Cargando…

Variants of Transient Receptor Potential Melastatin Member 4 in Childhood Atrioventricular Block

BACKGROUND: Transient receptor potential melastatin member 4 (TRPM4) is a nonselective cation channel. TRPM4 mutations have been linked to cardiac conduction disease and Brugada syndrome. The mechanisms underlying TRPM4‐dependent conduction slowing are not fully understood. The aim of this study was...

Descripción completa

Detalles Bibliográficos
Autores principales: Syam, Ninda, Chatel, Stéphanie, Ozhathil, Lijo Cherian, Sottas, Valentin, Rougier, Jean‐Sébastien, Baruteau, Alban, Baron, Estelle, Amarouch, Mohamed‐Yassine, Daumy, Xavier, Probst, Vincent, Schott, Jean‐Jacques, Abriel, Hugues
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4889160/
https://www.ncbi.nlm.nih.gov/pubmed/27207958
http://dx.doi.org/10.1161/JAHA.114.001625
_version_ 1782434956000100352
author Syam, Ninda
Chatel, Stéphanie
Ozhathil, Lijo Cherian
Sottas, Valentin
Rougier, Jean‐Sébastien
Baruteau, Alban
Baron, Estelle
Amarouch, Mohamed‐Yassine
Daumy, Xavier
Probst, Vincent
Schott, Jean‐Jacques
Abriel, Hugues
author_facet Syam, Ninda
Chatel, Stéphanie
Ozhathil, Lijo Cherian
Sottas, Valentin
Rougier, Jean‐Sébastien
Baruteau, Alban
Baron, Estelle
Amarouch, Mohamed‐Yassine
Daumy, Xavier
Probst, Vincent
Schott, Jean‐Jacques
Abriel, Hugues
author_sort Syam, Ninda
collection PubMed
description BACKGROUND: Transient receptor potential melastatin member 4 (TRPM4) is a nonselective cation channel. TRPM4 mutations have been linked to cardiac conduction disease and Brugada syndrome. The mechanisms underlying TRPM4‐dependent conduction slowing are not fully understood. The aim of this study was to characterize TRPM4 genetic variants found in patients with congenital or childhood atrioventricular block. METHODS AND RESULTS: Ninety‐one patients with congenital or childhood atrioventricular block were screened for candidate genes. Five rare TRPM4 genetic variants were identified and investigated. The variants were expressed heterologously in HEK293 cells. Two of the variants, A432T and A432T/G582S, showed decreased expression of the protein at the cell membrane; inversely, the G582S variant showed increased expression. Further functional characterization of these variants using whole‐cell patch‐clamp configuration showed a loss of function and a gain of function, respectively. We hypothesized that the observed decrease in expression was caused by a folding and trafficking defect. This was supported by the observation that incubation of these variants at lower temperature partially rescued their expression and function. Previous studies have suggested that altered SUMOylation of TRPM4 may cause a gain of function; however, we did not find any evidence that supports SUMOylation as being directly involved for the gain‐of‐function variant. CONCLUSIONS: This study underpins the role of TRPM4 in the cardiac conduction system. The loss‐of‐function variants A432T/G582S found in 2 unrelated patients with atrioventricular block are most likely caused by misfolding‐dependent altered trafficking. The ability to rescue this variant with lower temperature may provide a novel use of pharmacological chaperones in treatment strategies.
format Online
Article
Text
id pubmed-4889160
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-48891602016-06-09 Variants of Transient Receptor Potential Melastatin Member 4 in Childhood Atrioventricular Block Syam, Ninda Chatel, Stéphanie Ozhathil, Lijo Cherian Sottas, Valentin Rougier, Jean‐Sébastien Baruteau, Alban Baron, Estelle Amarouch, Mohamed‐Yassine Daumy, Xavier Probst, Vincent Schott, Jean‐Jacques Abriel, Hugues J Am Heart Assoc Original Research BACKGROUND: Transient receptor potential melastatin member 4 (TRPM4) is a nonselective cation channel. TRPM4 mutations have been linked to cardiac conduction disease and Brugada syndrome. The mechanisms underlying TRPM4‐dependent conduction slowing are not fully understood. The aim of this study was to characterize TRPM4 genetic variants found in patients with congenital or childhood atrioventricular block. METHODS AND RESULTS: