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Molecular Analysis of the Vibrio cholerae Type II Secretion ATPase EpsE

机译:霍乱弧菌II型分泌ATPase EpsE的分子分析

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The type II secretion system is a macromolecular assembly that facilitates the extracellular translocation of folded proteins in gram-negative bacteria. EpsE, a member of this secretion system in Vibrio cholerae, contains a nucleotide-binding motif composed of Walker A and B boxes that are thought to participate in binding and hydrolysis of ATP and displays structural homology to other transport ATPases. Here we demonstrate that purified EpsE is an Mg2+-dependent ATPase and define optimal conditions for the hydrolysis reaction. EpsE displays concentration-dependent activity, which may suggest that the active form is oligomeric. Size exclusion chromatography showed that the majority of purified EpsE is monomeric; however, detailed analyses of specific activities obtained following gel filtration revealed the presence of a small population of active oligomers. We further report that EpsE binds zinc through a tetracysteine motif near its carboxyl terminus, yet metal displacement assays suggest that zinc is not required for catalysis. Previous studies describing interactions between EpsE and other components of the type II secretion pathway together with these data further support the hypothesis that EpsE functions to couple energy to the type II apparatus, thus enabling secretion.
机译:II型分泌系统是一个大分子装配体,可促进革兰氏阴性细菌中折叠蛋白的胞外转运。 EpsE是霍乱弧菌分泌系统的成员,它包含一个由Walker A和B盒组成的核苷酸结合基序,这些盒被认为参与ATP的结合和水解并显示出与其他转运蛋白的结构同源性ATP酶。在这里,我们证明了纯化的EpsE是Mg 2 + 依赖的ATPase,并为水解反应定义了最佳条件。 EpsE显示出浓度依赖性的活性,这可能表明该活性形式是寡聚的。尺寸排阻色谱表明,大多数纯化的EpsE是单体的。但是,对凝胶过滤后获得的比活性进行的详细分析显示,存在少量的活性低聚物。我们进一步报道,EpsE通过靠近其羧基末端的四半胱氨酸基序结合锌,但金属置换试验表明锌不是催化所必需的。先前的研究描述了EpsE与II型分泌途径的其他成分之间的相互作用以及这些数据,进一步支持了EpsE起到将能量耦合至II型装置从而进行分泌的作用的假设。

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