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A genome-wide analysis of DNA methylation identifies a novel association signal for Lp(a) concentrations in the LPA promoter

Lipoprotein(a) [Lp(a)] is a major cardiovascular risk factor, which is largely genetically determined by one major gene locus, the LPA gene. Many aspects of the transcriptional regulation of LPA are poorly understood and the role of epigenetics has not been addressed yet. Therefore, we conducted an...

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Autores principales: Coassin, Stefan, Hermann-Kleiter, Natascha, Haun, Margot, Wahl, Simone, Wilson, Rory, Paulweber, Bernhard, Kunze, Sonja, Meitinger, Thomas, Strauch, Konstantin, Peters, Annette, Waldenberger, Melanie, Kronenberg, Florian, Lamina, Claudia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7188291/
https://www.ncbi.nlm.nih.gov/pubmed/32343731
http://dx.doi.org/10.1371/journal.pone.0232073
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author Coassin, Stefan
Hermann-Kleiter, Natascha
Haun, Margot
Wahl, Simone
Wilson, Rory
Paulweber, Bernhard
Kunze, Sonja
Meitinger, Thomas
Strauch, Konstantin
Peters, Annette
Waldenberger, Melanie
Kronenberg, Florian
Lamina, Claudia
author_facet Coassin, Stefan
Hermann-Kleiter, Natascha
Haun, Margot
Wahl, Simone
Wilson, Rory
Paulweber, Bernhard
Kunze, Sonja
Meitinger, Thomas
Strauch, Konstantin
Peters, Annette
Waldenberger, Melanie
Kronenberg, Florian
Lamina, Claudia
author_sort Coassin, Stefan
collection PubMed
description Lipoprotein(a) [Lp(a)] is a major cardiovascular risk factor, which is largely genetically determined by one major gene locus, the LPA gene. Many aspects of the transcriptional regulation of LPA are poorly understood and the role of epigenetics has not been addressed yet. Therefore, we conducted an epigenome-wide analysis of DNA methylation on Lp(a) levels in two population-based studies (total n = 2208). We identified a CpG site in the LPA promoter which was significantly associated with Lp(a) concentrations. Surprisingly, the identified CpG site was found to overlap the SNP rs76735376. We genotyped this SNP de-novo in three studies (total n = 7512). The minor allele of rs76735376 (1.1% minor allele frequency) was associated with increased Lp(a) values (p = 1.01e-59) and explained 3.5% of the variation of Lp(a). Statistical mediation analysis showed that the effect on Lp(a) is rather originating from the base change itself and is not mediated by DNA methylation levels. This finding is supported by eQTL data from 208 liver tissue samples from the GTEx project, which shows a significant association of the rs76735376 minor allele with increased LPA expression. To evaluate, whether the association signal at rs76735376 may actually be derived from a stronger eQTL signal in LD with this SNP, eQTL association results of all correlated SNPs (r(2)≥0.1) were integrated with genetic association results. This analysis pinpointed to rs10455872 as the potential trigger of the effect of rs76735376. Furthermore, both SNPs coincide with short apo(a) isoforms. Adjusting for both, rs10455872 and the apo(a) isoforms diminished the effect size of rs76735376 to 5.38 mg/dL (p = 0.0463). This indicates that the effect of rs76735376 can be explained by both an independent effect of the SNP and a strong correlation with rs10455872 and apo(a) isoforms.
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spelling pubmed-71882912020-05-06 A genome-wide analysis of DNA methylation identifies a novel association signal for Lp(a) concentrations in the LPA promoter Coassin, Stefan Hermann-Kleiter, Natascha Haun, Margot Wahl, Simone Wilson, Rory Paulweber, Bernhard Kunze, Sonja Meitinger, Thomas Strauch, Konstantin Peters, Annette Waldenberger, Melanie Kronenberg, Florian Lamina, Claudia PLoS One Research Article Lipoprotein(a) [Lp(a)] is a major cardiovascular risk factor, which is largely genetically determined by one major gene locus, the LPA gene. Many aspects of the transcriptional regulation of LPA are poorly understood and the role of epigenetics has not been addressed yet. Therefore, we conducted an epigenome-wide analysis of DNA methylation on Lp(a) levels in two population-based studies (total n = 2208). We identified a CpG site in the LPA promoter which was significantly associated with Lp(a) concentrations. Surprisingly, the identified CpG site was found to overlap the SNP rs76735376. We genotyped this SNP de-novo in three studies (total n = 7512). The minor allele of rs76735376 (1.1% minor allele frequency) was associated with increased Lp(a) values (p = 1.01e-59) and explained 3.5% of the variation of Lp(a). Statistical mediation analysis showed that the effect on Lp(a) is rather originating from the base change itself and is not mediated by DNA methylation levels. This finding is supported by eQTL data from 208 liver tissue samples from the GTEx project, which shows a significant association of the rs76735376 minor allele with increased LPA expression. To evaluate, whether the association signal at rs76735376 may actually be derived from a stronger eQTL signal in LD with this SNP, eQTL association results of all correlated SNPs (r(2)≥0.1) were integrated with genetic association results. This analysis pinpointed to rs10455872 as the potential trigger of the effect of rs76735376. Furthermore, both SNPs coincide with short apo(a) isoforms. Adjusting for both, rs10455872 and the apo(a) isoforms diminished the effect size of rs76735376 to 5.38 mg/dL (p = 0.0463). This indicates that the effect of rs76735376 can be explained by both an independent effect of the SNP and a strong correlation with rs10455872 and apo(a) isoforms. Public Library of Science 2020-04-28 /pmc/articles/PMC7188291/ /pubmed/32343731 http://dx.doi.org/10.1371/journal.pone.0232073 Text en © 2020 Coassin et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Coassin, Stefan
Hermann-Kleiter, Natascha
Haun, Margot
Wahl, Simone
Wilson, Rory
Paulweber, Bernhard
Kunze, Sonja
Meitinger, Thomas
Strauch, Konstantin
Peters, Annette
Waldenberger, Melanie
Kronenberg, Florian
Lamina, Claudia
A genome-wide analysis of DNA methylation identifies a novel association signal for Lp(a) concentrations in the LPA promoter
title A genome-wide analysis of DNA methylation identifies a novel association signal for Lp(a) concentrations in the LPA promoter
title_full A genome-wide analysis of DNA methylation identifies a novel association signal for Lp(a) concentrations in the LPA promoter
title_fullStr A genome-wide analysis of DNA methylation identifies a novel association signal for Lp(a) concentrations in the LPA promoter
title_full_unstemmed A genome-wide analysis of DNA methylation identifies a novel association signal for Lp(a) concentrations in the LPA promoter
title_short A genome-wide analysis of DNA methylation identifies a novel association signal for Lp(a) concentrations in the LPA promoter
title_sort genome-wide analysis of dna methylation identifies a novel association signal for lp(a) concentrations in the lpa promoter
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7188291/
https://www.ncbi.nlm.nih.gov/pubmed/32343731
http://dx.doi.org/10.1371/journal.pone.0232073
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