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A potent phenylalkylamine disrupts mycobacterial membrane bioenergetics and augments bactericidal activity of bedaquiline.


ABSTRACT: Clinically efficacious combination therapies capable of impeding resistance are widely sought for the treatment of mycobacterial infections. Here, we described structural modifications of the phenylalkylamine scaffold of verapamil to give an analog with more than 10-fold greater growth inhibitory activity than verapamil against Mycobacterium tuberculosis, M. bovis BCG, and M. abscessus abscessus (Mab abscessus). The analog synergized with the F1Fo-ATP synthase inhibitor bedaquiline in checkerboard assays and augmented the bactericidal properties of bedaquiline against M. bovis BCG and Mab abscessus. Using live cell bioorthogonal imaging techniques, in vitro biochemical and genetic assays, the bactericidal activity of the analog is attributed to the perturbation of membrane bioenergetics and disruption of mycobacterial respiration. Overall, its promising activity profile, mode of action and synergistic interaction with bedaquiline support further exploration of the phenylalkylamine scaffold as a valued source of potential leads for antimycobacterial drug discovery.

SUBMITTER: Phua ZY 

PROVIDER: S-EPMC12281142 | biostudies-literature | 2025 Jul

REPOSITORIES: biostudies-literature

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A potent phenylalkylamine disrupts mycobacterial membrane bioenergetics and augments bactericidal activity of bedaquiline.

Phua Zheng Yen ZY   Li Ming M   Ali Azhar A   Cheong Cedric Cheng Sheng CCS   Goh Kai Jie KJ   Seto Marcus Yi Kang MYK   Ng Amos Shi Ying ASY   Sarathy Jickky Palmae JP   Goh Boon Cher BC   Go Mei Lin ML   Chui Wai Keung WK   Dick Thomas T   Lam Yulin Y  

iScience 20250618 7


Clinically efficacious combination therapies capable of impeding resistance are widely sought for the treatment of mycobacterial infections. Here, we described structural modifications of the phenylalkylamine scaffold of verapamil to give an analog with more than 10-fold greater growth inhibitory activity than verapamil against <i>Mycobacterium tuberculosis</i>, <i>M. bovis</i> BCG, and <i>M. abscessus abscessus (Mab abscessus).</i> The analog synergized with the F<sub>1</sub>F<sub>o</sub>-ATP s  ...[more]

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