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The Arrhythmogenic Calmodulin p.Phe142Leu Mutation Impairs C-domain Ca(2+) Binding but Not Calmodulin-dependent Inhibition of the Cardiac Ryanodine Receptor
A number of point mutations in the intracellular Ca(2+)-sensing protein calmodulin (CaM) are arrhythmogenic, yet their underlying mechanisms are not clear. These mutations generally decrease Ca(2+) binding to CaM and impair inhibition of CaM-regulated Ca(2+) channels like the cardiac Ca(2+) release...
Autores principales: | , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Society for Biochemistry and Molecular Biology
2017
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5270481/ https://www.ncbi.nlm.nih.gov/pubmed/27927985 http://dx.doi.org/10.1074/jbc.M116.766253 |
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author | Søndergaard, Mads Toft Liu, Yingjie Larsen, Kamilla Taunsig Nani, Alma Tian, Xixi Holt, Christian Wang, Ruiwu Wimmer, Reinhard Van Petegem, Filip Fill, Michael Chen, S. R. Wayne Overgaard, Michael Toft |
author_facet | Søndergaard, Mads Toft Liu, Yingjie Larsen, Kamilla Taunsig Nani, Alma Tian, Xixi Holt, Christian Wang, Ruiwu Wimmer, Reinhard Van Petegem, Filip Fill, Michael Chen, S. R. Wayne Overgaard, Michael Toft |
author_sort | Søndergaard, Mads Toft |
collection | PubMed |
description | A number of point mutations in the intracellular Ca(2+)-sensing protein calmodulin (CaM) are arrhythmogenic, yet their underlying mechanisms are not clear. These mutations generally decrease Ca(2+) binding to CaM and impair inhibition of CaM-regulated Ca(2+) channels like the cardiac Ca(2+) release channel (ryanodine receptor, RyR2), and it appears that attenuated CaM Ca(2+) binding correlates with impaired CaM-dependent RyR2 inhibition. Here, we investigated the RyR2 inhibitory action of the CaM p.Phe142Leu mutation (F142L; numbered including the start-Met), which markedly reduces CaM Ca(2+) binding. Surprisingly, CaM-F142L had little to no aberrant effect on RyR2-mediated store overload-induced Ca(2+) release in HEK293 cells compared with CaM-WT. Furthermore, CaM-F142L enhanced CaM-dependent RyR2 inhibition at the single channel level compared with CaM-WT. This is in stark contrast to the actions of arrhythmogenic CaM mutations N54I, D96V, N98S, and D130G, which all diminish CaM-dependent RyR2 inhibition. Thermodynamic analysis showed that apoCaM-F142L converts an endothermal interaction between CaM and the CaM-binding domain (CaMBD) of RyR2 into an exothermal one. Moreover, NMR spectra revealed that the CaM-F142L-CaMBD interaction is structurally different from that of CaM-WT at low Ca(2+). These data indicate a distinct interaction between CaM-F142L and the RyR2 CaMBD, which may explain the stronger CaM-dependent RyR2 inhibition by CaM-F142L, despite its reduced Ca(2+) binding. Collectively, these results add to our understanding of CaM-dependent regulation of RyR2 as well as the mechanistic effects of arrhythmogenic CaM mutations. The unique properties of the CaM-F142L mutation may provide novel clues on how to suppress excessive RyR2 Ca(2+) release by manipulating the CaM-RyR2 interaction. |
format | Online Article Text |
id | pubmed-5270481 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | American Society for Biochemistry and Molecular Biology |
record_format | MEDLINE/PubMed |
