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Substrate Distortion and the Catalytic Reaction Mechanism of 5-Carboxyvanillate Decarboxylase

[Image: see text] 5-Carboxyvanillate decarboxylase (LigW) catalyzes the conversion of 5-carboxyvanillate to vanillate in the biochemical pathway for the degradation of lignin. This enzyme was shown to require Mn(2+) for catalytic activity and the kinetic constants for the decarboxylation of 5-carbox...

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Autores principales: Vladimirova, Anna, Patskovsky, Yury, Fedorov, Alexander A., Bonanno, Jeffrey B., Fedorov, Elena V., Toro, Rafael, Hillerich, Brandan, Seidel, Ronald D., Richards, Nigel G. J., Almo, Steven C., Raushel, Frank M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2015
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4732527/
https://www.ncbi.nlm.nih.gov/pubmed/26714575
http://dx.doi.org/10.1021/jacs.5b08251
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author Vladimirova, Anna
Patskovsky, Yury
Fedorov, Alexander A.
Bonanno, Jeffrey B.
Fedorov, Elena V.
Toro, Rafael
Hillerich, Brandan
Seidel, Ronald D.
Richards, Nigel G. J.
Almo, Steven C.
Raushel, Frank M.
author_facet Vladimirova, Anna
Patskovsky, Yury
Fedorov, Alexander A.
Bonanno, Jeffrey B.
Fedorov, Elena V.
Toro, Rafael
Hillerich, Brandan
Seidel, Ronald D.
Richards, Nigel G. J.
Almo, Steven C.
Raushel, Frank M.
author_sort Vladimirova, Anna
collection PubMed
description [Image: see text] 5-Carboxyvanillate decarboxylase (LigW) catalyzes the conversion of 5-carboxyvanillate to vanillate in the biochemical pathway for the degradation of lignin. This enzyme was shown to require Mn(2+) for catalytic activity and the kinetic constants for the decarboxylation of 5-carboxyvanillate by the enzymes from Sphingomonas paucimobilis SYK-6 (k(cat) = 2.2 s(–1) and k(cat)/K(m) = 4.0 × 10(4) M(–1) s(–1)) and Novosphingobium aromaticivorans (k(cat) = 27 s(–1) and k(cat)/K(m) = 1.1 × 10(5) M(–1) s(–1)) were determined. The three-dimensional structures of both enzymes were determined in the presence and absence of ligands bound in the active site. The structure of LigW from N. aromaticivorans, bound with the substrate analogue, 5-nitrovanillate (K(d) = 5.0 nM), was determined to a resolution of 1.07 Å. The structure of this complex shows a remarkable enzyme-induced distortion of the nitro-substituent out of the plane of the phenyl ring by approximately 23°. A chemical reaction mechanism for the decarboxylation of 5-carboxyvanillate by LigW was proposed on the basis of the high resolution X-ray structures determined in the presence ligands bound in the active site, mutation of active site residues, and the magnitude of the product isotope effect determined in a mixture of H(2)O and D(2)O. In the proposed reaction mechanism the enzyme facilitates the transfer of a proton to C5 of the substrate prior to the decarboxylation step.
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spelling pubmed-47325272016-12-30 Substrate Distortion and the Catalytic Reaction Mechanism of 5-Carboxyvanillate Decarboxylase Vladimirova, Anna Patskovsky, Yury Fedorov, Alexander A. Bonanno, Jeffrey B. Fedorov, Elena V. Toro, Rafael Hillerich, Brandan Seidel, Ronald D. Richards, Nigel G. J. Almo, Steven C. Raushel, Frank M. J Am Chem Soc [Image: see text] 5-Carboxyvanillate decarboxylase (LigW) catalyzes the conversion of 5-carboxyvanillate to vanillate in the biochemical pathway for the degradation of lignin. This enzyme was shown to require Mn(2+) for catalytic activity and the kinetic constants for the decarboxylation of 5-carboxyvanillate by the enzymes from Sphingomonas paucimobilis SYK-6 (k(cat) = 2.2 s(–1) and k(cat)/K(m) = 4.0 × 10(4) M(–1) s(–1)) and Novosphingobium aromaticivorans (k(cat) = 27 s(–1) and k(cat)/K(m) = 1.1 × 10(5) M(–1) s(–1)) were determined. The three-dimensional structures of both enzymes were determined in the presence and absence of ligands bound in the active site. The structure of LigW from N. aromaticivorans, bound with the substrate analogue, 5-nitrovanillate (K(d) = 5.0 nM), was determined to a resolution of 1.07 Å. The structure of this complex shows a remarkable enzyme-induced distortion of the nitro-substituent out of the plane of the phenyl ring by approximately 23°. A chemical reaction mechanism for the decarboxylation of 5-carboxyvanillate by LigW was proposed on the basis of the high resolution X-ray structures determined in the presence ligands bound in the active site, mutation of active site residues, and the magnitude of the product isotope effect determined in a mixture of H(2)O and D(2)O. In the proposed reaction mechanism the enzyme facilitates the transfer of a proton to C5 of the substrate prior to the decarboxylation step. American Chemical Society 2015-12-30 2016-01-27 /pmc/articles/PMC4732527/ /pubmed/26714575 http://dx.doi.org/10.1021/jacs.5b08251 Text en Copyright © 2015 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Vladimirova, Anna
Patskovsky, Yury
Fedorov, Alexander A.
Bonanno, Jeffrey B.
Fedorov, Elena V.
Toro, Rafael
Hillerich, Brandan
Seidel, Ronald D.
Richards, Nigel G. J.
Almo, Steven C.
Raushel, Frank M.
Substrate Distortion and the Catalytic Reaction Mechanism of 5-Carboxyvanillate Decarboxylase
title Substrate Distortion and the Catalytic Reaction Mechanism of 5-Carboxyvanillate Decarboxylase
title_full Substrate Distortion and the Catalytic Reaction Mechanism of 5-Carboxyvanillate Decarboxylase
title_fullStr Substrate Distortion and the Catalytic Reaction Mechanism of 5-Carboxyvanillate Decarboxylase
title_full_unstemmed Substrate Distortion and the Catalytic Reaction Mechanism of 5-Carboxyvanillate Decarboxylase
title_short Substrate Distortion and the Catalytic Reaction Mechanism of 5-Carboxyvanillate Decarboxylase
title_sort substrate distortion and the catalytic reaction mechanism of 5-carboxyvanillate decarboxylase
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4732527/
https://www.ncbi.nlm.nih.gov/pubmed/26714575
http://dx.doi.org/10.1021/jacs.5b08251
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