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Structure-Based Design, Synthesis, and Biological Evaluation of Non-Acyl Sulfamate Inhibitors of the Adenylate-Forming Enzyme MenE

N-Acyl sulfamoyladenosines (acyl-AMS) have been used extensively to inhibit adenylate-forming enzymes that are involved in a wide range of biological processes. These acyl-AMS inhibitors are nonhydrolyzable mimics of the cognate acyl adenylate intermediates that are bound tightly by adenylate-formin...

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Autores principales: Evans, Christopher E., Si, Yuanyuan, Matarlo, Joe S., Yin, Yue, French, Jarrod B., Tonge, Peter J., Tan, Derek S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6653581/
https://www.ncbi.nlm.nih.gov/pubmed/30912442
http://dx.doi.org/10.1021/acs.biochem.9b00003
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author Evans, Christopher E.
Si, Yuanyuan
Matarlo, Joe S.
Yin, Yue
French, Jarrod B.
Tonge, Peter J.
Tan, Derek S.
author_facet Evans, Christopher E.
Si, Yuanyuan
Matarlo, Joe S.
Yin, Yue
French, Jarrod B.
Tonge, Peter J.
Tan, Derek S.
author_sort Evans, Christopher E.
collection PubMed
description N-Acyl sulfamoyladenosines (acyl-AMS) have been used extensively to inhibit adenylate-forming enzymes that are involved in a wide range of biological processes. These acyl-AMS inhibitors are nonhydrolyzable mimics of the cognate acyl adenylate intermediates that are bound tightly by adenylate-forming enzymes. However, the anionic acyl sulfamate moiety presents a pharmacological liability that may be detrimental to cell permeability and pharmacokinetic profiles. We have previously developed the acyl sulfamate OSB-AMS (1) as a potent inhibitor of the adenylate-forming enzyme MenE, an o-succinylbenzoate-CoA (OSB-CoA) synthetase that is required for bacterial menaquinone biosynthesis. Herein, we report the use of computational docking to develop novel, non-acyl sulfamate inhibitors of MenE. A m-phenyl ether-linked analogue (5) was found to be the most potent inhibitor (IC(50) = 8 μM; K(d) = 244 nM), and its X-ray co-crystal structure was determined to characterize its binding mode in comparison to the computational prediction. This work provides a framework for the development of potent non-acyl sulfamate inhibitors of other adenylate-forming enzymes in the future.
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spelling pubmed-66535812019-07-24 Structure-Based Design, Synthesis, and Biological Evaluation of Non-Acyl Sulfamate Inhibitors of the Adenylate-Forming Enzyme MenE Evans, Christopher E. Si, Yuanyuan Matarlo, Joe S. Yin, Yue French, Jarrod B. Tonge, Peter J. Tan, Derek S. Biochemistry Article N-Acyl sulfamoyladenosines (acyl-AMS) have been used extensively to inhibit adenylate-forming enzymes that are involved in a wide range of biological processes. These acyl-AMS inhibitors are nonhydrolyzable mimics of the cognate acyl adenylate intermediates that are bound tightly by adenylate-forming enzymes. However, the anionic acyl sulfamate moiety presents a pharmacological liability that may be detrimental to cell permeability and pharmacokinetic profiles. We have previously developed the acyl sulfamate OSB-AMS (1) as a potent inhibitor of the adenylate-forming enzyme MenE, an o-succinylbenzoate-CoA (OSB-CoA) synthetase that is required for bacterial menaquinone biosynthesis. Herein, we report the use of computational docking to develop novel, non-acyl sulfamate inhibitors of MenE. A m-phenyl ether-linked analogue (5) was found to be the most potent inhibitor (IC(50) = 8 μM; K(d) = 244 nM), and its X-ray co-crystal structure was determined to characterize its binding mode in comparison to the computational prediction. This work provides a framework for the development of potent non-acyl sulfamate inhibitors of other adenylate-forming enzymes in the future. 2019-03-26 2019-04-09 /pmc/articles/PMC6653581/ /pubmed/30912442 http://dx.doi.org/10.1021/acs.biochem.9b00003 Text en http://creativecommons.org/licenses/by-nc/4.0/ This is an open access article published under an ACS AuthorChoice License, which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Article
Evans, Christopher E.
Si, Yuanyuan
Matarlo, Joe S.
Yin, Yue
French, Jarrod B.
Tonge, Peter J.
Tan, Derek S.
Structure-Based Design, Synthesis, and Biological Evaluation of Non-Acyl Sulfamate Inhibitors of the Adenylate-Forming Enzyme MenE
title Structure-Based Design, Synthesis, and Biological Evaluation of Non-Acyl Sulfamate Inhibitors of the Adenylate-Forming Enzyme MenE
title_full Structure-Based Design, Synthesis, and Biological Evaluation of Non-Acyl Sulfamate Inhibitors of the Adenylate-Forming Enzyme MenE
title_fullStr Structure-Based Design, Synthesis, and Biological Evaluation of Non-Acyl Sulfamate Inhibitors of the Adenylate-Forming Enzyme MenE
title_full_unstemmed Structure-Based Design, Synthesis, and Biological Evaluation of Non-Acyl Sulfamate Inhibitors of the Adenylate-Forming Enzyme MenE
title_short Structure-Based Design, Synthesis, and Biological Evaluation of Non-Acyl Sulfamate Inhibitors of the Adenylate-Forming Enzyme MenE
title_sort structure-based design, synthesis, and biological evaluation of non-acyl sulfamate inhibitors of the adenylate-forming enzyme mene
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6653581/
https://www.ncbi.nlm.nih.gov/pubmed/30912442
http://dx.doi.org/10.1021/acs.biochem.9b00003
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