Literature DB >> 27864326

Both maternal and offspring Elovl2 genotypes determine systemic DHA levels in perinatal mice.

Anna M Pauter1, Sofia Trattner2, Amanda Gonzalez-Bengtsson1, Emanuela Talamonti1, Abolfazl Asadi1, Olga Dethlefsen3, Anders Jacobsson4.   

Abstract

The molecular details relevant to dietary supplementation of the omega-3 fatty acid DHA in mothers as well as in their offspring are not clear. The PUFA elongase, elongation of very long-chain fatty acid (ELOVL)2, is a critical enzyme in the formation of DHA in mammals. In order to address the question regarding the origin of DHA during perinatal life, we have used DHA-deficient Elovl2-ablated mice as a model system to analyze the maternal impact on the DHA level in their offspring of various genotypes. Elovl2-/- mothers maintained on control diet had significantly lower systemic levels of DHA compared with the Elovl2+/- and Elovl2+/+ mothers. Dietary DHA administration during the pregnancy and lactation periods led to increased DHA accretion in maternal tissues and serum of all genotypes. The proportion of DHA in the liver and serum of the Elovl2-/- offspring was significantly lower than in the Elovl2+/+ offspring. Remarkably, the DHA level in the Elovl2+/- offspring nursed by DHA-free-fed Elovl2-/- mothers was almost as high as in +/+ pups delivered by +/+ mothers, suggesting that endogenous synthesis in the offspring can compensate for maternal DHA deficiency. Maternal DHA supplementation had a strong impact on offspring hepatic gene expression, especially of the fatty acid transporter, Mfsd2a, suggesting a dynamic interplay between DHA synthesis and DHA uptake in the control of systemic levels in the offspring.
Copyright © 2017 by the American Society for Biochemistry and Molecular Biology, Inc.

Entities:  

Keywords:  docosahexaenoic acid; docosahexaenoic acid synthesis; elongation of very long-chain fatty acid 2; lactation; polyunsaturated fatty acid; pregnancy; supplementation

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Year:  2016        PMID: 27864326      PMCID: PMC5234714          DOI: 10.1194/jlr.M070862

Source DB:  PubMed          Journal:  J Lipid Res        ISSN: 0022-2275            Impact factor:   5.922


  56 in total

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10.  Major facilitator superfamily domain-containing protein 2a (MFSD2A) has roles in body growth, motor function, and lipid metabolism.

Authors:  Justin H Berger; Maureen J Charron; David L Silver
Journal:  PLoS One       Date:  2012-11-29       Impact factor: 3.240

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4.  Lipid metabolism dysfunction induced by age-dependent DNA methylation accelerates aging.

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5.  Impairment of systemic DHA synthesis affects macrophage plasticity and polarization: implications for DHA supplementation during inflammation.

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6.  rs953413 Regulates Polyunsaturated Fatty Acid Metabolism by Modulating ELOVL2 Expression.

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7.  Polymorphisms of Fatty Acid Elongase 2 Gene Afftects Risk of Pulmonary Tuberculosis in China Han Population.

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Review 9.  Regulation of maternal-fetal metabolic communication.

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