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Structural Basis of Cysteine Ligase MshC Inhibition by Cysteinyl-Sulfonamides

Mycothiol (MSH), the major cellular thiol in Mycobacterium tuberculosis (Mtb), plays an essential role in the resistance of Mtb to various antibiotics and oxidative stresses. MshC catalyzes the ATP-dependent ligation of 1-O-(2-amino-2-deoxy-α-d-glucopyranosyl)-d-myo-inositol (GlcN-Ins) with l-cystei...

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Autores principales: Pang, Luping, Lenders, Stijn, Osipov, Evgenii M., Weeks, Stephen D., Rozenski, Jef, Piller, Tatiana, Cappoen, Davie, Strelkov, Sergei V., Van Aerschot, Arthur
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9736012/
https://www.ncbi.nlm.nih.gov/pubmed/36499418
http://dx.doi.org/10.3390/ijms232315095
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author Pang, Luping
Lenders, Stijn
Osipov, Evgenii M.
Weeks, Stephen D.
Rozenski, Jef
Piller, Tatiana
Cappoen, Davie
Strelkov, Sergei V.
Van Aerschot, Arthur
author_facet Pang, Luping
Lenders, Stijn
Osipov, Evgenii M.
Weeks, Stephen D.
Rozenski, Jef
Piller, Tatiana
Cappoen, Davie
Strelkov, Sergei V.
Van Aerschot, Arthur
author_sort Pang, Luping
collection PubMed
description Mycothiol (MSH), the major cellular thiol in Mycobacterium tuberculosis (Mtb), plays an essential role in the resistance of Mtb to various antibiotics and oxidative stresses. MshC catalyzes the ATP-dependent ligation of 1-O-(2-amino-2-deoxy-α-d-glucopyranosyl)-d-myo-inositol (GlcN-Ins) with l-cysteine (l-Cys) to form l-Cys-GlcN-Ins, the penultimate step in MSH biosynthesis. The inhibition of MshC is lethal to Mtb. In the present study, five new cysteinyl-sulfonamides were synthesized, and their binding affinity with MshC was evaluated using a thermal shift assay. Two of them bind the target with EC(50) values of 219 and 231 µM. Crystal structures of full-length MshC in complex with these two compounds showed that they were bound in the catalytic site of MshC, inducing dramatic conformational changes of the catalytic site compared to the apo form. In particular, the observed closure of the KMSKS loop was not detected in the published cysteinyl-sulfamoyl adenosine-bound structure, the latter likely due to trypsin treatment. Despite the confirmed binding to MshC, the compounds did not suppress Mtb culture growth, which might be explained by the lack of adequate cellular uptake. Taken together, these novel cysteinyl-sulfonamide MshC inhibitors and newly reported full-length apo and ligand-bound MshC structures provide a promising starting point for the further development of novel anti-tubercular drugs targeting MshC.
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spelling pubmed-97360122022-12-11 Structural Basis of Cysteine Ligase MshC Inhibition by Cysteinyl-Sulfonamides Pang, Luping Lenders, Stijn Osipov, Evgenii M. Weeks, Stephen D. Rozenski, Jef Piller, Tatiana Cappoen, Davie Strelkov, Sergei V. Van Aerschot, Arthur Int J Mol Sci Article Mycothiol (MSH), the major cellular thiol in Mycobacterium tuberculosis (Mtb), plays an essential role in the resistance of Mtb to various antibiotics and oxidative stresses. MshC catalyzes the ATP-dependent ligation of 1-O-(2-amino-2-deoxy-α-d-glucopyranosyl)-d-myo-inositol (GlcN-Ins) with l-cysteine (l-Cys) to form l-Cys-GlcN-Ins, the penultimate step in MSH biosynthesis. The inhibition of MshC is lethal to Mtb. In the present study, five new cysteinyl-sulfonamides were synthesized, and their binding affinity with MshC was evaluated using a thermal shift assay. Two of them bind the target with EC(50) values of 219 and 231 µM. Crystal structures of full-length MshC in complex with these two compounds showed that they were bound in the catalytic site of MshC, inducing dramatic conformational changes of the catalytic site compared to the apo form. In particular, the observed closure of the KMSKS loop was not detected in the published cysteinyl-sulfamoyl adenosine-bound structure, the latter likely due to trypsin treatment. Despite the confirmed binding to MshC, the compounds did not suppress Mtb culture growth, which might be explained by the lack of adequate cellular uptake. Taken together, these novel cysteinyl-sulfonamide MshC inhibitors and newly reported full-length apo and ligand-bound MshC structures provide a promising starting point for the further development of novel anti-tubercular drugs targeting MshC. MDPI 2022-12-01 /pmc/articles/PMC9736012/ /pubmed/36499418 http://dx.doi.org/10.3390/ijms232315095 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pang, Luping
Lenders, Stijn
Osipov, Evgenii M.
Weeks, Stephen D.
Rozenski, Jef
Piller, Tatiana
Cappoen, Davie
Strelkov, Sergei V.
Van Aerschot, Arthur
Structural Basis of Cysteine Ligase MshC Inhibition by Cysteinyl-Sulfonamides
title Structural Basis of Cysteine Ligase MshC Inhibition by Cysteinyl-Sulfonamides
title_full Structural Basis of Cysteine Ligase MshC Inhibition by Cysteinyl-Sulfonamides
title_fullStr Structural Basis of Cysteine Ligase MshC Inhibition by Cysteinyl-Sulfonamides
title_full_unstemmed Structural Basis of Cysteine Ligase MshC Inhibition by Cysteinyl-Sulfonamides
title_short Structural Basis of Cysteine Ligase MshC Inhibition by Cysteinyl-Sulfonamides
title_sort structural basis of cysteine ligase mshc inhibition by cysteinyl-sulfonamides
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9736012/
https://www.ncbi.nlm.nih.gov/pubmed/36499418
http://dx.doi.org/10.3390/ijms232315095
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