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The cryo-EM structure of the bd oxidase from *M. tuberculosis* reveals a unique structural framework and enables rational drug design to combat TB

Medicine and Health

The cryo-EM structure of the bd oxidase from *M. tuberculosis* reveals a unique structural framework and enables rational drug design to combat TB

S. Safarian, H. K. Opel-reading, et al.

Explore groundbreaking research from Schara Safarian and colleagues that unveils the cryo-EM structure of cytochrome bd oxidase from Mycobacterium tuberculosis. This study reveals a novel MK-9-binding site and a unique disulfide bond, paving the way for the development of targeted drugs to combat tuberculosis and reduce drug resistance.

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~3 min • Beginner • English
Abstract
New drugs are urgently needed to combat the global TB epidemic. Targeting simultaneously multiple respiratory enzyme complexes of Mycobacterium tuberculosis is regarded as one of the most effective treatment options to shorten drug administration regimes, and reduce the opportunity for the emergence of drug resistance. During infection and proliferation, the cytochrome bd oxidase plays a crucial role for mycobacterial pathophysiology by maintaining aerobic respiration at limited oxygen concentrations. Here, we present the cryo-EM structure of the cytochrome bd oxidase from M. tuberculosis at 2.5 Å. In conjunction with atomistic molecular dynamics (MD) simulation studies we discovered a previously unknown MK-9-binding site, as well as a unique disulfide bond within the Q-loop domain that defines an inactive conformation of the canonical quinol oxidation site in Actinobacteria. Our detailed insights into the long-sought atomic framework of the cytochrome bd oxidase from M. tuberculosis will form the basis for the design of highly specific drugs to act on this enzyme.
Publisher
Nature Communications
Published On
Sep 02, 2021
Authors
Schara Safarian, Helen K. Opel-Reading, Di Wu, Ahmad R. Mehdipour, Kiel Hards, Liam K. Harold, Melanie Radloff, Ian Stewart, Sonja Welsch, Gerhard Hummer, Gregory M. Cook, Kurt L. Krause, Hartmut Michel
Tags
tuberculosis
drug resistance
cytochrome bd oxidase
MK-9-binding site
cryogenic electron microscopy
Mycobacterium tuberculosis
enzyme complexes
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