首页> 外文期刊>The Journal of biological chemistry >Characterization of the Ruler Protein Interaction Interface on the Substrate Specificity Switch Protein in the Yersinia Type III Secretion System
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Characterization of the Ruler Protein Interaction Interface on the Substrate Specificity Switch Protein in the Yersinia Type III Secretion System

机译:耶尔森氏菌III型分泌系统中底物特异性开关蛋白上的标尺蛋白相互作用界面的表征。

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Many pathogenic Gram-negative bacteria use the type III secretion system (T3SS) to deliver effector proteins into eukaryotic host cells. In Yersinia, the switch to secretion of effector proteins is induced first after intimate contact between the bacterium and its eukaryotic target cell has been established, and the T3SS proteins YscP and YscU play a central role in this process. Here we identify the molecular details of the YscP binding site on YscU by means of nuclear magnetic resonance (NMR) spectroscopy. The binding interface is centered on the C-terminal domain of YscU. Disrupting the YscU-YscP interaction by introducing point mutations at the interaction interface significantly reduced the secretion of effector proteins and HeLa cell cytotoxicity. Interestingly, the binding of YscP to the slowly self-cleaving YscU variant P264A conferred significant protection against autoproteolysis. The YscP-mediated inhibition of YscU autoproteolysis suggests that the cleavage event may act as a timing switch in the regulation of early versus late T3SS substrates. We also show that YscUC binds to the inner rod protein YscI with a dissociation constant (Kd) of 3.8 μm and with 1:1 stoichiometry. The significant similarity among different members of the YscU, YscP, and YscI families suggests that the protein-protein interactions discussed in this study are also relevant for other T3SS-containing Gram-negative bacteria.
机译:许多致病性革兰氏阴性细菌使用III型分泌系统(T3SS)将效应子蛋白传递到真核宿主细胞中。在耶尔森菌中,在细菌与其真核靶细胞之间建立了紧密接触之后,首先诱导效应蛋白分泌的转换,并且T3SS蛋白YscP和YscU在此过程中起着核心作用。在这里,我们通过核磁共振(NMR)光谱鉴定YscU上YscP结合位点的分子细节。绑定接口位于YscU的C端域。通过在相互作用界面引入点突变来破坏YscU-YscP相互作用,显着降低了效应蛋白的分泌和HeLa细胞的细胞毒性。有趣的是,YscP与缓慢自切割的YscU变体P264A的结合为抗自体蛋白水解提供了重要的保护。 YscP介导的对YscU自蛋白水解的抑制作用表明,裂解事件可能在早期和晚期T3SS底物的调控中起着定时开关的作用。我们还显示,YscUC以3.8μm的解离常数(Kd)和1:1的化学计量比结合内杆蛋白YscI。 YscU,YscP和YscI家族的不同成员之间的显着相似性表明,本研究中讨论的蛋白质-蛋白质相互作用也与其他含T3SS的革兰氏阴性细菌有关。

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