Literature DB >> 27389691

Genetic dissection in a mouse model reveals interactions between carotenoids and lipid metabolism.

Grzegorz Palczewski1, M Airanthi K Widjaja-Adhi2, Jaume Amengual3, Marcin Golczak2, Johannes von Lintig4.   

Abstract

Carotenoids affect a rich variety of physiological functions in nature and are beneficial for human health. However, knowledge about their biological action and the consequences of their dietary accumulation in mammals is limited. Progress in this research field is limited by the expeditious metabolism of carotenoids in rodents and the confounding production of apocarotenoid signaling molecules. Herein, we established a mouse model lacking the enzymes responsible for carotenoid catabolism and apocarotenoid production, fed on either a β-carotene- or a zeaxanthin-enriched diet. Applying a genome wide microarray analysis, we assessed the effects of the parent carotenoids on the liver transcriptome. Our analysis documented changes in pathways for liver lipid metabolism and mitochondrial respiration. We biochemically defined these effects, and observed that β-carotene accumulation resulted in an elevation of liver triglycerides and liver cholesterol, while zeaxanthin accumulation increased serum cholesterol levels. We further show that carotenoids were predominantly transported within HDL particles in the serum of mice. Finally, we provide evidence that carotenoid accumulation influenced whole-body respiration and energy expenditure. Thus, we observed that accumulation of parent carotenoids interacts with lipid metabolism and that structurally related carotenoids display distinct biological functions in mammals.
Copyright © 2016 by the American Society for Biochemistry and Molecular Biology, Inc.

Entities:  

Keywords:  cholesterol; lipoproteins; liver; microarray; triglyceride; zeaxanthin; β,β-carotene-15,15′-oxygenase; β,β-carotene-9′,10′-oxygenase; β-carotene

Mesh:

Substances:

Year:  2016        PMID: 27389691      PMCID: PMC5003153          DOI: 10.1194/jlr.M069021

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


  50 in total

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6.  Genetic variation in the beta, beta-carotene-9', 10'-dioxygenase gene and association with fat colour in bovine adipose tissue and milk.

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7.  Characterization of the Role of β-Carotene 9,10-Dioxygenase in Macular Pigment Metabolism.

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8.  Two carotenoid oxygenases contribute to mammalian provitamin A metabolism.

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Journal:  J Nutr       Date:  2020-10-12       Impact factor: 4.798

Review 4.  Interplay between β-carotene and lipoprotein metabolism at the maternal-fetal barrier.

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5.  Supplementation with macular carotenoids improves visual performance of transgenic mice.

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6.  A Metabolomics Analysis of Circulating Carotenoids and Breast Cancer Risk.

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7.  Comparison of Antioxidant Properties of Dehydrolutein with Lutein and Zeaxanthin, and their Effects on Cultured Retinal Pigment Epithelial Cells.

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9.  β-apo-10'-carotenoids support normal embryonic development during vitamin A deficiency.

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Review 10.  Fate of β-Carotene within Loaded Delivery Systems in Food: State of Knowledge.

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