseudopod-like structures termed pedestals beneath intimately attached bacteria. We have shown previously that N-WASP, a key integrator of signalling pathways that regulate actin polymerization via the Arp2/3 complex, is essential for pedestal formation induced by EPEC using N-WASP-defective cell lines. Here we show that actin pedestal formation initiated by EHEC also depends on N-WASP. Amino acid residues 226-274 of N-WASP are both necessary and sufficient to target N-WASP to sites of EHEC attachment. The recruitment mechanism thus differs from that used by EPEC, in which amino-terminal sequences of N-WASP mediate recruitment. For EPEC, recruitment of N-WASP downstream of Nck has been postulated to be mediated by WIP. However, we find a direct interaction of N-WASP with WIP to be dispensable for EPEC-induced pedestal formation and present data supporting an F-actin-dependent localization of WIP to actin pedestals induced by both EPEC and EHEC. In summary, our data show that EPEC and EHEC use different mechanisms to recruit N-WASP, which is essential for actin pedestal formation induced by both pathogens.

摘要

肠致病性大肠杆菌(EPEC)和肠出血性大肠杆菌(EHEC)是两种密切相关的致腹泻病原体,它们在受感染宿主细胞表面诱导肌动蛋白重排,导致在紧密附着的细菌下方形成称为菌台的伪足样结构。我们之前已经表明,N-WASP是一种通过Arp2/3复合物调节肌动蛋白聚合的信号通路的关键整合蛋白,使用N-WASP缺陷细胞系证明其对于EPEC诱导的菌台形成至关重要。在此我们表明,由EHEC引发的肌动蛋白菌台形成也依赖于N-WASP。N-WASP的226-274位氨基酸残基对于将N-WASP靶向至EHEC附着位点既必要又充分。因此,其招募机制不同于EPEC所使用的机制,在EPEC中,N-WASP的氨基末端序列介导招募。对于EPEC,推测Nck下游的N-WASP招募是由WIP介导的。然而,我们发现N-WASP与WIP的直接相互作用对于EPEC诱导的菌台形成并非必需,并且现有数据支持WIP依赖于F-肌动蛋白定位至由EPEC和EHEC诱导的肌动蛋白菌台。总之,我们的数据表明,EPEC和EHEC使用不同机制招募N-WASP,而N-WASP对于这两种病原体诱导的肌动蛋白菌台形成至关重要。

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