Literature DB >> 10574660

Eicosapentaenoic and docosahexaenoic acid affect mitochondrial and peroxisomal fatty acid oxidation in relation to substrate preference.

L Madsen1, A C Rustan, H Vaagenes, K Berge, E Dyrøy, R K Berge.   

Abstract

Decreased triacylglycerol synthesis within hepatocytes due to decreased diacylglycerol acyltransferase (DGAT) activity has been suggested to be an important mechanism by which diets rich in fish oil lower plasma triacylglycerol levels. New findings suggest that eicosapentaenoic acid (EPA), and not docosahexaenoic acid (DHA), lowers plasma triacylglycerol by increased mitochondrial fatty acid oxidation and decreased availability of fatty acids for triacylglycerol synthesis. To contribute to the understanding of the triacylglycerol-lowering mechanism of fish oil, the different metabolic properties of EPA and DHA were studied in rat liver parenchymal cells and isolated rat liver organelles. EPA-CoA was a poorer substrate than DHA-CoA for DGAT in isolated rat liver microsomes, and in the presence of EPA, a markedly lower value for the triacyl[3H]glycerol/diacyl[3H]glycerol ratio was observed. The distribution of [1-14C]palmitic acid was shifted from incorporation into secreted glycerolipids toward oxidation in the presence of EPA (but not DHA) in rat liver parenchymal cells. [1-14C]EPA was oxidized to a much greater extent than [1-14C]DHA in rat liver parenchymal cells, isolated peroxisomes, and especially in purified mitochondria. As the oxidation of EPA was more effective and sensitive to the CPT-I inhibitor, etomoxir, when measured in a combination of both mitochondria and peroxisomes, we hypothesized that both are involved in EPA oxidation, whereas DHA mainly is oxidized in peroxisomes. In rats, EPA treatment lowered plasma triacylglycerol and increased hepatic mitochondrial fatty acid oxidation and carnitine palmitoyltransferase (CPT)-I activity in both the presence and absence of malonyl-CoA. Whereas only EPA treatment increased the mRNA levels of CPT-I, DHA treatment increased the mRNA levels of peroxisomal fatty acyl-CoA oxidase and fatty acid binding protein more effectively than EPA treatment. In conclusion, EPA and DHA affect cellular organelles in relation to their substrate preference. The present study strongly supports the hypothesis that EPA, and not DHA, lowers plasma triacylglycerol by increased mitochondrial fatty acid oxidation.

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Year:  1999        PMID: 10574660     DOI: 10.1007/s11745-999-0445-x

Source DB:  PubMed          Journal:  Lipids        ISSN: 0024-4201            Impact factor:   1.880


  67 in total

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4.  Eicosapentaenoic acid inhibits synthesis and secretion of triacylglycerols by cultured rat hepatocytes.

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5.  Eicosapentaenoic acid is primarily responsible for hypotriglyceridemic effect of fish oil in humans.

Authors:  G S Rambjør; A I Wålen; S L Windsor; W S Harris
Journal:  Lipids       Date:  1996-03       Impact factor: 1.880

6.  Inter-tissue and inter-species characteristics of the mitochondrial carnitine palmitoyltransferase enzyme system.

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  44 in total

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Review 2.  Production of eicosapentaenoic and docosahexaenoic acid-containing oils in transgenic land plants for human and aquaculture nutrition.

Authors:  Stanley S Robert
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8.  Liver fatty acid binding protein gene-ablation exacerbates weight gain in high-fat fed female mice.

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9.  The hypotriglyceridemic effect of dietary n-3 FA is associated with increased beta-oxidation and reduced leptin expression.

Authors:  J Ukropec; J E Reseland; D Gasperikova; E Demcakova; L Madsen; R K Berge; A C Rustan; I Klimes; C A Drevon; E Sebökova
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10.  Dietary docosahexaenoic acid supplementation alters select physiological endocannabinoid-system metabolites in brain and plasma.

Authors:  Jodianne T Wood; John S Williams; Lakshmipathi Pandarinathan; David R Janero; Carol J Lammi-Keefe; Alexandros Makriyannis
Journal:  J Lipid Res       Date:  2010-01-13       Impact factor: 5.922

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