Previously uncharacterized v-ATPase binding site discovered from structurally similar compounds with distinct mechanisms of action.

ACS chemical biology(2019)

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摘要
Using a comprehensive chemical genetics approach, we identified a member of the lignan natural product family, HTP-013, which exhibited significant cytotoxicity across various cancer cell lines. Correlation of compound activity across a panel of reporter gene assays suggested the vacuolar-type ATPase (v-ATPase) as a potential target for this compound. Additional cellular studies and a yeast haploinsufficiency screen strongly supported this finding. Competitive photoaffinity labeling experiments demonstrated that the ATP6V0A2 subunit of the v-ATPase complex binds directly to HTP-013, and further mutagenesis library screening identified resistance-conferring mutations in ATP6V0A2. The positions of these mutations suggest the molecule binds a novel pocket within the domain of the v-ATPase complex responsible for proton translocation. While other mechanisms of v-ATPase regulation have been described, such as dissociation of the complex, or inhibition by natural products including Bafilomycin A1 and Concanamycin, this work provides detailed insight into a distinct binding pocket within the v-ATPase complex.
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关键词
atpase,similar compounds,vacuolar-type
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