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Cyclobutanone Inhibitor of Cobalt-Functionalized Metallo-γ-Lactonase AiiA with Cyclobutanone Ring Opening in the Active Site

[Image: see text] An α-amido cyclobutanone possessing a C10 hydrocarbon tail was designed as a potential transition-state mimetic for the quorum-quenching metallo-γ-lactonase autoinducer inactivator A (AiiA) with the support of in-house modeling techniques and found to be a competitive inhibitor of...

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Autores principales: Reidl, Cory T., Mascarenhas, Romila, Mohammad, Thahani S. Habeeb, Lutz, Marlon R., Thomas, Pei W., Fast, Walter, Liu, Dali, Becker, Daniel P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8173579/
https://www.ncbi.nlm.nih.gov/pubmed/34095651
http://dx.doi.org/10.1021/acsomega.0c06348
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author Reidl, Cory T.
Mascarenhas, Romila
Mohammad, Thahani S. Habeeb
Lutz, Marlon R.
Thomas, Pei W.
Fast, Walter
Liu, Dali
Becker, Daniel P.
author_facet Reidl, Cory T.
Mascarenhas, Romila
Mohammad, Thahani S. Habeeb
Lutz, Marlon R.
Thomas, Pei W.
Fast, Walter
Liu, Dali
Becker, Daniel P.
author_sort Reidl, Cory T.
collection PubMed
description [Image: see text] An α-amido cyclobutanone possessing a C10 hydrocarbon tail was designed as a potential transition-state mimetic for the quorum-quenching metallo-γ-lactonase autoinducer inactivator A (AiiA) with the support of in-house modeling techniques and found to be a competitive inhibitor of dicobalt(II) AiiA with an inhibition constant of K(i) = 0.007 ± 0.002 mM. The catalytic mechanism of AiiA was further explored using our product-based transition-state modeling (PBTSM) computational approach, providing substrate-intermediate models arising during enzyme turnover and further insight into substrate–enzyme interactions governing native substrate catalysis. These interactions were targeted in the docking of cyclobutanone hydrates into the active site of AiiA. The X-ray crystal structure of dicobalt(II) AiiA cocrystallized with this cyclobutanone inhibitor unexpectedly revealed an N-(2-oxocyclobutyl)decanamide ring-opened acyclic product bound to the enzyme active site (PDB 7L5F). The C10 alkyl chain and its interaction with the hydrophobic phenylalanine clamp region of AiiA adjacent to the active site enabled atomic placement of the ligand atoms, including the C10 alkyl chain. A mechanistic hypothesis for the ring opening is proposed involving a radical-mediated process.
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spelling pubmed-81735792021-06-04 Cyclobutanone Inhibitor of Cobalt-Functionalized Metallo-γ-Lactonase AiiA with Cyclobutanone Ring Opening in the Active Site Reidl, Cory T. Mascarenhas, Romila Mohammad, Thahani S. Habeeb Lutz, Marlon R. Thomas, Pei W. Fast, Walter Liu, Dali Becker, Daniel P. ACS Omega [Image: see text] An α-amido cyclobutanone possessing a C10 hydrocarbon tail was designed as a potential transition-state mimetic for the quorum-quenching metallo-γ-lactonase autoinducer inactivator A (AiiA) with the support of in-house modeling techniques and found to be a competitive inhibitor of dicobalt(II) AiiA with an inhibition constant of K(i) = 0.007 ± 0.002 mM. The catalytic mechanism of AiiA was further explored using our product-based transition-state modeling (PBTSM) computational approach, providing substrate-intermediate models arising during enzyme turnover and further insight into substrate–enzyme interactions governing native substrate catalysis. These interactions were targeted in the docking of cyclobutanone hydrates into the active site of AiiA. The X-ray crystal structure of dicobalt(II) AiiA cocrystallized with this cyclobutanone inhibitor unexpectedly revealed an N-(2-oxocyclobutyl)decanamide ring-opened acyclic product bound to the enzyme active site (PDB 7L5F). The C10 alkyl chain and its interaction with the hydrophobic phenylalanine clamp region of AiiA adjacent to the active site enabled atomic placement of the ligand atoms, including the C10 alkyl chain. A mechanistic hypothesis for the ring opening is proposed involving a radical-mediated process. American Chemical Society 2021-05-17 /pmc/articles/PMC8173579/ /pubmed/34095651 http://dx.doi.org/10.1021/acsomega.0c06348 Text en © 2021 The Authors. Published by American Chemical Society Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Reidl, Cory T.
Mascarenhas, Romila
Mohammad, Thahani S. Habeeb
Lutz, Marlon R.
Thomas, Pei W.
Fast, Walter
Liu, Dali
Becker, Daniel P.
Cyclobutanone Inhibitor of Cobalt-Functionalized Metallo-γ-Lactonase AiiA with Cyclobutanone Ring Opening in the Active Site
title Cyclobutanone Inhibitor of Cobalt-Functionalized Metallo-γ-Lactonase AiiA with Cyclobutanone Ring Opening in the Active Site
title_full Cyclobutanone Inhibitor of Cobalt-Functionalized Metallo-γ-Lactonase AiiA with Cyclobutanone Ring Opening in the Active Site
title_fullStr Cyclobutanone Inhibitor of Cobalt-Functionalized Metallo-γ-Lactonase AiiA with Cyclobutanone Ring Opening in the Active Site
title_full_unstemmed Cyclobutanone Inhibitor of Cobalt-Functionalized Metallo-γ-Lactonase AiiA with Cyclobutanone Ring Opening in the Active Site
title_short Cyclobutanone Inhibitor of Cobalt-Functionalized Metallo-γ-Lactonase AiiA with Cyclobutanone Ring Opening in the Active Site
title_sort cyclobutanone inhibitor of cobalt-functionalized metallo-γ-lactonase aiia with cyclobutanone ring opening in the active site
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8173579/
https://www.ncbi.nlm.nih.gov/pubmed/34095651
http://dx.doi.org/10.1021/acsomega.0c06348
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