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Inhibition of M. tuberculosis and human ATP synthase by BDQ and TBAJ-587.

Authors :
Zhang, Yuying
Lai, Yuezheng
Zhou, Shan
Ran, Ting
Zhang, Yue
Zhao, Ziqing
Feng, Ziyan
Yu, Long
Xu, Jinxu
Shi, Kun
Wang, Jianyun
Pang, Yu
Li, Liang
Chen, Hongming
Guddat, Luke W.
Gao, Yan
Liu, Fengjiang
Rao, Zihe
Gong, Hongri
Source :
Nature; Jul2024, Vol. 631 Issue 8020, p409-414, 6p
Publication Year :
2024

Abstract

Bedaquiline (BDQ), a first-in-class diarylquinoline anti-tuberculosis drug, and its analogue, TBAJ-587, prevent the growth and proliferation of Mycobacterium tuberculosis by inhibiting ATP synthase1,2. However, BDQ also inhibits human ATP synthase3. At present, how these compounds interact with either M. tuberculosis ATP synthase or human ATP synthase is unclear. Here we present cryogenic electron microscopy structures of M. tuberculosis ATP synthase with and without BDQ and TBAJ-587 bound, and human ATP synthase bound to BDQ. The two inhibitors interact with subunit a and the c-ring at the leading site, c-only sites and lagging site in M. tuberculosis ATP synthase, showing that BDQ and TBAJ-587 have similar modes of action. The quinolinyl and dimethylamino units of the compounds make extensive contacts with the protein. The structure of human ATP synthase in complex with BDQ reveals that the BDQ-binding site is similar to that observed for the leading site in M. tuberculosis ATP synthase, and that the quinolinyl unit also interacts extensively with the human enzyme. This study will improve researchers’ understanding of the similarities and differences between human ATP synthase and M. tuberculosis ATP synthase in terms of the mode of BDQ binding, and will allow the rational design of novel diarylquinolines as anti-tuberculosis drugs.Cryogenic electron microscopy structures of Mycobacterium tuberculosis ATP synthase and human ATP synthase bound to the anti-tuberculosis drug bedaquiline or its analogue TBAJ-587 shed light on drug binding and could lead to new treatments for tuberculosis. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00280836
Volume :
631
Issue :
8020
Database :
Complementary Index
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
178408904
Full Text :
https://doi.org/10.1038/s41586-024-07605-8