A distinct inhibitory mechanism of the V-ATPase by Vibrio VopQ revealed by cryo-EM

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作者
Wei Peng
Amanda K. Casey
Jessie Fernandez
Emily M. Carpinone
Kelly A. Servage
Zhe Chen
Yang Li
Diana R. Tomchick
Vincent J. Starai
Kim Orth
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[1] University of Texas Southwestern Medical Center,Department of Molecular Biology
[2] University of Texas Southwestern Medical Center,Howard Hughes Medical Institute
[3] University of Georgia,Department of Microbiology
[4] University of Texas Southwestern Medical Center,Department of Biophysics
[5] University of Texas Southwestern Medical Center,Department of Biochemistry
[6] University of Georgia,Department of Infectious Diseases
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The Vibrioparahaemolyticus T3SS effector VopQ targets host-cell V-ATPase, resulting in blockage of autophagic flux and neutralization of acidic compartments. Here, we report the cryo-EM structure of VopQ bound to the Vo subcomplex of the V-ATPase. VopQ inserts into membranes and forms an unconventional pore while binding directly to subunit c of the V-ATPase membrane-embedded subcomplex Vo. We show that VopQ arrests yeast growth in vivo by targeting the immature Vo subcomplex in the endoplasmic reticulum (ER), thus providing insight into the observation that VopQ kills cells in the absence of a functional V-ATPase. VopQ is a bacterial effector that has been discovered to inhibit a host-membrane megadalton complex by coincidentally binding its target, inserting into a membrane and disrupting membrane potential. Collectively, our results reveal a mechanism by which bacterial effectors modulate host cell biology and provide an invaluable tool for future studies on V-ATPase-mediated membrane fusion and autophagy.
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页码:589 / 597
页数:8
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