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Genome-wide association reveals contribution of MRAS to painful temporomandibular disorder in males

Painful temporomandibular disorders (TMDs) are the leading cause of chronic orofacial pain, but its underlying molecular mechanisms remain obscure. Although many environmental factors have been associated with higher risk of developing painful TMD, family and twin studies support a heritable genetic...

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Autores principales: Smith, Shad B., Parisien, Marc, Bair, Eric, Belfer, Inna, Chabot-Doré, Anne-Julie, Gris, Pavel, Khoury, Samar, Tansley, Shannon, Torosyan, Yelizaveta, Zaykin, Dmitri V., Bernhardt, Olaf, de Oliveira Serrano, Priscila, Gracely, Richard H., Jain, Deepti, Järvelin, Marjo-Riitta, Kaste, Linda M., Kerr, Kathleen F., Kocher, Thomas, Lähdesmäki, Raija, Laniado, Nadia, Laurie, Cathy C., Laurie, Cecelia A., Männikkö, Minna, Meloto, Carolina B., Nackley, Andrea G., Nelson, Sarah C., Pesonen, Paula, Ribeiro-Dasilva, Margarete C., Rizzatti-Barbosa, Celia M., Sanders, Anne E., Schwahn, Christian, Sipilä, Kirsi, Sofer, Tamar, Teumer, Alexander, Mogil, Jeffrey S., Fillingim, Roger B., Greenspan, Joel D., Ohrbach, Richard, Slade, Gary D., Maixner, William, Diatchenko, Luda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6377338/
https://www.ncbi.nlm.nih.gov/pubmed/30431558
http://dx.doi.org/10.1097/j.pain.0000000000001438
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author Smith, Shad B.
Parisien, Marc
Bair, Eric
Belfer, Inna
Chabot-Doré, Anne-Julie
Gris, Pavel
Khoury, Samar
Tansley, Shannon
Torosyan, Yelizaveta
Zaykin, Dmitri V.
Bernhardt, Olaf
de Oliveira Serrano, Priscila
Gracely, Richard H.
Jain, Deepti
Järvelin, Marjo-Riitta
Kaste, Linda M.
Kerr, Kathleen F.
Kocher, Thomas
Lähdesmäki, Raija
Laniado, Nadia
Laurie, Cathy C.
Laurie, Cecelia A.
Männikkö, Minna
Meloto, Carolina B.
Nackley, Andrea G.
Nelson, Sarah C.
Pesonen, Paula
Ribeiro-Dasilva, Margarete C.
Rizzatti-Barbosa, Celia M.
Sanders, Anne E.
Schwahn, Christian
Sipilä, Kirsi
Sofer, Tamar
Teumer, Alexander
Mogil, Jeffrey S.
Fillingim, Roger B.
Greenspan, Joel D.
Ohrbach, Richard
Slade, Gary D.
Maixner, William
Diatchenko, Luda
author_facet Smith, Shad B.
Parisien, Marc
Bair, Eric
Belfer, Inna
Chabot-Doré, Anne-Julie
Gris, Pavel
Khoury, Samar
Tansley, Shannon
Torosyan, Yelizaveta
Zaykin, Dmitri V.
Bernhardt, Olaf
de Oliveira Serrano, Priscila
Gracely, Richard H.
Jain, Deepti
Järvelin, Marjo-Riitta
Kaste, Linda M.
Kerr, Kathleen F.
Kocher, Thomas
Lähdesmäki, Raija
Laniado, Nadia
Laurie, Cathy C.
Laurie, Cecelia A.
Männikkö, Minna
Meloto, Carolina B.
Nackley, Andrea G.
Nelson, Sarah C.
Pesonen, Paula
Ribeiro-Dasilva, Margarete C.
Rizzatti-Barbosa, Celia M.
Sanders, Anne E.
Schwahn, Christian
Sipilä, Kirsi
Sofer, Tamar
Teumer, Alexander
Mogil, Jeffrey S.
Fillingim, Roger B.
Greenspan, Joel D.
Ohrbach, Richard
Slade, Gary D.
Maixner, William
Diatchenko, Luda
author_sort Smith, Shad B.
collection PubMed
description Painful temporomandibular disorders (TMDs) are the leading cause of chronic orofacial pain, but its underlying molecular mechanisms remain obscure. Although many environmental factors have been associated with higher risk of developing painful TMD, family and twin studies support a heritable genetic component as well. We performed a genome-wide association study assuming an additive genetic model of TMD in a discovery cohort of 999 cases and 2031 TMD-free controls from the Orofacial Pain: Prospective Evaluation and Risk Assessment (OPPERA) study. Using logistic models adjusted for sex, age, enrollment site, and race, we identified 3 distinct loci that were significant in combined or sex-segregated analyses. A single-nucleotide polymorphism on chromosome 3 (rs13078961) was significantly associated with TMD in males only (odds ratio = 2.9, 95% confidence interval: 2.02-4.27, P = 2.2 × 10(−8)). This association was nominally replicated in a meta-analysis of 7 independent orofacial pain cohorts including 160,194 participants (odds ratio = 1.16, 95% confidence interval: 1.0-1.35, P = 2.3 × 10(−2)). Functional analysis in human dorsal root ganglia and blood indicated this variant is an expression quantitative trait locus, with the minor allele associated with decreased expression of the nearby muscle RAS oncogene homolog (MRAS) gene (beta = −0.51, P = 2.43 × 10(−5)). Male mice, but not female mice, with a null mutation of Mras displayed persistent mechanical allodynia in a model of inflammatory pain. Genetic and behavioral evidence support a novel mechanism by which genetically determined MRAS expression moderates the resiliency to chronic pain. This effect is male-specific and may contribute to the lower rates of painful TMD in men.
