Proton transfer activity of the reconstituted <i>Mycobacterium tuberculosis</i> MmpL3 is modulated by substrate mimics and inhibitors.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 35858440.
- Also identified by DOI 10.1073/pnas.2113963119 and PMC identifier 9335285.
- Licence recorded as CC BY-NC-ND.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
Transporters belonging to the Resistance-Nodulation-cell Division (RND) superfamily of proteins such as <i>Mycobacterium tuberculosis</i> MmpL3 and its analogs are the focus of intense investigations due to their importance in the physiology of <i>Corynebacterium-Mycobacterium-Nocardia</i> species and antimycobacterial drug discovery. These transporters deliver trehalose monomycolates, the precursors of major lipids of the outer membrane, to the periplasm by a proton motive force-dependent mechanism. In this study, we successfully purified, from native membranes, the full-length and the C-terminal truncated <i>M. tuberculosis</i> MmpL3 and <i>Corynebacterium glutamicum</i> CmpL1 proteins and reconstituted them into proteoliposomes. We also generated a series of substrate mimics and inhibitors specific to these transporters, analyzed their activities in the reconstituted proteoliposomes, and carried out molecular dynamics simulations of the model MmpL3 transporter at different pH. We found that all reconstituted proteins facilitate proton translocation across a phospholipid bilayer, but MmpL3 and CmpL1 differ dramatically in their responses to pH and interactions with substrate mimics and indole-2-carboxamide inhibitors. Our results further suggest that some inhibitors abolish the transport activity of MmpL3 and CmpL1 by inhibition of proton translocation.
Medical subject headings
- Bacterial Proteins
- Membrane Transport Proteins