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Poly‐3‐hydroxyalkanoate synthases from Pseudomonas putida U: substrate specificity and ultrastructural studies

The substrate specificity of the two polymerases (PhaC1 and PhaC2) involved in the biosynthesis of medium‐chain‐length poly‐hydroxyalkanoates (mcl PHAs) in Pseudomonas putida U has been studied in vivo. For these kind of experiments, two recombinant strains derived from a genetically engineered muta...

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Autores principales: Arias, Sagrario, Sandoval, Angel, Arcos, Mario, Cañedo, Librada M., Maestro, Beatriz, Sanz, Jesús M., Naharro, Germán, Luengo, José M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3864450/
https://www.ncbi.nlm.nih.gov/pubmed/21261834
http://dx.doi.org/10.1111/j.1751-7915.2007.00016.x
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author Arias, Sagrario
Sandoval, Angel
Arcos, Mario
Cañedo, Librada M.
Maestro, Beatriz
Sanz, Jesús M.
Naharro, Germán
Luengo, José M.
author_facet Arias, Sagrario
Sandoval, Angel
Arcos, Mario
Cañedo, Librada M.
Maestro, Beatriz
Sanz, Jesús M.
Naharro, Germán
Luengo, José M.
author_sort Arias, Sagrario
collection PubMed
description The substrate specificity of the two polymerases (PhaC1 and PhaC2) involved in the biosynthesis of medium‐chain‐length poly‐hydroxyalkanoates (mcl PHAs) in Pseudomonas putida U has been studied in vivo. For these kind of experiments, two recombinant strains derived from a genetically engineered mutant in which the whole pha locus had been deleted (P. putida U Δpha) were employed. These bacteria, which expresses only phaC1 (P. putida U Δpha pMC‐phaC1)or only phaC2(P. putida U Δpha pMC‐phaC2), accumulated different PHAs in function of the precursor supplemented to the culture broth. Thus, the P. putida U Δpha pMC‐phaC1strain was able to synthesize several aliphatic and aromatic PHAs when hexanoic, heptanoic, octanoic decanoic, 5‐phenylvaleric, 6‐phenylhexanoic, 7‐phenylheptanoic, 8‐phenyloctanoic or 9‐phenylnonanoic acid were used as precursors; the highest accumulation of polymers was observed when the precursor used were decanoic acid (aliphatic PHAs) or 6‐phenylhexanoic acid (aromatic PHAs). However, although it synthesizes similar aliphatic PHAs (the highest accumulation was observed when hexanoic acid was the precursor) the other recombinant strain (P. putida U Δpha pMC‐phaC2) only accumulated aromatic PHAs when the monomer to be polymerized was 3‐hydroxy‐5‐phenylvaleryl‐CoA. The possible influence of the putative three‐dimensional structures on the different catalytic behaviour of PhaC1 and PhaC2 is discussed.
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spelling pubmed-38644502014-02-12 Poly‐3‐hydroxyalkanoate synthases from Pseudomonas putida U: substrate specificity and ultrastructural studies Arias, Sagrario Sandoval, Angel Arcos, Mario Cañedo, Librada M. Maestro, Beatriz Sanz, Jesús M. Naharro, Germán Luengo, José M. Microb Biotechnol Research Articles The substrate specificity of the two polymerases (PhaC1 and PhaC2) involved in the biosynthesis of medium‐chain‐length poly‐hydroxyalkanoates (mcl PHAs) in Pseudomonas putida U has been studied in vivo. For these kind of experiments, two recombinant strains derived from a genetically engineered mutant in which the whole pha locus had been deleted (P. putida U Δpha) were employed. These bacteria, which expresses only phaC1 (P. putida U Δpha pMC‐phaC1)or only phaC2(P. putida U Δpha pMC‐phaC2), accumulated different PHAs in function of the precursor supplemented to the culture broth. Thus, the P. putida U Δpha pMC‐phaC1strain was able to synthesize several aliphatic and aromatic PHAs when hexanoic, heptanoic, octanoic decanoic, 5‐phenylvaleric, 6‐phenylhexanoic, 7‐phenylheptanoic, 8‐phenyloctanoic or 9‐phenylnonanoic acid were used as precursors; the highest accumulation of polymers was observed when the precursor used were decanoic acid (aliphatic PHAs) or 6‐phenylhexanoic acid (aromatic PHAs). However, although it synthesizes similar aliphatic PHAs (the highest accumulation was observed when hexanoic acid was the precursor) the other recombinant strain (P. putida U Δpha pMC‐phaC2) only accumulated aromatic PHAs when the monomer to be polymerized was 3‐hydroxy‐5‐phenylvaleryl‐CoA. The possible influence of the putative three‐dimensional structures on the different catalytic behaviour of PhaC1 and PhaC2 is discussed. Blackwell Publishing Ltd 2008-03 2007-12-10 /pmc/articles/PMC3864450/ /pubmed/21261834 http://dx.doi.org/10.1111/j.1751-7915.2007.00016.x Text en Copyright © 2007 The Authors. Journal compilation © 2007 Society for Applied Microbiology and Blackwell Publishing Ltd.
spellingShingle Research Articles
Arias, Sagrario
Sandoval, Angel
Arcos, Mario
Cañedo, Librada M.
Maestro, Beatriz
Sanz, Jesús M.
Naharro, Germán
Luengo, José M.
Poly‐3‐hydroxyalkanoate synthases from Pseudomonas putida U: substrate specificity and ultrastructural studies
title Poly‐3‐hydroxyalkanoate synthases from Pseudomonas putida U: substrate specificity and ultrastructural studies
title_full Poly‐3‐hydroxyalkanoate synthases from Pseudomonas putida U: substrate specificity and ultrastructural studies
title_fullStr Poly‐3‐hydroxyalkanoate synthases from Pseudomonas putida U: substrate specificity and ultrastructural studies
title_full_unstemmed Poly‐3‐hydroxyalkanoate synthases from Pseudomonas putida U: substrate specificity and ultrastructural studies
title_short Poly‐3‐hydroxyalkanoate synthases from Pseudomonas putida U: substrate specificity and ultrastructural studies
title_sort poly‐3‐hydroxyalkanoate synthases from pseudomonas putida u: substrate specificity and ultrastructural studies
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3864450/
https://www.ncbi.nlm.nih.gov/pubmed/21261834
http://dx.doi.org/10.1111/j.1751-7915.2007.00016.x
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