Ninety‐one patients with congenital or childhood atrioventricular block were screened for candidate genes. Five rare TRPM4 genetic variants were identified and investigated. The variants were expressed heterologously in HEK293 cells. Two of the variants, A432T and A432T/G582S, showed decreased expression of the protein at the cell membrane; inversely, the G582S variant showed increased expression. Further functional characterization of these variants using whole‐cell patch‐clamp configuration showed a loss of function and a gain of function, respectively. We hypothesized that the observed decrease in expression was caused by a folding and trafficking defect. This was supported by the observation that incubation of these variants at lower temperature partially rescued their expression and function. Previous studies have suggested that altered SUMOylation of TRPM4 may cause a gain of function; however, we did not find any evidence that supports SUMOylation as being directly involved for the gain‐of‐function variant. CONCLUSIONS: This study underpins the role of TRPM4 in the cardiac conduction system. The loss‐of‐function variants A432T/G582S found in 2 unrelated patients with atrioventricular block are most likely caused by misfolding‐dependent altered trafficking. The ability to rescue this variant with lower temperature may provide a novel use of pharmacological chaperones in treatment strategies. John Wiley and Sons Inc. 2016-05-20 /pmc/articles/PMC4889160/ /pubmed/27207958 http://dx.doi.org/10.1161/JAHA.114.001625 Text en © 2016 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley Blackwell. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial (http://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Research
Syam, Ninda
Chatel, Stéphanie
Ozhathil, Lijo Cherian
Sottas, Valentin
Rougier, Jean‐Sébastien
Baruteau, Alban
Baron, Estelle
Amarouch, Mohamed‐Yassine
Daumy, Xavier
Probst, Vincent
Schott, Jean‐Jacques
Abriel, Hugues
Variants of Transient Receptor Potential Melastatin Member 4 in Childhood Atrioventricular Block
title Variants of Transient Receptor Potential Melastatin Member 4 in Childhood Atrioventricular Block
title_full Variants of Transient Receptor Potential Melastatin Member 4 in Childhood Atrioventricular Block
title_fullStr Variants of Transient Receptor Potential Melastatin Member 4 in Childhood Atrioventricular Block
title_full_unstemmed Variants of Transient Receptor Potential Melastatin Member 4 in Childhood Atrioventricular Block
title_short Variants of Transient Receptor Potential Melastatin Member 4 in Childhood Atrioventricular Block
title_sort variants of transient receptor potential melastatin member 4 in childhood atrioventricular block
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4889160/
https://www.ncbi.nlm.nih.gov/pubmed/27207958
http://dx.doi.org/10.1161/JAHA.114.001625
work_keys_str_mv AT syamninda variantsoftransientreceptorpotentialmelastatinmember4inchildhoodatrioventricularblock
AT chatelstephanie variantsoftransientreceptorpotentialmelastatinmember4inchildhoodatrioventricularblock
AT ozhathillijocherian variantsoftransientreceptorpotentialmelastatinmember4inchildhoodatrioventricularblock
AT sottasvalentin variantsoftransientreceptorpotentialmelastatinmember4inchildhoodatrioventricularblock
AT rougierjeansebastien variantsoftransientreceptorpotentialmelastatinmember4inchildhoodatrioventricularblock
AT baruteaualban variantsoftransientreceptorpotentialmelastatinmember4inchildhoodatrioventricularblock
AT baronestelle variantsoftransientreceptorpotentialmelastatinmember4inchildhoodatrioventricularblock
AT amarouchmohamedyassine variantsoftransientreceptorpotentialmelastatinmember4inchildhoodatrioventricularblock
AT daumyxavier variantsoftransientreceptorpotentialmelastatinmember4inchildhoodatrioventricularblock
AT probstvincent variantsoftransientreceptorpotentialmelastatinmember4inchildhoodatrioventricularblock
AT schottjeanjacques variantsoftransientreceptorpotentialmelastatinmember4inchildhoodatrioventricularblock
AT abrielhugues variantsoftransientreceptorpotentialmelastatinmember4inchildhoodatrioventricularblock