Cargando…

Novel mutations highlight the key role of the ankyrin repeat domain in TRPV4-mediated neuropathy

OBJECTIVE: To characterize 2 novel TRPV4 mutations in 2 unrelated families exhibiting the Charcot-Marie-Tooth disease type 2C (CMT2C) phenotype. METHODS: Direct CMT gene testing was performed on 2 unrelated families with CMT2C. A 4-fold symmetric tetramer model of human TRPV4 was generated to map th...

Descripción completa

Detalles Bibliográficos
Autores principales: Sullivan, Jeremy M., Zimanyi, Christina M., Aisenberg, William, Bears, Breanne, Chen, Dong-Hui, Day, John W., Bird, Thomas D., Siskind, Carly E., Gaudet, Rachelle, Sumner, Charlotte J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4811381/
https://www.ncbi.nlm.nih.gov/pubmed/27066566
http://dx.doi.org/10.1212/NXG.0000000000000029
_version_ 1782423941818613760
author Sullivan, Jeremy M.
Zimanyi, Christina M.
Aisenberg, William
Bears, Breanne
Chen, Dong-Hui
Day, John W.
Bird, Thomas D.
Siskind, Carly E.
Gaudet, Rachelle
Sumner, Charlotte J.
author_facet Sullivan, Jeremy M.
Zimanyi, Christina M.
Aisenberg, William
Bears, Breanne
Chen, Dong-Hui
Day, John W.
Bird, Thomas D.
Siskind, Carly E.
Gaudet, Rachelle
Sumner, Charlotte J.
author_sort Sullivan, Jeremy M.
collection PubMed
description OBJECTIVE: To characterize 2 novel TRPV4 mutations in 2 unrelated families exhibiting the Charcot-Marie-Tooth disease type 2C (CMT2C) phenotype. METHODS: Direct CMT gene testing was performed on 2 unrelated families with CMT2C. A 4-fold symmetric tetramer model of human TRPV4 was generated to map the locations of novel TRPV4 mutations in these families relative to previously identified disease-causing mutations (neuropathy, skeletal dysplasia, and osteoarthropathy). Effects of the mutations on TRPV4 expression, localization, and channel activity were determined by immunocytochemical, immunoblotting, Ca(2+) imaging, and cytotoxicity assays. RESULTS: Previous studies suggest that neuropathy-causing mutations occur primarily at arginine residues on the convex face of the TRPV4 ankyrin repeat domain (ARD). Further highlighting the key role of this domain in TRPV4-mediated hereditary neuropathy, we report 2 novel heterozygous missense mutations in the TRPV4-ARD convex face (p.Arg237Gly and p.Arg237Leu). Generation of a model of the TRPV4 homotetramer revealed that while ARD residues mutated in neuropathy (including Arg237) are likely accessible for intermolecular interactions, skeletal dysplasia–causing TRPV4 mutations occur at sites suggesting disruption of intramolecular and/or intersubunit interactions. Like previously described neuropathy-causing mutations, the p.Arg237Gly and p.Arg237Leu substitutions do not alter TRPV4 subcellular localization in transfected cells but cause elevations of cytosolic Ca(2+) levels and marked cytotoxicity. CONCLUSIONS: These findings expand the number of ARD residues mutated in TRPV4-mediated neuropathy, providing further evidence of the central importance of this domain to TRPV4 function in peripheral nerve.
format Online
Article
Text
id pubmed-4811381
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Wolters Kluwer
record_format MEDLINE/PubMed
spelling pubmed-48113812016-04-08 Novel mutations highlight the key role of the ankyrin repeat domain in TRPV4-mediated neuropathy Sullivan, Jeremy M. Zimanyi, Christina M. Aisenberg, William Bears, Breanne Chen, Dong-Hui Day, John W. Bird, Thomas D. Siskind, Carly E. Gaudet, Rachelle Sumner, Charlotte J. Neurol Genet Article OBJECTIVE: To characterize 2 novel TRPV4 mutations in 2 unrelated families exhibiting the Charcot-Marie-Tooth disease type 2C (CMT2C) phenotype. METHODS: Direct CMT gene testing was performed on 2 unrelated families with CMT2C. A 4-fold symmetric tetramer model of human TRPV4 was