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Folate network genetic variation, plasma homocysteine, and global genomic methylation content: a genetic association study

BACKGROUND: Sequence variants in genes functioning in folate-mediated one-carbon metabolism are hypothesized to lead to changes in levels of homocysteine and DNA methylation, which, in turn, are associated with risk of cardiovascular disease. METHODS: 330 SNPs in 52 genes were studied in relation to...

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Autores principales: Wernimont, Susan M, Clark, Andrew G, Stover, Patrick J, Wells, Martin T, Litonjua, Augusto A, Weiss, Scott T, Gaziano, J Michael, Tucker, Katherine L, Baccarelli, Andrea, Schwartz, Joel, Bollati, Valentina, Cassano, Patricia A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3266217/
https://www.ncbi.nlm.nih.gov/pubmed/22103680
http://dx.doi.org/10.1186/1471-2350-12-150
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author Wernimont, Susan M
Clark, Andrew G
Stover, Patrick J
Wells, Martin T
Litonjua, Augusto A
Weiss, Scott T
Gaziano, J Michael
Tucker, Katherine L
Baccarelli, Andrea
Schwartz, Joel
Bollati, Valentina
Cassano, Patricia A
author_facet Wernimont, Susan M
Clark, Andrew G
Stover, Patrick J
Wells, Martin T
Litonjua, Augusto A
Weiss, Scott T
Gaziano, J Michael
Tucker, Katherine L
Baccarelli, Andrea
Schwartz, Joel
Bollati, Valentina
Cassano, Patricia A
author_sort Wernimont, Susan M
collection PubMed
description BACKGROUND: Sequence variants in genes functioning in folate-mediated one-carbon metabolism are hypothesized to lead to changes in levels of homocysteine and DNA methylation, which, in turn, are associated with risk of cardiovascular disease. METHODS: 330 SNPs in 52 genes were studied in relation to plasma homocysteine and global genomic DNA methylation. SNPs were selected based on functional effects and gene coverage, and assays were completed on the Illumina Goldengate platform. Age-, smoking-, and nutrient-adjusted genotype--phenotype associations were estimated in regression models. RESULTS: Using a nominal P ≤ 0.005 threshold for statistical significance, 20 SNPs were associated with plasma homocysteine, 8 with Alu methylation, and 1 with LINE-1 methylation. Using a more stringent false discovery rate threshold, SNPs in FTCD, SLC19A1, and SLC19A3 genes remained associated with plasma homocysteine. Gene by vitamin B-6 interactions were identified for both Alu and LINE-1 methylation, and epistatic interactions with the MTHFR rs1801133 SNP were identified for the plasma homocysteine phenotype. Pleiotropy involving the MTHFD1L and SARDH genes for both plasma homocysteine and Alu methylation phenotypes was identified. CONCLUSIONS: No single gene was associated with all three phenotypes, and the set of the most statistically significant SNPs predictive of homocysteine or Alu or LINE-1 methylation was unique to each phenotype. Genetic variation in folate-mediated one-carbon metabolism, other than the well-known effects of the MTHFR c.665C>T (known as c.677 C>T, rs1801133, p.Ala222Val), is predictive of cardiovascular disease biomarkers.
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spelling pubmed-32662172012-01-26 Folate network genetic variation, plasma homocysteine, and global genomic methylation content: a genetic association study Wernimont, Susan M Clark, Andrew G Stover, Patrick J Wells, Martin T Litonjua, Augusto A Weiss, Scott T Gaziano, J Michael Tucker, Katherine L Baccarelli, Andrea Schwartz, Joel Bollati, Valentina Cassano, Patricia A BMC Med Genet Research Article BACKGROUND: Sequence variants in genes functioning in folate-mediated one-carbon metabolism are hypothesized to lead to changes in levels of homocysteine and DNA methylation, which, in turn, are associated with risk of cardiovascular disease. METHODS: 330 SNPs in 52 genes were studied in relation to plasma homocysteine and global genomic DNA methylation. SNPs were selected based on functional effects and gene coverage, and assays were completed on the Illumina Goldengate platform. Age-, smoking-, and nutrient-adjusted genotype--phenotype associations were estimated in regression models. RESULTS: Using a nominal P ≤ 0.005 threshold for statistical significance, 20 SNPs were associated with plasma homocysteine, 8 with Alu methylation, and 1 with LINE-1 methylation. Using a more stringent false discovery rate threshold, SNPs in FTCD, SLC19A1, and SLC19A3 genes remained associated with plasma homocysteine. Gene by vitamin B-6 interactions were identified for both Alu and LINE-1 methylation, and epistatic interactions with the MTHFR rs1801133 SNP were identified for the plasma homocysteine phenotype. Pleiotropy involving the MTHFD1L and SARDH genes for both plasma homocysteine and Alu methylation phenotypes was identified. CONCLUSIONS: No single gene was associated with all three phenotypes, and the set of the most statistically significant SNPs predictive of homocysteine or Alu or LINE-1 methylation was unique to each phenotype. Genetic variation in folate-mediated one-carbon metabolism, other than the well-known effects of the MTHFR c.665C>T (known as c.677 C>T, rs1801133, p.Ala222Val), is predictive of cardiovascular disease biomarkers. BioMed Central 2011-11-21 /pmc/articles/PMC3266217/ /pubmed/22103680 http://dx.doi.org/10.1186/1471-2350-12-150 Text en Copyright ©2011 Wernimont et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Wernimont, Susan M
Clark, Andrew G
Stover, Patrick J
Wells, Martin T
Litonjua, Augusto A
Weiss, Scott T
Gaziano, J Michael
Tucker, Katherine L
Baccarelli, Andrea
Schwartz, Joel
Bollati, Valentina
Cassano, Patricia A
Folate network genetic variation, plasma homocysteine, and global genomic methylation content: a genetic association study
title Folate network genetic variation, plasma homocysteine, and global genomic methylation content: a genetic association study
title_full Folate network genetic variation, plasma homocysteine, and global genomic methylation content: a genetic association study
title_fullStr Folate network genetic variation, plasma homocysteine, and global genomic methylation content: a genetic association study
title_full_unstemmed Folate network genetic variation, plasma homocysteine, and global genomic methylation content: a genetic association study
title_short Folate network genetic variation, plasma homocysteine, and global genomic methylation content: a genetic association study
title_sort folate network genetic variation, plasma homocysteine, and global genomic methylation content: a genetic association study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3266217/
https://www.ncbi.nlm.nih.gov/pubmed/22103680
http://dx.doi.org/10.1186/1471-2350-12-150
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