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spelling pubmed-63773382019-03-16 Genome-wide association reveals contribution of MRAS to painful temporomandibular disorder in males Smith, Shad B. Parisien, Marc Bair, Eric Belfer, Inna Chabot-Doré, Anne-Julie Gris, Pavel Khoury, Samar Tansley, Shannon Torosyan, Yelizaveta Zaykin, Dmitri V. Bernhardt, Olaf de Oliveira Serrano, Priscila Gracely, Richard H. Jain, Deepti Järvelin, Marjo-Riitta Kaste, Linda M. Kerr, Kathleen F. Kocher, Thomas Lähdesmäki, Raija Laniado, Nadia Laurie, Cathy C. Laurie, Cecelia A. Männikkö, Minna Meloto, Carolina B. Nackley, Andrea G. Nelson, Sarah C. Pesonen, Paula Ribeiro-Dasilva, Margarete C. Rizzatti-Barbosa, Celia M. Sanders, Anne E. Schwahn, Christian Sipilä, Kirsi Sofer, Tamar Teumer, Alexander Mogil, Jeffrey S. Fillingim, Roger B. Greenspan, Joel D. Ohrbach, Richard Slade, Gary D. Maixner, William Diatchenko, Luda Pain Research Paper Painful temporomandibular disorders (TMDs) are the leading cause of chronic orofacial pain, but its underlying molecular mechanisms remain obscure. Although many environmental factors have been associated with higher risk of developing painful TMD, family and twin studies support a heritable genetic component as well. We performed a genome-wide association study assuming an additive genetic model of TMD in a discovery cohort of 999 cases and 2031 TMD-free controls from the Orofacial Pain: Prospective Evaluation and Risk Assessment (OPPERA) study. Using logistic models adjusted for sex, age, enrollment site, and race, we identified 3 distinct loci that were significant in combined or sex-segregated analyses. A single-nucleotide polymorphism on chromosome 3 (rs13078961) was significantly associated with TMD in males only (odds ratio = 2.9, 95% confidence interval: 2.02-4.27, P = 2.2 × 10(−8)). This association was nominally replicated in a meta-analysis of 7 independent orofacial pain cohorts including 160,194 participants (odds ratio = 1.16, 95% confidence interval: 1.0-1.35, P = 2.3 × 10(−2)). Functional analysis in human dorsal root ganglia and blood indicated this variant is an expression quantitative trait locus, with the minor allele associated with decreased expression of the nearby muscle RAS oncogene homolog (MRAS) gene (beta = −0.51, P = 2.43 × 10(−5)). Male mice, but not female mice, with a null mutation of Mras displayed persistent mechanical allodynia in a model of inflammatory pain. Genetic and behavioral evidence support a novel mechanism by which genetically determined MRAS expression moderates the resiliency to chronic pain. This effect is male-specific and may contribute to the lower rates of painful TMD in men. Wolters Kluwer 2019-03 2018-11-13 /pmc/articles/PMC6377338/ /pubmed/30431558 http://dx.doi.org/10.1097/j.pain.0000000000001438 Text en Written work prepared by employees of the Federal Government as part of their official duties is, under the U.S. Copyright Act, a “work of the United States Government” for which copyright protection under Title 17 of the United States Code is not available. As such, copyright does not extend to the contributions of employees of the Federal Government. This is an open-access article distributed under the terms of the Creative Commons Attribution-Non Commercial-No Derivatives License 4.0 (CCBY-NC-ND) (http://creativecommons.org/licenses/by-nc-nd/4.0/) , where it is permissible to download and share the work provided it is properly cited. The work cannot be changed in any way or used commercially without permission from the journal.
spellingShingle Research Paper
Smith, Shad B.
Parisien, Marc
Bair, Eric
Belfer, Inna
Chabot-Doré, Anne-Julie
Gris, Pavel
Khoury, Samar
Tansley, Shannon
Torosyan, Yelizaveta
Zaykin, Dmitri V.
Bernhardt, Olaf
de Oliveira Serrano, Priscila
Gracely, Richard H.
Jain, Deepti
Järvelin, Marjo-Riitta
Kaste, Linda M.
Kerr, Kathleen F.
Kocher, Thomas
Lähdesmäki, Raija
Laniado, Nadia
Laurie, Cathy C.
Laurie, Cecelia A.
Männikkö, Minna
Meloto, Carolina B.
Nackley, Andrea G.
Nelson, Sarah C.
Pesonen, Paula
Ribeiro-Dasilva, Margarete C.
Rizzatti-Barbosa, Celia M.
Sanders, Anne E.
Schwahn, Christian
Sipilä, Kirsi
Sofer, Tamar
Teumer, Alexander
Mogil, Jeffrey S.
Fillingim, Roger B.
Greenspan, Joel D.
Ohrbach, Richard
Slade, Gary D.
Maixner, William
Diatchenko, Luda
Genome-wide association reveals contribution of MRAS to painful temporomandibular disorder in males
title Genome-wide association reveals contribution of MRAS to painful temporomandibular disorder in males
title_full Genome-wide association reveals contribution of MRAS to painful temporomandibular disorder in males
title_fullStr Genome-wide association reveals contribution of MRAS to painful temporomandibular disorder in males
title_full_unstemmed Genome-wide association reveals contribution of MRAS to painful temporomandibular disorder in males
title_short Genome-wide association reveals contribution of MRAS to painful temporomandibular disorder in males
title_sort genome-wide association reveals contribution of mras to painful temporomandibular disorder in males
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6377338/
https://www.ncbi.nlm.nih.gov/pubmed/30431558
http://dx.doi.org/10.1097/j.pain.0000000000001438
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