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Novel Mutation Glu98Lys in Cardiac Tropomyosin Alters Its Structure and Impairs Myocardial Relaxation
We characterized a novel genetic variant c.292G > A (p.E98K) in the TPM1 gene encoding cardiac tropomyosin 1.1 isoform (Tpm1.1), found in a proband with a phenotype of complex cardiomyopathy with conduction dysfunction and slow progressive neuromuscular involvement. To understand the molecular me...
Autores principales: | , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10419091/ https://www.ncbi.nlm.nih.gov/pubmed/37569730 http://dx.doi.org/10.3390/ijms241512359 |
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author | Matyushenko, Alexander M. Nefedova, Victoria V. Kochurova, Anastasia M. Kopylova, Galina V. Koubassova, Natalia A. Shestak, Anna G. Yampolskaya, Daria S. Shchepkin, Daniil V. Kleymenov, Sergey Y. Ryabkova, Natalia S. Katrukha, Ivan A. Bershitsky, Sergey Y. Zaklyazminskaya, Elena V. Tsaturyan, Andrey K. Levitsky, Dmitrii I. |
author_facet | Matyushenko, Alexander M. Nefedova, Victoria V. Kochurova, Anastasia M. Kopylova, Galina V. Koubassova, Natalia A. Shestak, Anna G. Yampolskaya, Daria S. Shchepkin, Daniil V. Kleymenov, Sergey Y. Ryabkova, Natalia S. Katrukha, Ivan A. Bershitsky, Sergey Y. Zaklyazminskaya, Elena V. Tsaturyan, Andrey K. Levitsky, Dmitrii I. |
author_sort | Matyushenko, Alexander M. |
collection | PubMed |
description | We characterized a novel genetic variant c.292G > A (p.E98K) in the TPM1 gene encoding cardiac tropomyosin 1.1 isoform (Tpm1.1), found in a proband with a phenotype of complex cardiomyopathy with conduction dysfunction and slow progressive neuromuscular involvement. To understand the molecular mechanism by which this mutation impairs cardiac function, we produced recombinant Tpm1.1 carrying an E98K substitution and studied how this substitution affects the structure of the Tpm1.1 molecule and its functional properties. The results showed that the E98K substitution in the N-terminal part of the Tpm molecule significantly destabilizes the C-terminal part of Tpm, thus indicating a long-distance destabilizing effect of the substitution on the Tpm coiled-coil structure. The E98K substitution did not noticeably affect Tpm’s affinity for F-actin but significantly impaired Tpm’s regulatory properties. It increased the Ca(2+) sensitivity of the sliding velocity of regulated thin filaments over cardiac myosin in an in vitro motility assay and caused an incomplete block of the thin filament sliding at low Ca(2+) concentrations. The incomplete motility block in the absence of Ca(2+) can be explained by the loosening of the Tpm interaction with troponin I (TnI), thus increasing Tpm mobility on the surface of an actin filament that partially unlocks the myosin binding sites. This hypothesis is supported by the molecular dynamics (MD) simulation that showed that the E98 Tpm residue is involved in hydrogen bonding with the C-terminal part of TnI. Thus, the results allowed us to explain the mechanism by which the E98K Tpm mutation impairs sarcomeric function and myocardial relaxation. |
format | Online Article Text |
id | pubmed-10419091 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-104190912023-08-12 Novel Mutation Glu98Lys in Cardiac Tropomyosin Alters Its Structure and Impairs Myocardial Relaxation Matyushenko, Alexander M. Nefedova, Victoria V. Kochurova, Anastasia M. Kopylova, Galina V. Koubassova, Natalia A. Shestak, Anna G. Yampolskaya, Daria S. Shchepkin, Daniil V. Kleymenov, Sergey Y. Ryabkova, Natalia S. Katrukha, Ivan A. Bershitsky, Sergey Y. Zaklyazminskaya, Elena V. Tsaturyan, Andrey K. Levitsky, Dmitrii I. Int J Mol Sci Article We characterized a novel genetic variant c.292G > A (p.E98K) in the TPM1 gene encoding cardiac tropomyosin 1.1 isoform (Tpm1.1), found in a proband with a phenotype of complex cardiomyopathy with conduction dysfunction and slow progressive neuromuscular involvement. To understand the molecular mechanism by which this mutation impairs cardiac function, we produced recombinant Tpm1.1 carrying an E98K substitution and studied how this substitution affects the structure of the Tpm1.1 molecule and its functional properties. The results showed that the E98K substitution in the N-terminal part of the Tpm molecule significantly destabilizes the C-terminal part of Tpm, thus indicating a long-distance destabilizing effect of the substitution on the Tpm coiled-coil structure. The E98K substitution did not noticeably affect Tpm’s affinity for F-actin but significantly impaired Tpm’s regulatory properties. It increased the Ca(2+) sensitivity of the sliding velocity of regulated thin filaments over cardiac myosin in an in vitro motility assay and caused an incomplete block of the thin filament sliding at low Ca(2+) concentrations. The incomplete motility block in the absence of Ca(2+) can be explained by the loosening of the Tpm interaction with troponin I (TnI), thus increasing Tpm mobility on the surface of an actin filament that partially unlocks the myosin binding sites. This hypothesis is supported by the molecular dynamics (MD) simulation that showed that the E98 Tpm residue is involved in hydrogen bonding with the C-terminal part of TnI. Thus, the results allowed us to explain the mechanism by which the E98K Tpm mutation impairs sarcomeric function and myocardial relaxation. MDPI 2023-08-02 /pmc/articles/PMC10419091/ /pubmed/37569730 http://dx.doi.org/10.3390/ijms241512359 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Matyushenko, Alexander M. Nefedova, Victoria V. Kochurova, Anastasia M. Kopylova, Galina V. Koubassova, Natalia A. Shestak, Anna G. Yampolskaya, Daria S. Shchepkin, Daniil V. Kleymenov, Sergey Y. Ryabkova, Natalia S. Katrukha, Ivan A. Bershitsky, Sergey Y. Zaklyazminskaya, Elena V. Tsaturyan, Andrey K. Levitsky, Dmitrii I. Novel Mutation Glu98Lys in Cardiac Tropomyosin Alters Its Structure and Impairs Myocardial Relaxation |
title | Novel Mutation Glu98Lys in Cardiac Tropomyosin Alters Its Structure and Impairs Myocardial Relaxation |
title_full | Novel Mutation Glu98Lys in Cardiac Tropomyosin Alters Its Structure and Impairs Myocardial Relaxation |
title_fullStr | Novel Mutation Glu98Lys in Cardiac Tropomyosin Alters Its Structure and Impairs Myocardial Relaxation |
title_full_unstemmed | Novel Mutation Glu98Lys in Cardiac Tropomyosin Alters Its Structure and Impairs Myocardial Relaxation |
title_short | Novel Mutation Glu98Lys in Cardiac Tropomyosin Alters Its Structure and Impairs Myocardial Relaxation |
title_sort | novel mutation glu98lys in cardiac tropomyosin alters its structure and impairs myocardial relaxation |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10419091/ https://www.ncbi.nlm.nih.gov/pubmed/37569730 http://dx.doi.org/10.3390/ijms241512359 |
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