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Oxidative stress protein Oxr1 promotes V-ATPase holoenzyme disassembly in catalytic activity-independent manner.


ABSTRACT: The vacuolar ATPase (V-ATPase) is a rotary motor proton pump that is regulated by an assembly equilibrium between active holoenzyme and autoinhibited V1 -ATPase and Vo proton channel subcomplexes. Here, we report cryo-EM structures of yeast V-ATPase assembled in vitro from lipid nanodisc reconstituted Vo and mutant V1 . Our analysis identified holoenzymes in three active rotary states, indicating that binding of V1 to Vo provides sufficient free energy to overcome Vo autoinhibition. Moreover, the structures suggest that the unequal spacing of Vo 's proton-carrying glutamic acid residues serves to alleviate the symmetry mismatch between V1 and Vo motors, a notion that is supported by mutagenesis experiments. We also uncover a structure of free V1 bound to Oxr1, a conserved but poorly characterized factor involved in the oxidative stress response. Biochemical experiments show that Oxr1 inhibits V1 -ATPase and causes disassembly of the holoenzyme, suggesting that Oxr1 plays a direct role in V-ATPase regulation.

SUBMITTER: Khan MM 

PROVIDER: S-EPMC8804929 | biostudies-literature | 2022 Feb

REPOSITORIES: biostudies-literature

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Oxidative stress protein Oxr1 promotes V-ATPase holoenzyme disassembly in catalytic activity-independent manner.

Khan Md Murad MM   Lee Seowon S   Couoh-Cardel Sergio S   Oot Rebecca A RA   Kim Hyunmin H   Wilkens Stephan S   Roh Soung-Hun SH  

The EMBO journal 20211217 3


The vacuolar ATPase (V-ATPase) is a rotary motor proton pump that is regulated by an assembly equilibrium between active holoenzyme and autoinhibited V<sub>1</sub> -ATPase and V<sub>o</sub> proton channel subcomplexes. Here, we report cryo-EM structures of yeast V-ATPase assembled in vitro from lipid nanodisc reconstituted V<sub>o</sub> and mutant V<sub>1</sub> . Our analysis identified holoenzymes in three active rotary states, indicating that binding of V<sub>1</sub> to V<sub>o</sub> provides  ...[more]

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