Kato Junya, Lefebre Matthew, Galán Jorge E
Department of Microbial Pathogenesis, Yale University School of Medicine, New Haven, Connecticut, USA.
Department of Microbial Pathogenesis, Yale University School of Medicine, New Haven, Connecticut, USA
J Bacteriol. 2015 Sep;197(18):3007-14. doi: 10.1128/JB.00434-15. Epub 2015 Jul 13.
Many bacterial pathogens and symbionts utilize type III secretion systems to interact with their hosts. These machines have evolved to deliver bacterial effector proteins into eukaryotic target cells to modulate a variety of cellular functions. One of the most conserved components of these systems is an ATPase, which plays an essential role in the recognition and unfolding of proteins destined for secretion by the type III pathway. Here we show that structural features reminiscent of other ATP-driven protein translocases are essential for the function of InvC, the ATPase associated with a Salmonella enterica serovar Typhimurium type III secretion system. Mutational and functional analyses showed that a two-helix-finger motif and a conserved loop located at the entrance of and within the predicted pore formed by the hexameric ATPase are essential for InvC function. These findings provide mechanistic insight into the function of this highly conserved component of type III secretion machines.
Type III secretion machines are essential for the virulence or symbiotic relationships of many bacteria. These machines have evolved to deliver bacterial effector proteins into host cells to modulate cellular functions, thus facilitating bacterial colonization and replication. An essential component of these machines is a highly conserved ATPase, which is necessary for the recognition and secretion of proteins destined to be delivered by the type III secretion pathway. Using modeling and structure and function analyses, we have identified structural features of one of these ATPases from Salmonella enterica serovar Typhimurium that help to explain important aspects of its function.
许多细菌病原体和共生菌利用III型分泌系统与宿主相互作用。这些装置已经进化到能够将细菌效应蛋白输送到真核靶细胞中,以调节多种细胞功能。这些系统中最保守的成分之一是一种ATP酶,它在识别和展开由III型途径分泌的蛋白质方面起着至关重要的作用。在这里,我们表明,与其他ATP驱动的蛋白质转运酶相似的结构特征对于InvC的功能至关重要,InvC是一种与鼠伤寒沙门氏菌III型分泌系统相关的ATP酶。突变和功能分析表明,由六聚体ATP酶形成的预测孔入口处和孔内的一个双螺旋指基序和一个保守环对于InvC功能至关重要。这些发现为III型分泌装置这一高度保守成分的功能提供了机制上的见解。
III型分泌装置对于许多细菌的毒力或共生关系至关重要。这些装置已经进化到能够将细菌效应蛋白输送到宿主细胞中以调节细胞功能,从而促进细菌的定殖和复制。这些装置的一个重要组成部分是一种高度保守的ATP酶,它对于识别和分泌由III型分泌途径输送的蛋白质是必需的。通过建模以及结构和功能分析,我们已经确定了鼠伤寒沙门氏菌中这些ATP酶之一的结构特征,这有助于解释其功能的重要方面。