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Functional Epistatic Interaction between rs6046G>A in F7 and rs5355C>T in SELE Modifies Systolic Blood Pressure Levels

BACKGROUND: Although numerous genetic studies have been performed, only 0.9% of blood pressure phenotypic variance has been elucidated. This phenomenon could be partially due to epistatic interactions. Our aim was to identify epistatic interaction(s) associated with blood pressure levels in a pre-pl...

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Autores principales: El Shamieh, Said, Ndiaye, Ndeye Coumba, Stathopoulou, Maria G., Murray, Helena A., Masson, Christine, Lamont, John V., Fitzgerald, Peter, Benetos, Athanase, Visvikis-Siest, Sophie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3399862/
https://www.ncbi.nlm.nih.gov/pubmed/22815813
http://dx.doi.org/10.1371/journal.pone.0040777
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author El Shamieh, Said
Ndiaye, Ndeye Coumba
Stathopoulou, Maria G.
Murray, Helena A.
Masson, Christine
Lamont, John V.
Fitzgerald, Peter
Benetos, Athanase
Visvikis-Siest, Sophie
author_facet El Shamieh, Said
Ndiaye, Ndeye Coumba
Stathopoulou, Maria G.
Murray, Helena A.
Masson, Christine
Lamont, John V.
Fitzgerald, Peter
Benetos, Athanase
Visvikis-Siest, Sophie
author_sort El Shamieh, Said
collection PubMed
description BACKGROUND: Although numerous genetic studies have been performed, only 0.9% of blood pressure phenotypic variance has been elucidated. This phenomenon could be partially due to epistatic interactions. Our aim was to identify epistatic interaction(s) associated with blood pressure levels in a pre-planned two-phase approach. METHODS AND RESULTS: In a discovery cohort composed of 3,600 French individuals, we found rs6046A allele in F7 associated with decreased blood pressure levels (P≤3.7×10(−3)) and rs5355T allele in SELE associated with decreased diastolic blood pressure levels (P = 5×10(−3)). Both variants interacted in order to influence blood pressure levels (P≤0.048). This interaction was replicated with systolic blood pressure in 4,620 additional European individuals (P = 0.03). Similarly, in this replication cohort, rs6046A was associated with decreased blood pressure levels (P≤8.5×10(−4)). Furthermore, in peripheral blood mononuclear cells of a subsample of 90 supposed healthy individuals, we found rs6046A positively associated with NAMPT mRNA levels (P≤9.1×10(−5)), suggesting an eventual involvement of NAMPT expression in blood pressure regulation. Confirming this hypothesis, further transcriptomic analyses showed that increased NAMPT mRNA levels were positively correlated with ICAM1, SELL, FPR1, DEFA1-3, and LL-37 genes expression (P≤5×10(−3)). The last two mRNA levels were positively associated with systolic blood pressure levels (P≤0.01) and explained 4% of its phenotypic variation. CONCLUSION: These findings reveal the importance of epistatic interactions in blood pressure genetics and give new insights for the role of inflammation in its complex regulation.
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spelling pubmed-33998622012-07-19 Functional Epistatic Interaction between rs6046G>A in F7 and rs5355C>T in SELE Modifies Systolic Blood Pressure Levels El Shamieh, Said Ndiaye, Ndeye Coumba Stathopoulou, Maria G. Murray, Helena A. Masson, Christine Lamont, John V. Fitzgerald, Peter Benetos, Athanase Visvikis-Siest, Sophie PLoS One Research Article BACKGROUND: Although numerous genetic studies have been performed, only 0.9% of blood pressure phenotypic variance has been elucidated. This phenomenon could be partially due to epistatic interactions. Our aim was to identify epistatic interaction(s) associated with blood pressure levels in a pre-planned two-phase approach. METHODS AND RESULTS: In a discovery cohort composed of 3,600 French individuals, we found rs6046A allele in F7 associated with decreased blood pressure levels (P≤3.7×10(−3)) and rs5355T allele in SELE associated with decreased diastolic blood pressure levels (P = 5×10(−3)). Both variants interacted in order to influence blood pressure levels (P≤0.048). This interaction was replicated with systolic blood pressure in 4,620 additional European individuals (P = 0.03). Similarly, in this replication cohort, rs6046A was associated with decreased blood pressure levels (P≤8.5×10(−4)). Furthermore, in peripheral blood mononuclear cells of a subsample of 90 supposed healthy individuals, we found rs6046A positively associated with NAMPT mRNA levels (P≤9.1×10(−5)), suggesting an eventual involvement of NAMPT expression in blood pressure regulation. Confirming this hypothesis, further transcriptomic analyses showed that increased NAMPT mRNA levels were positively correlated with ICAM1, SELL, FPR1, DEFA1-3, and LL-37 genes expression (P≤5×10(−3)). The last two mRNA levels were positively associated with systolic blood pressure levels (P≤0.01) and explained 4% of its phenotypic variation. CONCLUSION: These findings reveal the importance of epistatic interactions in blood pressure genetics and give new insights for the role of inflammation in its complex regulation. Public Library of Science 2012-07-18 /pmc/articles/PMC3399862/ /pubmed/22815813 http://dx.doi.org/10.1371/journal.pone.0040777 Text en El Shamieh 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
El Shamieh, Said
Ndiaye, Ndeye Coumba
Stathopoulou, Maria G.
Murray, Helena A.
Masson, Christine
Lamont, John V.
Fitzgerald, Peter
Benetos, Athanase
Visvikis-Siest, Sophie
Functional Epistatic Interaction between rs6046G>A in F7 and rs5355C>T in SELE Modifies Systolic Blood Pressure Levels
title Functional Epistatic Interaction between rs6046G>A in F7 and rs5355C>T in SELE Modifies Systolic Blood Pressure Levels
title_full Functional Epistatic Interaction between rs6046G>A in F7 and rs5355C>T in SELE Modifies Systolic Blood Pressure Levels
title_fullStr Functional Epistatic Interaction between rs6046G>A in F7 and rs5355C>T in SELE Modifies Systolic Blood Pressure Levels
title_full_unstemmed Functional Epistatic Interaction between rs6046G>A in F7 and rs5355C>T in SELE Modifies Systolic Blood Pressure Levels
title_short Functional Epistatic Interaction between rs6046G>A in F7 and rs5355C>T in SELE Modifies Systolic Blood Pressure Levels
title_sort functional epistatic interaction between rs6046g>a in f7 and rs5355c>t in sele modifies systolic blood pressure levels
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3399862/
https://www.ncbi.nlm.nih.gov/pubmed/22815813
http://dx.doi.org/10.1371/journal.pone.0040777
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