Cargando…

Δ-6 Desaturase Substrate Competition: Dietary Linoleic Acid (18∶2n-6) Has Only Trivial Effects on α-Linolenic Acid (18∶3n-3) Bioconversion in the Teleost Rainbow Trout

It is generally accepted that, in vertebrates, omega-3 (n-3) and omega-6 (n-6) poly-unsaturated fatty acids (PUFA) compete for Δ-6 desaturase enzyme in order to be bioconverted into long-chain PUFA (LC-PUFA). However, recent studies into teleost fatty acid metabolism suggest that these metabolic pro...

Descripción completa

Detalles Bibliográficos
Autores principales: Emery, James A., Hermon, Karen, Hamid, Noor K. A., Donald, John A., Turchini, Giovanni M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3583879/
https://www.ncbi.nlm.nih.gov/pubmed/23460861
http://dx.doi.org/10.1371/journal.pone.0057463
_version_ 1782475497679093760
author Emery, James A.
Hermon, Karen
Hamid, Noor K. A.
Donald, John A.
Turchini, Giovanni M.
author_facet Emery, James A.
Hermon, Karen
Hamid, Noor K. A.
Donald, John A.
Turchini, Giovanni M.
author_sort Emery, James A.
collection PubMed
description It is generally accepted that, in vertebrates, omega-3 (n-3) and omega-6 (n-6) poly-unsaturated fatty acids (PUFA) compete for Δ-6 desaturase enzyme in order to be bioconverted into long-chain PUFA (LC-PUFA). However, recent studies into teleost fatty acid metabolism suggest that these metabolic processes may not conform entirely to what has been previously observed in mammals and other animal models. Recent work on rainbow trout has led us to question specifically if linoleic acid (LA, 18∶2n-6) and α-linolenic acid (ALA, 18∶3n-3) (Δ-6 desaturase substrates) are in direct competition for access to Δ-6 desaturase. Two experimental diets were formulated with fixed levels of ALA, while LA levels were varied (high and low) to examine if increased availability of LA would result in decreased bioconversion of ALA to its LC-PUFA products through substrate competition. No significant difference in ALA metabolism towards n-3 LC-PUFA was exhibited between diets while significant differences were observed in LA metabolism towards n-6 LC-PUFA. These results are evidence for minor if any competition between substrates for Δ-6 desaturase, suggesting that, paradoxically, the activity of Δ-6 desaturase on n-3 and n-6 substrates is independent. These results call for a paradigm shift in the way we approach teleost fatty acid metabolism. The findings are also important with regard to diet formulation in the aquaculture industry as they indicate that there should be no concern for possible substrate competition between 18∶3n-3 and 18∶2n-6, when aiming at increased n-3 LC-PUFA bioconversion in vivo.
format Online
Article
Text
id pubmed-3583879
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-35838792013-03-04 Δ-6 Desaturase Substrate Competition: Dietary Linoleic Acid (18∶2n-6) Has Only Trivial Effects on α-Linolenic Acid (18∶3n-3) Bioconversion in the Teleost Rainbow Trout Emery, James A. Hermon, Karen Hamid, Noor K. A. Donald, John A. Turchini, Giovanni M. PLoS One Research Article It is generally accepted that, in vertebrates, omega-3 (n-3) and omega-6 (n-6) poly-unsaturated fatty acids (PUFA) compete for Δ-6 desaturase enzyme in order to be bioconverted into long-chain PUFA (LC-PUFA). However, recent studies into teleost fatty acid metabolism suggest that these metabolic processes may not conform entirely to what has been previously observed in mammals and other animal models. Recent work on rainbow trout has led us to question specifically if linoleic acid (LA, 18∶2n-6) and