Issue 12, 2022

Alkyltriphenylphosphonium turns naphthoquinoneimidazoles into potent membrane depolarizers against mycobacteria

Abstract

Due to its central role in energy generation and bacterial viability, mycobacterial bioenergetics is an attractive therapeutic target for anti-tuberculosis drug discovery. Building upon our work on antimycobacterial dioxonaphthoimidazoliums that were activated by a proximal positive charge and generated reactive oxygen species upon reduction by Type II NADH dehydrogenase, we herein studied the effect of a distal positive charge on the antimycobacterial activity of naphthoquinoneimidazoles by incorporating a trialkylphosphonium cation. The potency-enhancing properties of the linker length were affirmed by structure–activity relationship studies. The most active compound against M. tb H37Rv displayed good selectivity index (SI = 34) and strong bactericidal activity in the low micromolar range, which occurred through rapid bacterial membrane depolarization that resulted in depletion of intracellular ATP. Through this work, we demonstrated a switch of the scaffold's mode-of-action via relocation of positive charge while retaining its excellent antibacterial activity and selectivity.

Graphical abstract: Alkyltriphenylphosphonium turns naphthoquinoneimidazoles into potent membrane depolarizers against mycobacteria

Supplementary files

Article information

Article type
Research Article
Submitted
29 Jul 2022
Accepted
10 Oct 2022
First published
13 Oct 2022
This article is Open Access
Creative Commons BY license

RSC Med. Chem., 2022,13, 1605-1613

Alkyltriphenylphosphonium turns naphthoquinoneimidazoles into potent membrane depolarizers against mycobacteria

K. T. Fridianto, G. A. Gunawan, K. Hards, J. P. Sarathy, G. M. Cook, T. Dick, M. Go and Y. Lam, RSC Med. Chem., 2022, 13, 1605 DOI: 10.1039/D2MD00251E

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