Cargando…

Impaired surface membrane insertion of homo- and heterodimeric human muscle chloride channels carrying amino-terminal myotonia-causing mutations

Mutations in the muscle chloride channel gene (CLCN1) cause myotonia congenita, an inherited condition characterized by muscle stiffness upon sudden forceful movement. We here studied the functional consequences of four disease-causing mutations that predict amino acid substitutions Q43R, S70L, Y137...

Descripción completa

Detalles Bibliográficos
Autores principales: Ronstedt, Katharina, Sternberg, Damien, Detro-Dassen, Silvia, Gramkow, Thomas, Begemann, Birgit, Becher, Toni, Kilian, Petra, Grieschat, Matthias, Machtens, Jan-Philipp, Schmalzing, Günther, Fischer, Martin, Fahlke, Christoph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4621517/
https://www.ncbi.nlm.nih.gov/pubmed/26502825
http://dx.doi.org/10.1038/srep15382
_version_ 1782397454931460096
author Ronstedt, Katharina
Sternberg, Damien
Detro-Dassen, Silvia
Gramkow, Thomas
Begemann, Birgit
Becher, Toni
Kilian, Petra
Grieschat, Matthias
Machtens, Jan-Philipp
Schmalzing, Günther
Fischer, Martin
Fahlke, Christoph
author_facet Ronstedt, Katharina
Sternberg, Damien
Detro-Dassen, Silvia
Gramkow, Thomas
Begemann, Birgit
Becher, Toni
Kilian, Petra
Grieschat, Matthias
Machtens, Jan-Philipp
Schmalzing, Günther
Fischer, Martin
Fahlke, Christoph
author_sort Ronstedt, Katharina
collection PubMed
description Mutations in the muscle chloride channel gene (CLCN1) cause myotonia congenita, an inherited condition characterized by muscle stiffness upon sudden forceful movement. We here studied the functional consequences of four disease-causing mutations that predict amino acid substitutions Q43R, S70L, Y137D and Q160H. Wild-type (WT) and mutant hClC-1 channels were heterologously expressed as YFP or CFP fusion protein in HEK293T cells and analyzed by whole-cell patch clamp and fluorescence recordings on individual cells. Q43R, Y137D and Q160H, but not S70L reduced macroscopic current amplitudes, but left channel gating and unitary current amplitudes unaffected. We developed a novel assay combining electrophysiological and fluorescence measurements at the single-cell level in order to measure the probability of ion channel surface membrane insertion. With the exception of S70L, all tested mutations significantly reduced the relative number of homodimeric hClC-1 channels in the surface membrane. The strongest effect was seen for Q43R that reduced the surface insertion probability by more than 99% in Q43R homodimeric channels and by 92 ± 3% in heterodimeric WT/Q43R channels compared to homodimeric WT channels. The new method offers a sensitive approach to investigate mutations that were reported to cause channelopathies, but display only minor changes in ion channel function.
format Online
Article
Text
id pubmed-4621517
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-46215172015-10-29 Impaired surface membrane insertion of homo- and heterodimeric human muscle chloride channels carrying amino-terminal myotonia-causing mutations Ronstedt, Katharina Sternberg, Damien Detro-Dassen, Silvia Gramkow, Thomas Begemann, Birgit Becher, Toni Kilian, Petra Grieschat, Matthias Machtens, Jan-Philipp Schmalzing, Günther Fischer, Martin Fahlke, Christoph Sci Rep Article Mutations in the muscle chloride channel gene (CLCN1) cause myotonia congenita, an inherited condition characterized by muscle stiffness upon sudden forceful movement. We here studied the functional consequences of four disease-causing mutations that predict amino acid substitutions Q43R, S70L, Y137D and Q160H. Wild-type (WT) and mutant hClC-1 channels were heterologously expressed as YFP or CFP fusion protein in HEK293T cells and analyzed by whole-cell patch clamp and fluorescence recordings on individual cells. Q43R, Y137D and Q160H, but not S70L reduced macroscopic current amplitudes, but left channel gating and unitary current amplitudes unaffected. We developed a novel assay combining electrophysiological and fluorescence