α-linolenic acid (ALA, 18∶3n-3) (Δ-6 desaturase substrates) are in direct competition for access to Δ-6 desaturase. Two experimental diets were formulated with fixed levels of ALA, while LA levels were varied (high and low) to examine if increased availability of LA would result in decreased bioconversion of ALA to its LC-PUFA products through substrate competition. No significant difference in ALA metabolism towards n-3 LC-PUFA was exhibited between diets while significant differences were observed in LA metabolism towards n-6 LC-PUFA. These results are evidence for minor if any competition between substrates for Δ-6 desaturase, suggesting that, paradoxically, the activity of Δ-6 desaturase on n-3 and n-6 substrates is independent. These results call for a paradigm shift in the way we approach teleost fatty acid metabolism. The findings are also important with regard to diet formulation in the aquaculture industry as they indicate that there should be no concern for possible substrate competition between 18∶3n-3 and 18∶2n-6, when aiming at increased n-3 LC-PUFA bioconversion in vivo. Public Library of Science 2013-02-27 /pmc/articles/PMC3583879/ /pubmed/23460861 http://dx.doi.org/10.1371/journal.pone.0057463 Text en © 2013 Emery 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
Emery, James A.
Hermon, Karen
Hamid, Noor K. A.
Donald, John A.
Turchini, Giovanni M.
Δ-6 Desaturase Substrate Competition: Dietary Linoleic Acid (18∶2n-6) Has Only Trivial Effects on α-Linolenic Acid (18∶3n-3) Bioconversion in the Teleost Rainbow Trout
title Δ-6 Desaturase Substrate Competition: Dietary Linoleic Acid (18∶2n-6) Has Only Trivial Effects on α-Linolenic Acid (18∶3n-3) Bioconversion in the Teleost Rainbow Trout
title_full Δ-6 Desaturase Substrate Competition: Dietary Linoleic Acid (18∶2n-6) Has Only Trivial Effects on α-Linolenic Acid (18∶3n-3) Bioconversion in the Teleost Rainbow Trout
title_fullStr Δ-6 Desaturase Substrate Competition: Dietary Linoleic Acid (18∶2n-6) Has Only Trivial Effects on α-Linolenic Acid (18∶3n-3) Bioconversion in the Teleost Rainbow Trout
title_full_unstemmed Δ-6 Desaturase Substrate Competition: Dietary Linoleic Acid (18∶2n-6) Has Only Trivial Effects on α-Linolenic Acid (18∶3n-3) Bioconversion in the Teleost Rainbow Trout
title_short Δ-6 Desaturase Substrate Competition: Dietary Linoleic Acid (18∶2n-6) Has Only Trivial Effects on α-Linolenic Acid (18∶3n-3) Bioconversion in the Teleost Rainbow Trout
title_sort δ-6 desaturase substrate competition: dietary linoleic acid (18∶2n-6) has only trivial effects on α-linolenic acid (18∶3n-3) bioconversion in the teleost rainbow trout
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3583879/
https://www.ncbi.nlm.nih.gov/pubmed/23460861
http://dx.doi.org/10.1371/journal.pone.0057463
work_keys_str_mv AT emeryjamesa d6desaturasesubstratecompetitiondietarylinoleicacid182n6hasonlytrivialeffectsonalinolenicacid183n3bioconversionintheteleostrainbowtrout
AT hermonkaren d6desaturasesubstratecompetitiondietarylinoleicacid182n6hasonlytrivialeffectsonalinolenicacid183n3bioconversionintheteleostrainbowtrout
AT hamidnoorka d6desaturasesubstratecompetitiondietarylinoleicacid182n6hasonlytrivialeffectsonalinolenicacid183n3bioconversionintheteleostrainbowtrout
AT donaldjohna d6desaturasesubstratecompetitiondietarylinoleicacid182n6hasonlytrivialeffectsonalinolenicacid183n3bioconversionintheteleostrainbowtrout
AT turchinigiovannim d6desaturasesubstratecompetitiondietarylinoleicacid182n6hasonlytrivialeffectsonalinolenicacid183n3bioconversionintheteleostrainbowtrout