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COMT gene locus: new functional variants

Catechol-O-methyltransferase (COMT) metabolizes catecholaminergic neurotransmitters. Numerous studies have linked COMT to pivotal brain functions such as mood, cognition, response to stress, and pain. Both nociception and risk of clinical pain have been associated with COMT genetic variants, and thi...

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Autores principales: Meloto, Carolina B., Segall, Samantha K., Smith, Shad, Parisien, Marc, Shabalina, Svetlana A., Rizzatti-Barbosa, Célia M., Gauthier, Josée, Tsao, Douglas, Convertino, Marino, Piltonen, Marjo H., Slade, Gary Dmitri, Fillingim, Roger B., Greenspan, Joel D., Ohrbach, Richard, Knott, Charles, Maixner, William, Zaykin, Dmitri, Dokholyan, Nikolay V., Reenilä, Ilkka, Männistö, Pekka T., Diatchenko, Luda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4748386/
https://www.ncbi.nlm.nih.gov/pubmed/26207649
http://dx.doi.org/10.1097/j.pain.0000000000000273
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author Meloto, Carolina B.
Segall, Samantha K.
Smith, Shad
Parisien, Marc
Shabalina, Svetlana A.
Rizzatti-Barbosa, Célia M.
Gauthier, Josée
Tsao, Douglas
Convertino, Marino
Piltonen, Marjo H.
Slade, Gary Dmitri
Fillingim, Roger B.
Greenspan, Joel D.
Ohrbach, Richard
Knott, Charles
Maixner, William
Zaykin, Dmitri
Dokholyan, Nikolay V.
Reenilä, Ilkka
Männistö, Pekka T.
Diatchenko, Luda
author_facet Meloto, Carolina B.
Segall, Samantha K.
Smith, Shad
Parisien, Marc
Shabalina, Svetlana A.
Rizzatti-Barbosa, Célia M.
Gauthier, Josée
Tsao, Douglas
Convertino, Marino
Piltonen, Marjo H.
Slade, Gary Dmitri
Fillingim, Roger B.
Greenspan, Joel D.
Ohrbach, Richard
Knott, Charles
Maixner, William
Zaykin, Dmitri
Dokholyan, Nikolay V.
Reenilä, Ilkka
Männistö, Pekka T.
Diatchenko, Luda
author_sort Meloto, Carolina B.
collection PubMed
description Catechol-O-methyltransferase (COMT) metabolizes catecholaminergic neurotransmitters. Numerous studies have linked COMT to pivotal brain functions such as mood, cognition, response to stress, and pain. Both nociception and risk of clinical pain have been associated with COMT genetic variants, and this association was shown to be mediated through adrenergic pathways. Here, we show that association studies between COMT polymorphic markers and pain phenotypes in 2 independent cohorts identified a functional marker, rs165774, situated in the 3′ untranslated region of a newfound splice variant, (a)-COMT. Sequence comparisons showed that the (a)-COMT transcript is highly conserved in primates, and deep sequencing data demonstrated that (a)-COMT is expressed across several human tissues, including the brain. In silico analyses showed that the (a)-COMT enzyme features a distinct C-terminus structure, capable of stabilizing substrates in its active site. In vitro experiments demonstrated not only that (a)-COMT is catalytically active but also that it displays unique substrate specificity, exhibiting enzymatic activity with dopamine but not epinephrine. They also established that the pain-protective A allele of rs165774 coincides with lower COMT activity, suggesting contribution to decreased pain sensitivity through increased dopaminergic rather than decreased adrenergic tone, characteristic of reference isoforms. Our results provide evidence for an essential role of the (a)-COMT isoform in nociceptive signaling and suggest that genetic variations in (a)-COMT isoforms may contribute to individual variability in pain phenotypes.
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spelling pubmed-47483862016-03-19 COMT gene locus: new functional variants Meloto, Carolina B. Segall, Samantha K. Smith, Shad Parisien, Marc Shabalina, Svetlana A. Rizzatti-Barbosa, Célia M. Gauthier, Josée Tsao, Douglas Convertino, Marino Piltonen, Marjo H. Slade, Gary Dmitri Fillingim, Roger B. Greenspan, Joel D. Ohrbach, Richard Knott, Charles Maixner, William Zaykin, Dmitri Dokholyan, Nikolay V. Reenilä, Ilkka Männistö, Pekka T. Diatchenko, Luda Pain Research Paper Catechol-O-methyltransferase (COMT) metabolizes catecholaminergic neurotransmitters. Numerous studies have linked COMT to pivotal brain functions such as mood, cognition, response to stress, and pain. Both nociception and risk of clinical pain have been associated with COMT genetic variants, and this association was shown to be mediated through adrenergic pathways. Here, we show that association studies between COMT polymorphic markers and pain phenotypes in 2 independent cohorts identified a functional marker, rs165774, situated in the 3′ untranslated region of a newfound splice variant, (a)-COMT. Sequence comparisons showed that the (a)-COMT transcript is highly conserved in primates, and deep sequencing data demonstrated that (a)-COMT is expressed across several human tissues, including the brain. In silico analyses showed that the (a)-COMT enzyme features a distinct C-terminus structure, capable of stabilizing substrates in its active site. In vitro experiments demonstrated not only that (a)-COMT is catalytically active but also that it displays unique substrate specificity, exhibiting enzymatic activity with dopamine but not epinephrine. They also established that the pain-protective A allele of rs165774 coincides with lower COMT activity, suggesting contribution to decreased pain sensitivity through increased dopaminergic rather than decreased adrenergic tone, characteristic of reference isoforms. Our results provide evidence for an essential role of the (a)-COMT isoform in nociceptive signaling and suggest that genetic variations in (a)-COMT isoforms may contribute to individual variability in pain phenotypes. Wolters Kluwer 2015-07-23 2015-10 /pmc/articles/PMC4748386/ /pubmed/26207649 http://dx.doi.org/10.1097/j.pain.0000000000000273 Text en © 2015 International Association for the Study of Pain
spellingShingle Research Paper
Meloto, Carolina B.
Segall, Samantha K.
Smith, Shad
Parisien, Marc
Shabalina, Svetlana A.
Rizzatti-Barbosa, Célia M.
Gauthier, Josée
Tsao, Douglas
Convertino, Marino
Piltonen, Marjo H.
Slade, Gary Dmitri
Fillingim, Roger B.
Greenspan, Joel D.
Ohrbach, Richard
Knott, Charles
Maixner, William
Zaykin, Dmitri
Dokholyan, Nikolay V.
Reenilä, Ilkka
Männistö, Pekka T.
Diatchenko, Luda
COMT gene locus: new functional variants
title COMT gene locus: new functional variants
title_full COMT gene locus: new functional variants
title_fullStr COMT gene locus: new functional variants
title_full_unstemmed COMT gene locus: new functional variants
title_short COMT gene locus: new functional variants
title_sort comt gene locus: new functional variants
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4748386/
https://www.ncbi.nlm.nih.gov/pubmed/26207649
http://dx.doi.org/10.1097/j.pain.0000000000000273
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