generated to map the locations of novel TRPV4 mutations in these families relative to previously identified disease-causing mutations (neuropathy, skeletal dysplasia, and osteoarthropathy). Effects of the mutations on TRPV4 expression, localization, and channel activity were determined by immunocytochemical, immunoblotting, Ca(2+) imaging, and cytotoxicity assays. RESULTS: Previous studies suggest that neuropathy-causing mutations occur primarily at arginine residues on the convex face of the TRPV4 ankyrin repeat domain (ARD). Further highlighting the key role of this domain in TRPV4-mediated hereditary neuropathy, we report 2 novel heterozygous missense mutations in the TRPV4-ARD convex face (p.Arg237Gly and p.Arg237Leu). Generation of a model of the TRPV4 homotetramer revealed that while ARD residues mutated in neuropathy (including Arg237) are likely accessible for intermolecular interactions, skeletal dysplasia–causing TRPV4 mutations occur at sites suggesting disruption of intramolecular and/or intersubunit interactions. Like previously described neuropathy-causing mutations, the p.Arg237Gly and p.Arg237Leu substitutions do not alter TRPV4 subcellular localization in transfected cells but cause elevations of cytosolic Ca(2+) levels and marked cytotoxicity. CONCLUSIONS: These findings expand the number of ARD residues mutated in TRPV4-mediated neuropathy, providing further evidence of the central importance of this domain to TRPV4 function in peripheral nerve. Wolters Kluwer 2015-10-22 /pmc/articles/PMC4811381/ /pubmed/27066566 http://dx.doi.org/10.1212/NXG.0000000000000029 Text en © 2015 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.
spellingShingle Article
Sullivan, Jeremy M.
Zimanyi, Christina M.
Aisenberg, William
Bears, Breanne
Chen, Dong-Hui
Day, John W.
Bird, Thomas D.
Siskind, Carly E.
Gaudet, Rachelle
Sumner, Charlotte J.
Novel mutations highlight the key role of the ankyrin repeat domain in TRPV4-mediated neuropathy
title Novel mutations highlight the key role of the ankyrin repeat domain in TRPV4-mediated neuropathy
title_full Novel mutations highlight the key role of the ankyrin repeat domain in TRPV4-mediated neuropathy
title_fullStr Novel mutations highlight the key role of the ankyrin repeat domain in TRPV4-mediated neuropathy
title_full_unstemmed Novel mutations highlight the key role of the ankyrin repeat domain in TRPV4-mediated neuropathy
title_short Novel mutations highlight the key role of the ankyrin repeat domain in TRPV4-mediated neuropathy
title_sort novel mutations highlight the key role of the ankyrin repeat domain in trpv4-mediated neuropathy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4811381/
https://www.ncbi.nlm.nih.gov/pubmed/27066566
http://dx.doi.org/10.1212/NXG.0000000000000029
work_keys_str_mv AT sullivanjeremym novelmutationshighlightthekeyroleoftheankyrinrepeatdomainintrpv4mediatedneuropathy
AT zimanyichristinam novelmutationshighlightthekeyroleoftheankyrinrepeatdomainintrpv4mediatedneuropathy
AT aisenbergwilliam novelmutationshighlightthekeyroleoftheankyrinrepeatdomainintrpv4mediatedneuropathy
AT bearsbreanne novelmutationshighlightthekeyroleoftheankyrinrepeatdomainintrpv4mediatedneuropathy
AT chendonghui novelmutationshighlightthekeyroleoftheankyrinrepeatdomainintrpv4mediatedneuropathy
AT dayjohnw novelmutationshighlightthekeyroleoftheankyrinrepeatdomainintrpv4mediatedneuropathy
AT birdthomasd novelmutationshighlightthekeyroleoftheankyrinrepeatdomainintrpv4mediatedneuropathy
AT siskindcarlye novelmutationshighlightthekeyroleoftheankyrinrepeatdomainintrpv4mediatedneuropathy
AT gaudetrachelle novelmutationshighlightthekeyroleoftheankyrinrepeatdomainintrpv4mediatedneuropathy
AT sumnercharlottej novelmutationshighlightthekeyroleoftheankyrinrepeatdomainintrpv4mediatedneuropathy