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Potency Increase of Spiroketal Analogs of Membrane Inserting Indolyl Mannich Base Antimycobacterials Is Due to Acquisition of MmpL3 Inhibition.
Li, Ming; Phua, Zheng Yen; Xi, Yu; Xu, Zhujun; Nyantakyi, Samuel A; Li, Wei; Jackson, Mary; Wong, Ming Wah; Lam, Yulin; Chng, Shu Sin; Go, Mei Lin; Dick, Thomas.
Afiliación
  • Li M; Department of Medicine, Yong Loo Lin School of Medicine, National University of Singapore, 117599 Singapore.
  • Phua ZY; Department of Chemistry, Faculty of Science, National University of Singapore, 117543 Singapore.
  • Xi Y; Department of Chemistry, Faculty of Science, National University of Singapore, 117543 Singapore.
  • Xu Z; Department of Chemistry, Faculty of Science, National University of Singapore, 117543 Singapore.
  • Nyantakyi SA; Department of Pharmacy, Faculty of Science, National University of Singapore, 117559 Singapore.
  • Li W; Mycobacteria Research Laboratories, Department of Microbiology, Immunology and Pathology, Colorado State University, Fort Collins, Colorado 80523-1682, United States.
  • Jackson M; Mycobacteria Research Laboratories, Department of Microbiology, Immunology and Pathology, Colorado State University, Fort Collins, Colorado 80523-1682, United States.
  • Wong MW; Department of Chemistry, Faculty of Science, National University of Singapore, 117543 Singapore.
  • Lam Y; Department of Chemistry, Faculty of Science, National University of Singapore, 117543 Singapore.
  • Chng SS; Department of Chemistry, Faculty of Science, National University of Singapore, 117543 Singapore.
  • Go ML; Singapore Centre for Environmental Life Science Engineering (SCELSE), National University of Singapore, 117543 Singapore.
  • Dick T; Department of Pharmacy, Faculty of Science, National University of Singapore, 117559 Singapore.
ACS Infect Dis ; 6(7): 1882-1893, 2020 07 10.
Article en En | MEDLINE | ID: mdl-32413266
ABSTRACT
Chemistry campaigns identified amphiphilic indolyl Mannich bases as novel membrane-permeabilizing antimycobacterials. Spiroketal analogs of this series showed increased potency, and the lead compound 1 displayed efficacy in a mouse model of tuberculosis. Yet the mechanism by which the spiroketal moiety accomplished the potency "jump" remained unknown. Consistent with its membrane-permeabilizing mechanism, no resistant mutants could be isolated against indolyl Mannich base 2 lacking the spiroketal moiety. In contrast, mutations resistant against spiroketal analog 1 were obtained in mycobacterial membrane protein large 3 (MmpL3), a proton motive force (PMF)-dependent mycolate transporter. Thus, we hypothesized that the potency jump observed for 1 may be due to MmpL3 inhibition acquired by the addition of the spiroketal moiety. Here we showed that 1 inhibited MmpL3 flippase activity without loss of the PMF, colocalized with MmpL3tb-GFP in intact organisms, and yielded a consistent docking pose within the "common inhibitor binding pocket" of MmpL3. The presence of the spiroketal motif in 1 ostensibly augmented its interaction with MmpL3, an outcome not observed in the nonspiroketal analog 2, which displayed no cross-resistance to mmpL3 mutants, dissipated the PMF, and docked poorly in the MmpL3 binding pocket. Surprisingly, 2 inhibited MmpL3 flippase activity, which may be an epiphenomenon arising from its wider membrane disruptive effects. Hence, we conclude that the potency increase associated with the spiroketal analog 1 is linked to the acquisition of a second mechanism, MmpL3 inhibition. In contrast, the nonspiroketal analog 2 acts pleiotropically, affecting several cell membrane-embedded targets, including MmpL3, through its membrane permeabilizing and depolarizing effects.
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Texto completo: 1 Base de datos: MEDLINE Asunto principal: Mycobacterium tuberculosis / Ácidos Micólicos Idioma: En Revista: ACS Infect Dis Año: 2020 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Mycobacterium tuberculosis / Ácidos Micólicos Idioma: En Revista: ACS Infect Dis Año: 2020 Tipo del documento: Article