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The ADP Ribosyltransferase Domain of Pseudomonas aeruginosa ExoT Contributes to Its Biological Activities

机译:铜绿假单胞菌ExoT的ADP核糖基转移酶结构域有助于其生物活性。

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摘要

ExoT is a type III secreted effector protein found in almost all strains of Pseudomonas aeruginosa and is required for full virulence in an animal model of acute pneumonia. It is comprised of an N-terminal domain with GTPase activating protein (GAP) activity towards Rho family GTPases and a C-terminal ADP ribosyltransferase (ADPRT) domain with minimal activity towards a synthetic substrate in vitro. Consistent with its activity as a Rho family GTPase, ExoT has been shown to inhibit P. aeruginosa internalization into epithelial cells and macrophages, disrupt the actin cytoskeleton through a Rho-dependent pathway, and inhibit wound repair in a scrape model of injured epithelium. We have previously shown that mutation of the invariant arginine of the GAP domain to lysine (R149K) results in complete loss of GAP activity in vitro but only partially inhibits ExoT anti-internalization and cell rounding activity. We have constructed in-frame deletions and point mutations within the ADPRT domain in order to test whether this domain might account for the residual activity observed in ExoT GAP mutants. Deletion of a majority of the ADPRT domain (residues 234 to 438) or point mutations of the ADPRT catalytic site (residues 383 to 385) led to distinct changes in host cell morphology and substantially reduced the ability of ExoT to inhibit in vitro epithelial wound healing over a 24-h period. In contrast, only subtle effects on the efficiency of ExoT-induced bacterial internalization were observed in the ADPRT mutant forms. Expression of each domain individually in Saccharomyces cerevisiae was toxic, whereas expression of each of the catalytically inactive mutant domains was not. Collectively, these data demonstrate that the ADPRT domain of ExoT is active in vivo and contributes to the pathogenesis of P. aeruginosa infections.
机译:ExoT是一种在几乎所有铜绿假单胞菌菌株中发现的III型分泌效应蛋白,在急性肺炎动物模型中,要获得完全毒力,就需要ExoT。它由对Rho家族GTPase具有GTPase活化蛋白(GAP)活性的N末端结构域和对合成底物体外具有最小活性的C末端ADP核糖基转移酶(ADPRT)结构域组成。与作为Rho家族GTPase的活性一致,ExoT可以抑制铜绿假单胞菌内化到上皮细胞和巨噬细胞中,通过Rho依赖性途径破坏肌动蛋白的细胞骨架,并在受损上皮的刮擦模型中抑制伤口修复。先前我们已经表明,GAP域的恒定精氨酸突变为赖氨酸(R149K)会导致体外GAP活性完全丧失,但仅部分抑制ExoT的抗内在化和细胞舍入活性。我们已经在ADPRT域内构建了框内缺失和点突变,以测试该域是否可以解释在ExoT GAP突变体中观察到的残留活性。删除大多数ADPRT域(234至438位残基)或ADPRT催化位点的点突变(383至385位残基)导致宿主细胞形态发生明显变化,并显着降低了ExoT抑制体外上皮伤口愈合的能力在24小时内。相反,在ADPRT突变体形式中,仅观察到对ExoT诱导的细菌内在化效率的微妙影响。在酿酒酵母中每个结构域的单独表达是有毒的,而每个催化失活突变域的表达则没有毒性。总体而言,这些数据表明ExoT的ADPRT结构域在体内具有活性,并有助于铜绿假单胞菌感染的发病机理。

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