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Variants in CPT1A, FADS1, and FADS2 are Associated with Higher Levels of Estimated Plasma and Erythrocyte Delta-5 Desaturases in Alaskan Eskimos

The delta-5 and delta-6 desaturases (D5D and D6D), encoded by fatty acid desaturase 1 (FADS1) and 2 (FADS2) genes, respectively, are rate-limiting enzymes in the metabolism of ω-3 and ω-6 fatty acids. The objective of this study was to identify genes influencing variation in estimated D5D and D6D ac...

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Autores principales: Voruganti, V. Saroja, Higgins, Paul B., Ebbesson, Sven O. E., Kennish, John, Göring, Harald H. H., Haack, Karin, Laston, Sandra, Drigalenko, Eugene, Wenger, Charlotte R., Harris, William S., Fabsitz, Richard R., Devereux, Richard B., MacCluer, Jean W., Curran, Joanne E., Carless, Melanie A., Johnson, Matthew P., Moses, Eric K., Blangero, John, Umans, Jason G., Howard, Barbara V., Cole, Shelley A., Comuzzie, Anthony Gean
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Research Foundation 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3371589/
https://www.ncbi.nlm.nih.gov/pubmed/22701466
http://dx.doi.org/10.3389/fgene.2012.00086
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author Voruganti, V. Saroja
Higgins, Paul B.
Ebbesson, Sven O. E.
Kennish, John
Göring, Harald H. H.
Haack, Karin
Laston, Sandra
Drigalenko, Eugene
Wenger, Charlotte R.
Harris, William S.
Fabsitz, Richard R.
Devereux, Richard B.
MacCluer, Jean W.
Curran, Joanne E.
Carless, Melanie A.
Johnson, Matthew P.
Moses, Eric K.
Blangero, John
Umans, Jason G.
Howard, Barbara V.
Cole, Shelley A.
Comuzzie, Anthony Gean
author_facet Voruganti, V. Saroja
Higgins, Paul B.
Ebbesson, Sven O. E.
Kennish, John
Göring, Harald H. H.
Haack, Karin
Laston, Sandra
Drigalenko, Eugene
Wenger, Charlotte R.
Harris, William S.
Fabsitz, Richard R.
Devereux, Richard B.
MacCluer, Jean W.
Curran, Joanne E.
Carless, Melanie A.
Johnson, Matthew P.
Moses, Eric K.
Blangero, John
Umans, Jason G.
Howard, Barbara V.
Cole, Shelley A.
Comuzzie, Anthony Gean
author_sort Voruganti, V. Saroja
collection PubMed
description The delta-5 and delta-6 desaturases (D5D and D6D), encoded by fatty acid desaturase 1 (FADS1) and 2 (FADS2) genes, respectively, are rate-limiting enzymes in the metabolism of ω-3 and ω-6 fatty acids. The objective of this study was to identify genes influencing variation in estimated D5D and D6D activities in plasma and erythrocytes in Alaskan Eskimos (n = 761) participating in the genetics of coronary artery disease in Alaska Natives (GOCADAN) study. Desaturase activity was estimated by product: precursor ratio of polyunsaturated fatty acids. We found evidence of linkage for estimated erythrocyte D5D (eD5D) on chromosome 11q12-q13 (logarithm of odds score = 3.5). The confidence interval contains candidate genes FADS1, FADS2, 7-dehydrocholesterol reductase (DHCR7), and carnitine palmitoyl transferase 1A, liver (CPT1A). Measured genotype analysis found association between CPT1A, FADS1, and FADS2 single-nucleotide polymorphisms (SNPs) and estimated eD5D activity (p-values between 10(−28) and 10(−5)). A Bayesian quantitative trait nucleotide analysis showed that rs3019594 in CPT1A, rs174541 in FADS1, and rs174568 in FADS2 had posterior probabilities > 0.8, thereby demonstrating significant statistical support for a functional effect on eD5D activity. Highly significant associations of FADS1, FADS2, and CPT1A transcripts with their respective SNPs (p-values between 10(−75) and 10(−7)) in Mexican Americans of the San Antonio Family Heart Study corroborated our results. These findings strongly suggest a functional role for FADS1, FADS2, and CPT1A SNPs in the variation in eD5D activity.