spelling | pubmed-52704812017-02-10 The Arrhythmogenic Calmodulin p.Phe142Leu Mutation Impairs C-domain Ca(2+) Binding but Not Calmodulin-dependent Inhibition of the Cardiac Ryanodine Receptor Søndergaard, Mads Toft Liu, Yingjie Larsen, Kamilla Taunsig Nani, Alma Tian, Xixi Holt, Christian Wang, Ruiwu Wimmer, Reinhard Van Petegem, Filip Fill, Michael Chen, S. R. Wayne Overgaard, Michael Toft J Biol Chem Molecular Bases of Disease A number of point mutations in the intracellular Ca(2+)-sensing protein calmodulin (CaM) are arrhythmogenic, yet their underlying mechanisms are not clear. These mutations generally decrease Ca(2+) binding to CaM and impair inhibition of CaM-regulated Ca(2+) channels like the cardiac Ca(2+) release channel (ryanodine receptor, RyR2), and it appears that attenuated CaM Ca(2+) binding correlates with impaired CaM-dependent RyR2 inhibition. Here, we investigated the RyR2 inhibitory action of the CaM p.Phe142Leu mutation (F142L; numbered including the start-Met), which markedly reduces CaM Ca(2+) binding. Surprisingly, CaM-F142L had little to no aberrant effect on RyR2-mediated store overload-induced Ca(2+) release in HEK293 cells compared with CaM-WT. Furthermore, CaM-F142L enhanced CaM-dependent RyR2 inhibition at the single channel level compared with CaM-WT. This is in stark contrast to the actions of arrhythmogenic CaM mutations N54I, D96V, N98S, and D130G, which all diminish CaM-dependent RyR2 inhibition. Thermodynamic analysis showed that apoCaM-F142L converts an endothermal interaction between CaM and the CaM-binding domain (CaMBD) of RyR2 into an exothermal one. Moreover, NMR spectra revealed that the CaM-F142L-CaMBD interaction is structurally different from that of CaM-WT at low Ca(2+). These data indicate a distinct interaction between CaM-F142L and the RyR2 CaMBD, which may explain the stronger CaM-dependent RyR2 inhibition by CaM-F142L, despite its reduced Ca(2+) binding. Collectively, these results add to our understanding of CaM-dependent regulation of RyR2 as well as the mechanistic effects of arrhythmogenic CaM mutations. The unique properties of the CaM-F142L mutation may provide novel clues on how to suppress excessive RyR2 Ca(2+) release by manipulating the CaM-RyR2 interaction. American Society for Biochemistry and Molecular Biology 2017-01-27 2016-12-07 /pmc/articles/PMC5270481/ /pubmed/27927985 http://dx.doi.org/10.1074/jbc.M116.766253 Text en © 2017 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version free via Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) . |
spellingShingle | Molecular Bases of Disease Søndergaard, Mads Toft Liu, Yingjie Larsen, Kamilla Taunsig Nani, Alma Tian, Xixi Holt, Christian Wang, Ruiwu Wimmer, Reinhard Van Petegem, Filip Fill, Michael Chen, S. R. Wayne Overgaard, Michael Toft The Arrhythmogenic Calmodulin p.Phe142Leu Mutation Impairs C-domain Ca(2+) Binding but Not Calmodulin-dependent Inhibition of the Cardiac Ryanodine Receptor |
title | The Arrhythmogenic Calmodulin p.Phe142Leu Mutation Impairs C-domain Ca(2+) Binding but Not Calmodulin-dependent Inhibition of the Cardiac Ryanodine Receptor |
title_full | The Arrhythmogenic Calmodulin p.Phe142Leu Mutation Impairs C-domain Ca(2+) Binding but Not Calmodulin-dependent Inhibition of the Cardiac Ryanodine Receptor |
title_fullStr | The Arrhythmogenic Calmodulin p.Phe142Leu Mutation Impairs C-domain Ca(2+) Binding but Not Calmodulin-dependent Inhibition of the Cardiac Ryanodine Receptor |
title_full_unstemmed | The Arrhythmogenic Calmodulin p.Phe142Leu Mutation Impairs C-domain Ca(2+) Binding but Not Calmodulin-dependent Inhibition of the Cardiac Ryanodine Receptor |
title_short | The Arrhythmogenic Calmodulin p.Phe142Leu Mutation Impairs C-domain Ca(2+) Binding but Not Calmodulin-dependent Inhibition of the Cardiac Ryanodine Receptor |
title_sort | arrhythmogenic calmodulin p.phe142leu mutation impairs c-domain ca(2+) binding but not calmodulin-dependent inhibition of the cardiac ryanodine receptor |
topic | Molecular Bases of Disease |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5270481/ https://www.ncbi.nlm.nih.gov/pubmed/27927985 http://dx.doi.org/10.1074/jbc.M116.766253 |
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