rs953413 Regulates Polyunsaturated Fatty Acid Metabolism by Modulating ELOVL2 Expression
Summary: Long-chain polyunsaturated fatty acids (LC-PUFAs) influence human health in several areas, including cardiovascular disease, diabetes, fatty liver disease, and cancer. ELOVL2 encodes one of the key enzymes in the in vivo synthesis of LC-PUFAs from their precursors. Variants near ELOVL2 have...
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doaj-086bb7c3153e48ddad39eb960e84dfb12020-11-25T01:10:24ZengElsevieriScience2589-00422020-02-01232rs953413 Regulates Polyunsaturated Fatty Acid Metabolism by Modulating ELOVL2 ExpressionGang Pan0Marco Cavalli1Björn Carlsson2Stanko Skrtic3Chanchal Kumar4Claes Wadelius5Science for Life Laboratory, Department of Immunology, Genetics and Pathology, Uppsala University, Uppsala, SwedenScience for Life Laboratory, Department of Immunology, Genetics and Pathology, Uppsala University, Uppsala, SwedenResearch and Early Development, Cardiovascular, Renal and Metabolism, BioPharmaceuticals R&D, AstraZeneca, Gothenburg, SwedenPharmaceutical Technology & Development, AstraZeneca AB, Gothenburg, Sweden; Department of Medicine, Sahlgrenska University Hospital, Gothenburg, SwedenTranslational Science & Experimental Medicine, Research and Early Development, Cardiovascular, Renal and Metabolism (CVRM), BioPharmaceuticals R&D, AstraZeneca, Gothenburg, Sweden; Karolinska Institutet/AstraZeneca Integrated CardioMetabolic Center (KI/AZ ICMC), Department of Medicine, Novum, Huddinge, SwedenScience for Life Laboratory, Department of Immunology, Genetics and Pathology, Uppsala University, Uppsala, Sweden; Corresponding authorSummary: Long-chain polyunsaturated fatty acids (LC-PUFAs) influence human health in several areas, including cardiovascular disease, diabetes, fatty liver disease, and cancer. ELOVL2 encodes one of the key enzymes in the in vivo synthesis of LC-PUFAs from their precursors. Variants near ELOVL2 have repeatedly been associated with levels of LC-PUFA-derived metabolites in genome-wide association studies (GWAS), but the mechanisms behind these observations remain poorly defined. In this study, we found that rs953413, located in the first intron of ELOVL2, lies within a functional FOXA and HNF4α cooperative binding site. The G allele of rs953413 increases binding of FOXA1/FOXA2 and HNF4α to an evolutionarily conserved enhancer element, conferring allele-specific upregulation of the rs953413-associated gene ELOVL2. The expression of ELOVL2 was significantly downregulated by both FOXA1 and HNF4α knockdown and CRISPR/Cas9-mediated direct mutation to the enhancer element. Our results suggest that rs953413 regulates LC-PUFAs metabolism by altering ELOVL2 expression through FOXA1/FOXA2 and HNF4α cooperation. : Health Sciences; Biological Sciences; Genetics; Molecular Genetics; Molecular Biology; Molecular Mechanism of Gene Regulation Subject Areas: Health Sciences, Biological Sciences, Genetics, Molecular Genetics, Molecular Biology, Molecular Mechanism of Gene Regulationhttp://www.sciencedirect.com/science/article/pii/S2589004219305541 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Gang Pan Marco Cavalli Björn Carlsson Stanko Skrtic Chanchal Kumar Claes Wadelius |
spellingShingle |
Gang Pan Marco Cavalli Björn Carlsson Stanko Skrtic Chanchal Kumar Claes Wadelius rs953413 Regulates Polyunsaturated Fatty Acid Metabolism by Modulating ELOVL2 Expression iScience |
author_facet |
Gang Pan Marco Cavalli Björn Carlsson Stanko Skrtic Chanchal Kumar Claes Wadelius |
author_sort |
Gang Pan |
title |
rs953413 Regulates Polyunsaturated Fatty Acid Metabolism by Modulating ELOVL2 Expression |
title_short |
rs953413 Regulates Polyunsaturated Fatty Acid Metabolism by Modulating ELOVL2 Expression |
title_full |
rs953413 Regulates Polyunsaturated Fatty Acid Metabolism by Modulating ELOVL2 Expression |
title_fullStr |
rs953413 Regulates Polyunsaturated Fatty Acid Metabolism by Modulating ELOVL2 Expression |
title_full_unstemmed |
rs953413 Regulates Polyunsaturated Fatty Acid Metabolism by Modulating ELOVL2 Expression |
title_sort |
rs953413 regulates polyunsaturated fatty acid metabolism by modulating elovl2 expression |
publisher |
Elsevier |
series |
iScience |
issn |
2589-0042 |
publishDate |
2020-02-01 |
description |
Summary: Long-chain polyunsaturated fatty acids (LC-PUFAs) influence human health in several areas, including cardiovascular disease, diabetes, fatty liver disease, and cancer. ELOVL2 encodes one of the key enzymes in the in vivo synthesis of LC-PUFAs from their precursors. Variants near ELOVL2 have repeatedly been associated with levels of LC-PUFA-derived metabolites in genome-wide association studies (GWAS), but the mechanisms behind these observations remain poorly defined. In this study, we found that rs953413, located in the first intron of ELOVL2, lies within a functional FOXA and HNF4α cooperative binding site. The G allele of rs953413 increases binding of FOXA1/FOXA2 and HNF4α to an evolutionarily conserved enhancer element, conferring allele-specific upregulation of the rs953413-associated gene ELOVL2. The expression of ELOVL2 was significantly downregulated by both FOXA1 and HNF4α knockdown and CRISPR/Cas9-mediated direct mutation to the enhancer element. Our results suggest that rs953413 regulates LC-PUFAs metabolism by altering ELOVL2 expression through FOXA1/FOXA2 and HNF4α cooperation. : Health Sciences; Biological Sciences; Genetics; Molecular Genetics; Molecular Biology; Molecular Mechanism of Gene Regulation Subject Areas: Health Sciences, Biological Sciences, Genetics, Molecular Genetics, Molecular Biology, Molecular Mechanism of Gene Regulation |
url |
http://www.sciencedirect.com/science/article/pii/S2589004219305541 |
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