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Homozygous TRPV4 mutation causes congenital distal spinal muscular atrophy and arthrogryposis

OBJECTIVE: To identify the genetic cause of disease in a form of congenital spinal muscular atrophy and arthrogryposis (CSMAA). METHODS: A 2-year-old boy was diagnosed with arthrogryposis multiplex congenita, severe skeletal abnormalities, torticollis, vocal cord paralysis, and diminished lower limb...

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Autores principales: Velilla, Jose, Marchetti, Michael Mario, Toth-Petroczy, Agnes, Grosgogeat, Claire, Bennett, Alexis H., Carmichael, Nikkola, Estrella, Elicia, Darras, Basil T., Frank, Natasha Y., Krier, Joel, Gaudet, Rachelle, Gupta, Vandana A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6454305/
https://www.ncbi.nlm.nih.gov/pubmed/31041394
http://dx.doi.org/10.1212/NXG.0000000000000312
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author Velilla, Jose
Marchetti, Michael Mario
Toth-Petroczy, Agnes
Grosgogeat, Claire
Bennett, Alexis H.
Carmichael, Nikkola
Estrella, Elicia
Darras, Basil T.
Frank, Natasha Y.
Krier, Joel
Gaudet, Rachelle
Gupta, Vandana A.
author_facet Velilla, Jose
Marchetti, Michael Mario
Toth-Petroczy, Agnes
Grosgogeat, Claire
Bennett, Alexis H.
Carmichael, Nikkola
Estrella, Elicia
Darras, Basil T.
Frank, Natasha Y.
Krier, Joel
Gaudet, Rachelle
Gupta, Vandana A.
author_sort Velilla, Jose
collection PubMed
description OBJECTIVE: To identify the genetic cause of disease in a form of congenital spinal muscular atrophy and arthrogryposis (CSMAA). METHODS: A 2-year-old boy was diagnosed with arthrogryposis multiplex congenita, severe skeletal abnormalities, torticollis, vocal cord paralysis, and diminished lower limb movement. Whole-exome sequencing (WES) was performed on the proband and family members. In silico modeling of protein structure and heterologous protein expression and cytotoxicity assays were performed to validate pathogenicity of the identified variant. RESULTS: WES revealed a homozygous mutation in the TRPV4 gene (c.281C>T; p.S94L). The identification of a recessive mutation in TRPV4 extends the spectrum of mutations in recessive forms of the TRPV4-associated disease. p.S94L and other previously identified TRPV4 variants in different protein domains were compared in structural modeling and functional studies. In silico structural modeling suggests that the p.S94L mutation is in the disordered N-terminal region proximal to important regulatory binding sites for phosphoinositides and for PACSIN3, which could lead to alterations in trafficking and/or channel sensitivity. Functional studies by Western blot and immunohistochemical analysis show that p.S94L increased TRPV4 activity-based cytotoxicity and resultant decreased TRPV4 expression levels, therefore involves a gain-of-function mechanism. CONCLUSIONS: This study identifies a novel homozygous mutation in TRPV4 as a cause of the recessive form of CSMAA.
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spelling pubmed-64543052019-04-30 Homozygous TRPV4 mutation causes congenital distal spinal muscular atrophy and arthrogryposis Velilla, Jose Marchetti, Michael Mario Toth-Petroczy, Agnes Grosgogeat, Claire Bennett, Alexis H. Carmichael, Nikkola Estrella, Elicia Darras, Basil T. Frank, Natasha Y. Krier, Joel Gaudet, Rachelle Gupta, Vandana A. Neurol Genet Article OBJECTIVE: To identify the genetic cause of disease in a form of congenital spinal muscular atrophy and arthrogryposis (CSMAA). METHODS: A 2-year-old boy was diagnosed with arthrogryposis multiplex congenita, severe skeletal abnormalities, torticollis, vocal cord paralysis, and diminished lower limb movement. Whole-exome sequencing (WES) was performed on the proband and family members. In silico modeling of protein structure and heterologous protein expression and cytotoxicity assays were performed to validate pathogenicity of the identified variant. RESULTS: WES revealed a homozygous mutation in the TRPV4 gene (c.281C>T; p.S94L). The identification of a recessive mutation in TRPV4 extends the spectrum of mutations in recessive forms of the TRPV4-associated disease. p.S94L and other previously identified TRPV4 variants in different protein domains were compared in structural modeling and functional studies. In silico structural modeling suggests that the p.S94L mutation is in the disordered N-terminal region proximal to important regulatory binding sites for phosphoinositides and for PACSIN3, which could lead to alterations in trafficking and/or channel sensitivity. Functional studies by Western blot and immunohistochemical analysis show that p.S94L increased TRPV4 activity-based cytotoxicity and resultant decreased TRPV4 expression levels, therefore involves a gain-of-function mechanism. CONCLUSIONS: This study identifies a novel homozygous mutation in TRPV4 as a cause of the recessive form of CSMAA. Wolters Kluwer 2019-03-07 /pmc/articles/PMC6454305/ /pubmed/31041394 http://dx.doi.org/10.1212/NXG.0000000000000312 Text en Copyright © 2019 The Author(s). Published by Wolters Kluwer Health, Inc. on behalf of the American Academy of Neurology. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (http://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits downloading and sharing the work provided it is properly cited. The work cannot be changed in any way or used commercially without permission from the journal.
spellingShingle Article
Velilla, Jose
Marchetti, Michael Mario
Toth-Petroczy, Agnes
Grosgogeat, Claire
Bennett, Alexis H.
Carmichael, Nikkola
Estrella, Elicia
Darras, Basil T.
Frank, Natasha Y.
Krier, Joel
Gaudet, Rachelle
Gupta, Vandana A.
Homozygous TRPV4 mutation causes congenital distal spinal muscular atrophy and arthrogryposis
title Homozygous TRPV4 mutation causes congenital distal spinal muscular atrophy and arthrogryposis
title_full Homozygous TRPV4 mutation causes congenital distal spinal muscular atrophy and arthrogryposis
title_fullStr Homozygous TRPV4 mutation causes congenital distal spinal muscular atrophy and arthrogryposis
title_full_unstemmed Homozygous TRPV4 mutation causes congenital distal spinal muscular atrophy and arthrogryposis
title_short Homozygous TRPV4 mutation causes congenital distal spinal muscular atrophy and arthrogryposis
title_sort homozygous trpv4 mutation causes congenital distal spinal muscular atrophy and arthrogryposis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6454305/
https://www.ncbi.nlm.nih.gov/pubmed/31041394
http://dx.doi.org/10.1212/NXG.0000000000000312
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