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首页> 外文期刊>Nature Communications >Intramolecular chaperone-mediated secretion of an Rhs effector toxin by a type VI secretion system
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Intramolecular chaperone-mediated secretion of an Rhs effector toxin by a type VI secretion system

机译:分子内伴侣介导的vI分泌系统rhS效应器毒素的分泌

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Bacterial Rhs proteins containing toxic domains are often secreted by type VI secretion systems (T6SSs) through unclear mechanisms. Here, we show that the T6SS Rhs-family effector TseI of Aeromonas dhakensis is subject to self-cleavage at both the N- and the C-terminus, releasing the middle Rhs core and two VgrG-interacting domains (which we name VIRN and VIRC). VIRC is an endonuclease, and the immunity protein TsiI protects against VIRC toxicity through direct interaction. Proteolytic release of VIRC and VIRN is mediated, respectively, by an internal aspartic protease activity and by two conserved glutamic residues in the Rhs core. Mutations abolishing self-cleavage do not block secretion, but reduce TseI toxicity. Deletion of VIRN or the Rhs core abolishes secretion. TseI homologs from Pseudomonas syringae, P. aeruginosa, and Vibrio parahaemolyticus are also self-cleaved. VIRN and VIRC interact with protein VgrG1, while the Rhs core interacts with protein TecI. We propose that VIRN and the Rhs core act as T6SS intramolecular chaperones to facilitate toxin secretion and function.
机译:含有有毒结构域的细菌RHS蛋白通常通过不明确的机制通过VI分泌系统(T6SS)分泌。在这里,我们显示Aeromonas Dhakensis的T6SS RHS系列效应器Tsei在N-和C-末端进行自我切割,释放中RHS核心和两个vGRG相互作用的域(我们命名VIRN和VIRC) )。 VIRC是一种内切核酸酶,免疫蛋白TSII通过直接相互作用来保护免受VIRC毒性。 VIRC和VIRN的蛋白水解释放分别通过内部天冬氨酸蛋白酶活性和RHS核心的两个保守的谷氨酸残基介导。消除自我切割的突变不会阻断分泌,而是降低Tsei毒性。缺失Virn或RHS核心废除分泌。来自假单胞菌的Tsei同源物,P.铜绿假单胞菌和帕拉致溶血性也是自我裂解的。 VIRN和VIRC与蛋白质vGRG1相互作用,而RHS核心与蛋白质TECI相互作用。我们提出了virn和Rhs核心作为T6SS分子内伴侣,以促进毒素分泌和功能。

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