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dc.contributor.authorMasuya, Takahiroen
dc.contributor.authorSano, Yukien
dc.contributor.authorTanaka, Hinakoen
dc.contributor.authorButler, Nicole L.en
dc.contributor.authorIto, Takeshien
dc.contributor.authorTosaki, Tatsuhikoen
dc.contributor.authorMorgan, Joel E.en
dc.contributor.authorMurai, Masatoshien
dc.contributor.authorBarquera, Blancaen
dc.contributor.authorMiyoshi, Hidetoen
dc.contributor.alternative桝谷, 貴洋ja
dc.contributor.alternative佐野, 祐樹ja
dc.contributor.alternative田中, 比奈子ja
dc.contributor.alternative戸崎, 龍彦ja
dc.contributor.alternative村井, 正俊ja
dc.contributor.alternative三芳, 秀人ja
dc.date.accessioned2023-04-17T02:50:51Z-
dc.date.available2023-04-17T02:50:51Z-
dc.date.issued2020-09-04-
dc.identifier.urihttp://hdl.handle.net/2433/281623-
dc.description.abstractThe Na⁺-pumping NADH-ubiquinone (UQ) oxidoreductase (Na⁺-NQR) is present in the respiratory chain of many pathogenic bacteria and is thought to be a promising antibiotic target. Whereas many details of Na⁺-NQR structure and function are known, the mechanisms of action of potent inhibitors is not well-understood; elucidating the mechanisms would not only advance drug design strategies but might also provide insights on a terminal electron transfer from riboflavin to UQ. To this end, we performed photoaffinity labeling experiments using photoreactive derivatives of two known inhibitors, aurachin and korormicin, on isolated Vibrio cholerae Na⁺-NQR. The inhibitors labeled the cytoplasmic surface domain of the NqrB subunit including a protruding N-terminal stretch, which may be critical to regulate the UQ reaction in the adjacent NqrA subunit. The labeling was blocked by short-chain UQs such as ubiquinone-2. The photolabile group (2-aryl-5-carboxytetrazole (ACT)) of these inhibitors reacts with nucleophilic amino acids, so we tested mutations of nucleophilic residues in the labeled region of NqrB, such as Asp49 and Asp52 (to Ala), and observed moderate decreases in labeling yields, suggesting that these residues are involved in the interaction with ACT. We conclude that the inhibitors interfere with the UQ reaction in two ways: the first is blocking structural rearrangements at the cytoplasmic interface between NqrA and NqrB, and the second is the direct obstruction of UQ binding at this interfacial area. Unusual competitive behavior between the photoreactive inhibitors and various competitors corroborates our previous proposition that there may be two inhibitor binding sites in Na⁺-NQR.en
dc.language.isoeng-
dc.publisherElsevier BVen
dc.publisherAmerican Society for Biochemistry & Molecular Biology (ASBMB)en
dc.rights© 2020 Masuya et al.en
dc.rightsThis is an Open Access article under the CC BY license.en
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/-
dc.subjectNa⁺-pumping NADH-ubiquinone oxidoreductase (Na⁺-NQR)en
dc.subjectrespiratory enzymeen
dc.subjectubiquinoneen
dc.subjectaurachinen
dc.subjectkorormicinen
dc.subjectphotoaffinity labelingen
dc.subjectrespiratory chainen
dc.subjectchemical biologyen
dc.subjectenzyme inhibitoren
dc.titleInhibitors of a Na⁺-pumping NADH-ubiquinone oxidoreductase play multiple roles to block enzyme functionen
dc.typejournal article-
dc.type.niitypeJournal Article-
dc.identifier.jtitleJournal of Biological Chemistryen
dc.identifier.volume295-
dc.identifier.issue36-
dc.identifier.spage12739-
dc.identifier.epage12754-
dc.relation.doi10.1074/jbc.ra120.014229-
dc.textversionpublisher-
dc.identifier.pmid32690607-
dcterms.accessRightsopen access-
dc.identifier.pissn0021-9258-
dc.identifier.eissn1083-351X-
出現コレクション:学術雑誌掲載論文等

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