measurements at the single-cell level in order to measure the probability of ion channel surface membrane insertion. With the exception of S70L, all tested mutations significantly reduced the relative number of homodimeric hClC-1 channels in the surface membrane. The strongest effect was seen for Q43R that reduced the surface insertion probability by more than 99% in Q43R homodimeric channels and by 92 ± 3% in heterodimeric WT/Q43R channels compared to homodimeric WT channels. The new method offers a sensitive approach to investigate mutations that were reported to cause channelopathies, but display only minor changes in ion channel function. Nature Publishing Group 2015-10-27 /pmc/articles/PMC4621517/ /pubmed/26502825 http://dx.doi.org/10.1038/srep15382 Text en Copyright © 2015, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Ronstedt, Katharina
Sternberg, Damien
Detro-Dassen, Silvia
Gramkow, Thomas
Begemann, Birgit
Becher, Toni
Kilian, Petra
Grieschat, Matthias
Machtens, Jan-Philipp
Schmalzing, Günther
Fischer, Martin
Fahlke, Christoph
Impaired surface membrane insertion of homo- and heterodimeric human muscle chloride channels carrying amino-terminal myotonia-causing mutations
title Impaired surface membrane insertion of homo- and heterodimeric human muscle chloride channels carrying amino-terminal myotonia-causing mutations
title_full Impaired surface membrane insertion of homo- and heterodimeric human muscle chloride channels carrying amino-terminal myotonia-causing mutations
title_fullStr Impaired surface membrane insertion of homo- and heterodimeric human muscle chloride channels carrying amino-terminal myotonia-causing mutations
title_full_unstemmed Impaired surface membrane insertion of homo- and heterodimeric human muscle chloride channels carrying amino-terminal myotonia-causing mutations
title_short Impaired surface membrane insertion of homo- and heterodimeric human muscle chloride channels carrying amino-terminal myotonia-causing mutations
title_sort impaired surface membrane insertion of homo- and heterodimeric human muscle chloride channels carrying amino-terminal myotonia-causing mutations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4621517/
https://www.ncbi.nlm.nih.gov/pubmed/26502825
http://dx.doi.org/10.1038/srep15382
work_keys_str_mv AT ronstedtkatharina impairedsurfacemembraneinsertionofhomoandheterodimerichumanmusclechloridechannelscarryingaminoterminalmyotoniacausingmutations
AT sternbergdamien impairedsurfacemembraneinsertionofhomoandheterodimerichumanmusclechloridechannelscarryingaminoterminalmyotoniacausingmutations
AT detrodassensilvia impairedsurfacemembraneinsertionofhomoandheterodimerichumanmusclechloridechannelscarryingaminoterminalmyotoniacausingmutations
AT gramkowthomas impairedsurfacemembraneinsertionofhomoandheterodimerichumanmusclechloridechannelscarryingaminoterminalmyotoniacausingmutations
AT begemannbirgit impairedsurfacemembraneinsertionofhomoandheterodimerichumanmusclechloridechannelscarryingaminoterminalmyotoniacausingmutations
AT bechertoni impairedsurfacemembraneinsertionofhomoandheterodimerichumanmusclechloridechannelscarryingaminoterminalmyotoniacausingmutations
AT kilianpetra impairedsurfacemembraneinsertionofhomoandheterodimerichumanmusclechloridechannelscarryingaminoterminalmyotoniacausingmutations
AT grieschatmatthias impairedsurfacemembraneinsertionofhomoandheterodimerichumanmusclechloridechannelscarryingaminoterminalmyotoniacausingmutations
AT machtensjanphilipp impairedsurfacemembraneinsertionofhomoandheterodimerichumanmusclechloridechannelscarryingaminoterminalmyotoniacausingmutations
AT schmalzinggunther impairedsurfacemembraneinsertionofhomoandheterodimerichumanmusclechloridechannelscarryingaminoterminalmyotoniacausingmutations
AT fischermartin impairedsurfacemembraneinsertionofhomoandheterodimerichumanmusclechloridechannelscarryingaminoterminalmyotoniacausingmutations
AT fahlkechristoph impairedsurfacemembraneinsertionofhomoandheterodimerichumanmusclechloridechannelscarryingaminoterminalmyotoniacausingmutations