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A novel l-isoleucine-4′-dioxygenase and l-isoleucine dihydroxylation cascade in Pantoea ananatis

A unique operon structure has been identified in the genomes of several plant- and insect-associated bacteria. The distinguishing feature of this operon is the presence of tandem hilA and hilB genes encoding dioxygenases belonging to the PF13640 and PF10014 (BsmA) Pfam families, respectively. The ge...

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Autores principales: Smirnov, Sergey V, Sokolov, Pavel M, Kotlyarova, Veronika A, Samsonova, Natalya N, Kodera, Tomohiro, Sugiyama, Masakazu, Torii, Takayoshi, Hibi, Makoto, Shimizu, Sakayu, Yokozeki, Kenzo, Ogawa, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3684760/
https://www.ncbi.nlm.nih.gov/pubmed/23554367
http://dx.doi.org/10.1002/mbo3.87
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author Smirnov, Sergey V
Sokolov, Pavel M
Kotlyarova, Veronika A
Samsonova, Natalya N
Kodera, Tomohiro
Sugiyama, Masakazu
Torii, Takayoshi
Hibi, Makoto
Shimizu, Sakayu
Yokozeki, Kenzo
Ogawa, Jun
author_facet Smirnov, Sergey V
Sokolov, Pavel M
Kotlyarova, Veronika A
Samsonova, Natalya N
Kodera, Tomohiro
Sugiyama, Masakazu
Torii, Takayoshi
Hibi, Makoto
Shimizu, Sakayu
Yokozeki, Kenzo
Ogawa, Jun
author_sort Smirnov, Sergey V
collection PubMed
description A unique operon structure has been identified in the genomes of several plant- and insect-associated bacteria. The distinguishing feature of this operon is the presence of tandem hilA and hilB genes encoding dioxygenases belonging to the PF13640 and PF10014 (BsmA) Pfam families, respectively. The genes encoding HilA and HilB from Pantoea ananatis AJ13355 were cloned and expressed in Escherichia coli. The culturing of E. coli cells expressing hilA (E. coli-HilA) or both hilA and hilB (E. coli-HilAB) in the presence of l-isoleucine resulted in the conversion of l-isoleucine into two novel biogenic compounds: l-4′-isoleucine and l-4,4′-dihydroxyisoleucine, respectively. In parallel, two novel enzymatic activities were detected in the crude cell lysates of the E. coli-HilA and E. coli-HilAB strains: l-isoleucine, 2-oxoglutarate: oxygen oxidoreductase (4′-hydroxylating) (HilA) and l-4′-hydroxyisoleucine, 2-oxoglutarate: oxygen oxidoreductase (4-hydroxylating) (HilB), respectively. Two hypotheses regarding the physiological significance of C-4(4′)-hydroxylation of l-isoleucine in bacteria are also discussed. According to first hypothesis, the l-isoleucine dihydroxylation cascade is involved in synthesis of dipeptide antibiotic in P. ananatis. Another unifying hypothesis is that the C-4(4′)-hydroxylation of l-isoleucine in bacteria could result in the synthesis of signal molecules belonging to two classes: 2(5H)-furanones and analogs of N-acyl homoserine lactone.
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spelling pubmed-36847602013-06-20 A novel l-isoleucine-4′-dioxygenase and l-isoleucine dihydroxylation cascade in Pantoea ananatis Smirnov, Sergey V Sokolov, Pavel M Kotlyarova, Veronika A Samsonova, Natalya N Kodera, Tomohiro Sugiyama, Masakazu Torii, Takayoshi Hibi, Makoto Shimizu, Sakayu Yokozeki, Kenzo Ogawa, Jun Microbiologyopen Original Research A unique operon structure has been identified in the genomes of several plant- and insect-associated bacteria. The distinguishing feature of this operon is the presence of tandem hilA and hilB genes encoding dioxygenases belonging to the PF13640 and PF10014 (BsmA) Pfam families, respectively. The genes encoding HilA and HilB from Pantoea ananatis AJ13355 were cloned and expressed in Escherichia coli. The culturing of E. coli cells expressing hilA (E. coli-HilA) or both hilA and hilB (E. coli-HilAB) in the presence of l-isoleucine resulted in the conversion of l-isoleucine into two novel biogenic compounds: l-4′-isoleucine and l-4,4′-dihydroxyisoleucine, respectively. In parallel, two novel enzymatic activities were detected in the crude cell lysates of the E. coli-HilA and E. coli-HilAB strains: l-isoleucine, 2-oxoglutarate: oxygen oxidoreductase (4′-hydroxylating) (HilA) and l-4′-hydroxyisoleucine, 2-oxoglutarate: oxygen oxidoreductase (4-hydroxylating) (HilB), respectively. Two hypotheses regarding the physiological significance of C-4(4′)-hydroxylation of l-isoleucine in bacteria are also discussed. According to first hypothesis, the l-isoleucine dihydroxylation cascade is involved in synthesis of dipeptide antibiotic in P. ananatis. Another unifying hypothesis is that the C-4(4′)-hydroxylation of l-isoleucine in bacteria could result in the synthesis of signal molecules belonging to two classes: 2(5H)-furanones and analogs of N-acyl homoserine lactone. Blackwell Publishing Ltd 2013-06 2013-04-02 /pmc/articles/PMC3684760/ /pubmed/23554367 http://dx.doi.org/10.1002/mbo3.87 Text en © 2013 Published by John Wiley & Sons Ltd. http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Original Research
Smirnov, Sergey V
Sokolov, Pavel M
Kotlyarova, Veronika A
Samsonova, Natalya N
Kodera, Tomohiro
Sugiyama, Masakazu
Torii, Takayoshi
Hibi, Makoto
Shimizu, Sakayu
Yokozeki, Kenzo
Ogawa, Jun
A novel l-isoleucine-4′-dioxygenase and l-isoleucine dihydroxylation cascade in Pantoea ananatis
title A novel l-isoleucine-4′-dioxygenase and l-isoleucine dihydroxylation cascade in Pantoea ananatis
title_full A novel l-isoleucine-4′-dioxygenase and l-isoleucine dihydroxylation cascade in Pantoea ananatis
title_fullStr A novel l-isoleucine-4′-dioxygenase and l-isoleucine dihydroxylation cascade in Pantoea ananatis
title_full_unstemmed A novel l-isoleucine-4′-dioxygenase and l-isoleucine dihydroxylation cascade in Pantoea ananatis
title_short A novel l-isoleucine-4′-dioxygenase and l-isoleucine dihydroxylation cascade in Pantoea ananatis
title_sort novel l-isoleucine-4′-dioxygenase and l-isoleucine dihydroxylation cascade in pantoea ananatis
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3684760/
https://www.ncbi.nlm.nih.gov/pubmed/23554367
http://dx.doi.org/10.1002/mbo3.87
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