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spelling pubmed-33715892012-06-14 Variants in CPT1A, FADS1, and FADS2 are Associated with Higher Levels of Estimated Plasma and Erythrocyte Delta-5 Desaturases in Alaskan Eskimos Voruganti, V. Saroja Higgins, Paul B. Ebbesson, Sven O. E. Kennish, John Göring, Harald H. H. Haack, Karin Laston, Sandra Drigalenko, Eugene Wenger, Charlotte R. Harris, William S. Fabsitz, Richard R. Devereux, Richard B. MacCluer, Jean W. Curran, Joanne E. Carless, Melanie A. Johnson, Matthew P. Moses, Eric K. Blangero, John Umans, Jason G. Howard, Barbara V. Cole, Shelley A. Comuzzie, Anthony Gean Front Genet Genetics The delta-5 and delta-6 desaturases (D5D and D6D), encoded by fatty acid desaturase 1 (FADS1) and 2 (FADS2) genes, respectively, are rate-limiting enzymes in the metabolism of ω-3 and ω-6 fatty acids. The objective of this study was to identify genes influencing variation in estimated D5D and D6D activities in plasma and erythrocytes in Alaskan Eskimos (n = 761) participating in the genetics of coronary artery disease in Alaska Natives (GOCADAN) study. Desaturase activity was estimated by product: precursor ratio of polyunsaturated fatty acids. We found evidence of linkage for estimated erythrocyte D5D (eD5D) on chromosome 11q12-q13 (logarithm of odds score = 3.5). The confidence interval contains candidate genes FADS1, FADS2, 7-dehydrocholesterol reductase (DHCR7), and carnitine palmitoyl transferase 1A, liver (CPT1A). Measured genotype analysis found association between CPT1A, FADS1, and FADS2 single-nucleotide polymorphisms (SNPs) and estimated eD5D activity (p-values between 10(−28) and 10(−5)). A Bayesian quantitative trait nucleotide analysis showed that rs3019594 in CPT1A, rs174541 in FADS1, and rs174568 in FADS2 had posterior probabilities > 0.8, thereby demonstrating significant statistical support for a functional effect on eD5D activity. Highly significant associations of FADS1, FADS2, and CPT1A transcripts with their respective SNPs (p-values between 10(−75) and 10(−7)) in Mexican Americans of the San Antonio Family Heart Study corroborated our results. These findings strongly suggest a functional role for FADS1, FADS2, and CPT1A SNPs in the variation in eD5D activity. Frontiers Research Foundation 2012-06-11 /pmc/articles/PMC3371589/ /pubmed/22701466 http://dx.doi.org/10.3389/fgene.2012.00086 Text en Copyright © 2012 Voruganti, Higgins, Ebbesson, Kennish, Göring, Haack, Laston, Drigalenko, Wenger, Harris, Fabsitz, Devereux, MacCluer, Curran, Carless, Johnson, Moses, Blangero, Umans, Howard, Cole and Comuzzie. http://www.frontiersin.org/licenseagreement This is an open-access article distributed under the terms of the Creative Commons Attribution Non Commercial License, which permits non-commercial use, distribution, and reproduction in other forums, provided the original authors and source are credited.
spellingShingle Genetics
Voruganti, V. Saroja
Higgins, Paul B.
Ebbesson, Sven O. E.
Kennish, John
Göring, Harald H. H.
Haack, Karin
Laston, Sandra
Drigalenko, Eugene
Wenger, Charlotte R.
Harris, William S.
Fabsitz, Richard R.
Devereux, Richard B.
MacCluer, Jean W.
Curran, Joanne E.
Carless, Melanie A.
Johnson, Matthew P.
Moses, Eric K.
Blangero, John
Umans, Jason G.
Howard, Barbara V.
Cole, Shelley A.
Comuzzie, Anthony Gean
Variants in CPT1A, FADS1, and FADS2 are Associated with Higher Levels of Estimated Plasma and Erythrocyte Delta-5 Desaturases in Alaskan Eskimos
title Variants in CPT1A, FADS1, and FADS2 are Associated with Higher Levels of Estimated Plasma and Erythrocyte Delta-5 Desaturases in Alaskan Eskimos
title_full Variants in CPT1A, FADS1, and FADS2 are Associated with Higher Levels of Estimated Plasma and Erythrocyte Delta-5 Desaturases in Alaskan Eskimos
title_fullStr Variants in CPT1A, FADS1, and FADS2 are Associated with Higher Levels of Estimated Plasma and Erythrocyte Delta-5 Desaturases in Alaskan Eskimos
title_full_unstemmed Variants in CPT1A, FADS1, and FADS2 are Associated with Higher Levels of Estimated Plasma and Erythrocyte Delta-5 Desaturases in Alaskan Eskimos
title_short Variants in CPT1A, FADS1, and FADS2 are Associated with Higher Levels of Estimated Plasma and Erythrocyte Delta-5 Desaturases in Alaskan Eskimos
title_sort variants in cpt1a, fads1, and fads2 are associated with higher levels of estimated plasma and erythrocyte delta-5 desaturases in alaskan eskimos
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3371589/
https://www.ncbi.nlm.nih.gov/pubmed/22701466
http://dx.doi.org/10.3389/fgene.2012.00086
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