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Aldehyde oxidase carrying an unusual subunit structure from Pseudomonas sp. MX‐058

Pseudomonas sp. MX‐058 produces aldehyde oxidase catalysing glyoxal to glyoxylic acid. Two aldehyde oxidases (F10 and F13) were purified to homogeneity from Pseudomonas sp. MX‐058. F10 and F13 had subunit structures, a heterotetramer and heteropentamer respectively. The N‐terminal amino acid sequenc...

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Autores principales: Thiwthong, Rungruedee, Kataoka, Michihiko, Iwasaki, Akira, Watanabe, Hiroshi, Hasegawa, Junzo, Isobe, Kimiyasu, Shimizu, Sakayu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3815246/
https://www.ncbi.nlm.nih.gov/pubmed/21261859
http://dx.doi.org/10.1111/j.1751-7915.2008.00038.x
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author Thiwthong, Rungruedee
Kataoka, Michihiko
Iwasaki, Akira
Watanabe, Hiroshi
Hasegawa, Junzo
Isobe, Kimiyasu
Shimizu, Sakayu
author_facet Thiwthong, Rungruedee
Kataoka, Michihiko
Iwasaki, Akira
Watanabe, Hiroshi
Hasegawa, Junzo
Isobe, Kimiyasu
Shimizu, Sakayu
author_sort Thiwthong, Rungruedee
collection PubMed
description Pseudomonas sp. MX‐058 produces aldehyde oxidase catalysing glyoxal to glyoxylic acid. Two aldehyde oxidases (F10 and F13) were purified to homogeneity from Pseudomonas sp. MX‐058. F10 and F13 had subunit structures, a heterotetramer and heteropentamer respectively. The N‐terminal amino acid sequences of all subunits were highly homologous to amino acid sequences of the putative oxidoreductases of Pseudomonas strains. All of these homologous oxidoreductases have a heterotrimer structure consisting of 85‐88 (α), 37‐39 (β) and 18‐23 (γ) kDa subunits. However, the α‐subunits of F10 and F13 might have decomposed into two [80 (α(1)) and 9 kDa (α(2))] and three [58 (α(1′)), 22 (α(1″)) and 9 (α(2)) kDa] subunits, respectively, while the β‐ and γ‐subunits remained intact. Both F10 and F13 show high activity toward several aliphatic and aromatic aldehydes. The aldehyde oxidases of Pseudomonas sp. MX‐058 has unique protein structures, α(1)α(2)βγ for F10 and α(1′)α(1″)α(2)βγ for F13, a heterotetramer and heteropentamer respectively. The enzymes exhibit significantly low activity toward glyoxylic acid compared with glyoxal, which is an advantageous property for glyoxylic acid production from glyoxal.
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spelling pubmed-38152462014-02-12 Aldehyde oxidase carrying an unusual subunit structure from Pseudomonas sp. MX‐058 Thiwthong, Rungruedee Kataoka, Michihiko Iwasaki, Akira Watanabe, Hiroshi Hasegawa, Junzo Isobe, Kimiyasu Shimizu, Sakayu Microb Biotechnol Research Articles Pseudomonas sp. MX‐058 produces aldehyde oxidase catalysing glyoxal to glyoxylic acid. Two aldehyde oxidases (F10 and F13) were purified to homogeneity from Pseudomonas sp. MX‐058. F10 and F13 had subunit structures, a heterotetramer and heteropentamer respectively. The N‐terminal amino acid sequences of all subunits were highly homologous to amino acid sequences of the putative oxidoreductases of Pseudomonas strains. All of these homologous oxidoreductases have a heterotrimer structure consisting of 85‐88 (α), 37‐39 (β) and 18‐23 (γ) kDa subunits. However, the α‐subunits of F10 and F13 might have decomposed into two [80 (α(1)) and 9 kDa (α(2))] and three [58 (α(1′)), 22 (α(1″)) and 9 (α(2)) kDa] subunits, respectively, while the β‐ and γ‐subunits remained intact. Both F10 and F13 show high activity toward several aliphatic and aromatic aldehydes. The aldehyde oxidases of Pseudomonas sp. MX‐058 has unique protein structures, α(1)α(2)βγ for F10 and α(1′)α(1″)α(2)βγ for F13, a heterotetramer and heteropentamer respectively. The enzymes exhibit significantly low activity toward glyoxylic acid compared with glyoxal, which is an advantageous property for glyoxylic acid production from glyoxal. Blackwell Publishing Ltd 2008-09 2008-08-18 /pmc/articles/PMC3815246/ /pubmed/21261859 http://dx.doi.org/10.1111/j.1751-7915.2008.00038.x Text en Copyright © 2008 The Authors. Journal compilation © 2008 Society for Applied Microbiology and Blackwell Publishing Ltd
spellingShingle Research Articles
Thiwthong, Rungruedee
Kataoka, Michihiko
Iwasaki, Akira
Watanabe, Hiroshi
Hasegawa, Junzo
Isobe, Kimiyasu
Shimizu, Sakayu
Aldehyde oxidase carrying an unusual subunit structure from Pseudomonas sp. MX‐058
title Aldehyde oxidase carrying an unusual subunit structure from Pseudomonas sp. MX‐058
title_full Aldehyde oxidase carrying an unusual subunit structure from Pseudomonas sp. MX‐058
title_fullStr Aldehyde oxidase carrying an unusual subunit structure from Pseudomonas sp. MX‐058
title_full_unstemmed Aldehyde oxidase carrying an unusual subunit structure from Pseudomonas sp. MX‐058
title_short Aldehyde oxidase carrying an unusual subunit structure from Pseudomonas sp. MX‐058
title_sort aldehyde oxidase carrying an unusual subunit structure from pseudomonas sp. mx‐058
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3815246/
https://www.ncbi.nlm.nih.gov/pubmed/21261859
http://dx.doi.org/10.1111/j.1751-7915.2008.00038.x
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