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Azetidines Kill Multidrug-Resistant Mycobacterium tuberculosiswithout Detectable Resistance by Blocking Mycolate Assembly

Authors :
Cui, Yixin
Lanne, Alice
Peng, Xudan
Browne, Edward
Bhatt, Apoorva
Coltman, Nicholas J.
Craven, Philip
Cox, Liam R.
Cundy, Nicholas J.
Dale, Katie
Feula, Antonio
Frampton, Jon
Fung, Martin
Morton, Michael
Goff, Aaron
Salih, Mariwan
Lang, Xingfen
Li, Xingjian
Moon, Chris
Pascoe, Jordan
Portman, Vanessa
Press, Cara
Schulz-Utermoehl, Timothy
Lee, Suki
Tortorella, Micky D.
Tu, Zhengchao
Underwood, Zoe E.
Wang, Changwei
Yoshizawa, Akina
Zhang, Tianyu
Waddell, Simon J.
Bacon, Joanna
Alderwick, Luke
Fossey, John S.
Neagoie, Cleopatra
Source :
Journal of Medicinal Chemistry; 20240101, Issue: Preprints
Publication Year :
2024

Abstract

Tuberculosis (TB) is the leading cause of global morbidity and mortality resulting from infectious disease, with over 10.6 million new cases and 1.4 million deaths in 2021. This global emergency is exacerbated by the emergence of multidrug-resistant MDR-TB and extensively drug-resistant XDR-TB; therefore, new drugs and new drug targets are urgently required. From a whole cell phenotypic screen, a series of azetidines derivatives termed BGAz, which elicit potent bactericidal activity with MIC99values <10 μM against drug-sensitive Mycobacterium tuberculosisand MDR-TB, were identified. These compounds demonstrate no detectable drug resistance. The mode of action and target deconvolution studies suggest that these compounds inhibit mycobacterial growth by interfering with cell envelope biogenesis, specifically late-stage mycolic acid biosynthesis. Transcriptomic analysis demonstrates that the BGAz compounds tested display a mode of action distinct from the existing mycobacterial cell wall inhibitors. In addition, the compounds tested exhibit toxicological and PK/PD profiles that pave the way for their development as antitubercular chemotherapies.

Details

Language :
English
ISSN :
00222623 and 15204804
Issue :
Preprints
Database :
Supplemental Index
Journal :
Journal of Medicinal Chemistry
Publication Type :
Periodical
Accession number :
ejs65433259
Full Text :
https://doi.org/10.1021/acs.jmedchem.3c01643