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Structural Basis for the Activity and Substrate Specificity of Fluoroacetyl-CoA Thioesterase FlK

The thioesterase FlK from the fluoroacetate-producing Streptomyces cattleya catalyzes the hydrolysis of fluoroacetyl-coenzyme A. This provides an effective self-defense mechanism, preventing any fluoroacetyl-coenzyme A formed from being further metabolized to 4-hydroxy-trans-aconitate, a lethal inhi...

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Autores principales: Dias, Marcio V. B., Huang, Fanglu, Chirgadze, Dimitri Y., Tosin, Manuela, Spiteller, Dieter, Dry, Emily F. V., Leadlay, Peter F., Spencer, Jonathan B., Blundell, Tom L.
Formato: Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2903362/
https://www.ncbi.nlm.nih.gov/pubmed/20430898
http://dx.doi.org/10.1074/jbc.M110.107177
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author Dias, Marcio V. B.
Huang, Fanglu
Chirgadze, Dimitri Y.
Tosin, Manuela
Spiteller, Dieter
Dry, Emily F. V.
Leadlay, Peter F.
Spencer, Jonathan B.
Blundell, Tom L.
author_facet Dias, Marcio V. B.
Huang, Fanglu
Chirgadze, Dimitri Y.
Tosin, Manuela
Spiteller, Dieter
Dry, Emily F. V.
Leadlay, Peter F.
Spencer, Jonathan B.
Blundell, Tom L.
author_sort Dias, Marcio V. B.
collection PubMed
description The thioesterase FlK from the fluoroacetate-producing Streptomyces cattleya catalyzes the hydrolysis of fluoroacetyl-coenzyme A. This provides an effective self-defense mechanism, preventing any fluoroacetyl-coenzyme A formed from being further metabolized to 4-hydroxy-trans-aconitate, a lethal inhibitor of the tricarboxylic acid cycle. Remarkably, FlK does not accept acetyl-coenzyme A as a substrate. Crystal structure analysis shows that FlK forms a dimer, in which each subunit adopts a hot dog fold as observed for type II thioesterases. Unlike other type II thioesterases, which invariably utilize either an aspartate or a glutamate as catalytic base, we show by site-directed mutagenesis and crystallography that FlK employs a catalytic triad composed of Thr(42), His(76), and a water molecule, analogous to the Ser/Cys-His-acid triad of type I thioesterases. Structural comparison of FlK complexed with various substrate analogues suggests that the interaction between the fluorine of the substrate and the side chain of Arg(120) located opposite to the catalytic triad is essential for correct coordination of the substrate at the active site and therefore accounts for the substrate specificity.
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spelling pubmed-29033622010-07-21 Structural Basis for the Activity and Substrate Specificity of Fluoroacetyl-CoA Thioesterase FlK Dias, Marcio V. B. Huang, Fanglu Chirgadze, Dimitri Y. Tosin, Manuela Spiteller, Dieter Dry, Emily F. V. Leadlay, Peter F. Spencer, Jonathan B. Blundell, Tom L. J Biol Chem Protein Structure and Folding The thioesterase FlK from the fluoroacetate-producing Streptomyces cattleya catalyzes the hydrolysis of fluoroacetyl-coenzyme A. This provides an effective self-defense mechanism, preventing any fluoroacetyl-coenzyme A formed from being further metabolized to 4-hydroxy-trans-aconitate, a lethal inhibitor of the tricarboxylic acid cycle. Remarkably, FlK does not accept acetyl-coenzyme A as a substrate. Crystal structure analysis shows that FlK forms a dimer, in which each subunit adopts a hot dog fold as observed for type II thioesterases. Unlike other type II thioesterases, which invariably utilize either an aspartate or a glutamate as catalytic base, we show by site-directed mutagenesis and crystallography that FlK employs a catalytic triad composed of Thr(42), His(76), and a water molecule, analogous to the Ser/Cys-His-acid triad of type I thioesterases. Structural comparison of FlK complexed with various substrate analogues suggests that the interaction between the fluorine of the substrate and the side chain of Arg(120) located opposite to the catalytic triad is essential for correct coordination of the substrate at the active site and therefore accounts for the substrate specificity. American Society for Biochemistry and Molecular Biology 2010-07-16 2010-04-29 /pmc/articles/PMC2903362/ /pubmed/20430898 http://dx.doi.org/10.1074/jbc.M110.107177 Text en © 2010 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Protein Structure and Folding
Dias, Marcio V. B.
Huang, Fanglu
Chirgadze, Dimitri Y.
Tosin, Manuela
Spiteller, Dieter
Dry, Emily F. V.
Leadlay, Peter F.
Spencer, Jonathan B.
Blundell, Tom L.
Structural Basis for the Activity and Substrate Specificity of Fluoroacetyl-CoA Thioesterase FlK
title Structural Basis for the Activity and Substrate Specificity of Fluoroacetyl-CoA Thioesterase FlK
title_full Structural Basis for the Activity and Substrate Specificity of Fluoroacetyl-CoA Thioesterase FlK
title_fullStr Structural Basis for the Activity and Substrate Specificity of Fluoroacetyl-CoA Thioesterase FlK
title_full_unstemmed Structural Basis for the Activity and Substrate Specificity of Fluoroacetyl-CoA Thioesterase FlK
title_short Structural Basis for the Activity and Substrate Specificity of Fluoroacetyl-CoA Thioesterase FlK
title_sort structural basis for the activity and substrate specificity of fluoroacetyl-coa thioesterase flk
topic Protein Structure and Folding
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2903362/
https://www.ncbi.nlm.nih.gov/pubmed/20430898
http://dx.doi.org/10.1074/jbc.M110.107177
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