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Crystal Structure of a Novel N-Substituted L-Amino Acid Dioxygenase from Burkholderia ambifaria AMMD

A novel dioxygenase from Burkholderia ambifaria AMMD (SadA) stereoselectively catalyzes the C3-hydroxylation of N-substituted branched-chain or aromatic L-amino acids, especially N-succinyl-L-leucine, coupled with the conversion of α-ketoglutarate to succinate and CO(2). To elucidate the structural...

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Autores principales: Qin, Hui-Min, Miyakawa, Takuya, Jia, Min Ze, Nakamura, Akira, Ohtsuka, Jun, Xue, You-Lin, Kawashima, Takashi, Kasahara, Takuya, Hibi, Makoto, Ogawa, Jun, Tanokura, Masaru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3665795/
https://www.ncbi.nlm.nih.gov/pubmed/23724013
http://dx.doi.org/10.1371/journal.pone.0063996
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author Qin, Hui-Min
Miyakawa, Takuya
Jia, Min Ze
Nakamura, Akira
Ohtsuka, Jun
Xue, You-Lin
Kawashima, Takashi
Kasahara, Takuya
Hibi, Makoto
Ogawa, Jun
Tanokura, Masaru
author_facet Qin, Hui-Min
Miyakawa, Takuya
Jia, Min Ze
Nakamura, Akira
Ohtsuka, Jun
Xue, You-Lin
Kawashima, Takashi
Kasahara, Takuya
Hibi, Makoto
Ogawa, Jun
Tanokura, Masaru
author_sort Qin, Hui-Min
collection PubMed
description A novel dioxygenase from Burkholderia ambifaria AMMD (SadA) stereoselectively catalyzes the C3-hydroxylation of N-substituted branched-chain or aromatic L-amino acids, especially N-succinyl-L-leucine, coupled with the conversion of α-ketoglutarate to succinate and CO(2). To elucidate the structural basis of the substrate specificity and stereoselective hydroxylation, we determined the crystal structures of the SadA.Zn(II) and SadA.Zn(II).α-KG complexes at 1.77 Å and 1.98 Å resolutions, respectively. SadA adopted a double-stranded β-helix fold at the core of the structure. In addition, an HXD/EX(n)H motif in the active site coordinated a Zn(II) as a substitute for Fe(II). The α-KG molecule also coordinated Zn(II) in a bidentate manner via its 1-carboxylate and 2-oxo groups. Based on the SadA.Zn(II).α-KG structure and mutation analyses, we constructed substrate-binding models with N-succinyl-L-leucine and N-succinyl-L-phenylalanine, which provided new insight into the substrate specificity. The results will be useful for the rational design of SadA variants aimed at the recognition of various N-succinyl L-amino acids.
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spelling pubmed-36657952013-05-30 Crystal Structure of a Novel N-Substituted L-Amino Acid Dioxygenase from Burkholderia ambifaria AMMD Qin, Hui-Min Miyakawa, Takuya Jia, Min Ze Nakamura, Akira Ohtsuka, Jun Xue, You-Lin Kawashima, Takashi Kasahara, Takuya Hibi, Makoto Ogawa, Jun Tanokura, Masaru PLoS One Research Article A novel dioxygenase from Burkholderia ambifaria AMMD (SadA) stereoselectively catalyzes the C3-hydroxylation of N-substituted branched-chain or aromatic L-amino acids, especially N-succinyl-L-leucine, coupled with the conversion of α-ketoglutarate to succinate and CO(2). To elucidate the structural basis of the substrate specificity and stereoselective hydroxylation, we determined the crystal structures of the SadA.Zn(II) and SadA.Zn(II).α-KG complexes at 1.77 Å and 1.98 Å resolutions, respectively. SadA adopted a double-stranded β-helix fold at the core of the structure. In addition, an HXD/EX(n)H motif in the active site coordinated a Zn(II) as a substitute for Fe(II). The α-KG molecule also coordinated Zn(II) in a bidentate manner via its 1-carboxylate and 2-oxo groups. Based on the SadA.Zn(II).α-KG structure and mutation analyses, we constructed substrate-binding models with N-succinyl-L-leucine and N-succinyl-L-phenylalanine, which provided new insight into the substrate specificity. The results will be useful for the rational design of SadA variants aimed at the recognition of various N-succinyl L-amino acids. Public Library of Science 2013-05-28 /pmc/articles/PMC3665795/ /pubmed/23724013 http://dx.doi.org/10.1371/journal.pone.0063996 Text en © 2013 Qin et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Qin, Hui-Min
Miyakawa, Takuya
Jia, Min Ze
Nakamura, Akira
Ohtsuka, Jun
Xue, You-Lin
Kawashima, Takashi
Kasahara, Takuya
Hibi, Makoto
Ogawa, Jun
Tanokura, Masaru
Crystal Structure of a Novel N-Substituted L-Amino Acid Dioxygenase from Burkholderia ambifaria AMMD
title Crystal Structure of a Novel N-Substituted L-Amino Acid Dioxygenase from Burkholderia ambifaria AMMD
title_full Crystal Structure of a Novel N-Substituted L-Amino Acid Dioxygenase from Burkholderia ambifaria AMMD
title_fullStr Crystal Structure of a Novel N-Substituted L-Amino Acid Dioxygenase from Burkholderia ambifaria AMMD
title_full_unstemmed Crystal Structure of a Novel N-Substituted L-Amino Acid Dioxygenase from Burkholderia ambifaria AMMD
title_short Crystal Structure of a Novel N-Substituted L-Amino Acid Dioxygenase from Burkholderia ambifaria AMMD
title_sort crystal structure of a novel n-substituted l-amino acid dioxygenase from burkholderia ambifaria ammd
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3665795/
https://www.ncbi.nlm.nih.gov/pubmed/23724013
http://dx.doi.org/10.1371/journal.pone.0063996
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