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Burst-Like Transcription of Mutant and Wildtype MYH7-Alleles as Possible Origin of Cell-to-Cell Contractile Imbalance in Hypertrophic Cardiomyopathy

Hypertrophic Cardiomyopathy (HCM) has been related to many different mutations in more than 20 different, mostly sarcomeric proteins. While development of the HCM-phenotype is thought to be triggered by the different mutations, a common mechanism remains elusive. Studying missense-mutations in the v...

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Autores principales: Montag, Judith, Kowalski, Kathrin, Makul, Mirza, Ernstberger, Pia, Radocaj, Ante, Beck, Julia, Becker, Edgar, Tripathi, Snigdha, Keyser, Britta, Mühlfeld, Christian, Wissel, Kirsten, Pich, Andreas, van der Velden, Jolanda, dos Remedios, Cristobal G., Perrot, Andreas, Francino, Antonio, Navarro-López, Francesco, Brenner, Bernhard, Kraft, Theresia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5900384/
https://www.ncbi.nlm.nih.gov/pubmed/29686627
http://dx.doi.org/10.3389/fphys.2018.00359
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author Montag, Judith
Kowalski, Kathrin
Makul, Mirza
Ernstberger, Pia
Radocaj, Ante
Beck, Julia
Becker, Edgar
Tripathi, Snigdha
Keyser, Britta
Mühlfeld, Christian
Wissel, Kirsten
Pich, Andreas
van der Velden, Jolanda
dos Remedios, Cristobal G.
Perrot, Andreas
Francino, Antonio
Navarro-López, Francesco
Brenner, Bernhard
Kraft, Theresia
author_facet Montag, Judith
Kowalski, Kathrin
Makul, Mirza
Ernstberger, Pia
Radocaj, Ante
Beck, Julia
Becker, Edgar
Tripathi, Snigdha
Keyser, Britta
Mühlfeld, Christian
Wissel, Kirsten
Pich, Andreas
van der Velden, Jolanda
dos Remedios, Cristobal G.
Perrot, Andreas
Francino, Antonio
Navarro-López, Francesco
Brenner, Bernhard
Kraft, Theresia
author_sort Montag, Judith
collection PubMed
description Hypertrophic Cardiomyopathy (HCM) has been related to many different mutations in more than 20 different, mostly sarcomeric proteins. While development of the HCM-phenotype is thought to be triggered by the different mutations, a common mechanism remains elusive. Studying missense-mutations in the ventricular beta-myosin heavy chain (β-MyHC, MYH7) we hypothesized that significant contractile heterogeneity exists among individual cardiomyocytes of HCM-patients that results from cell-to-cell variation in relative expression of mutated vs. wildtype β-MyHC. To test this hypothesis, we measured force-calcium-relationships of cardiomyocytes isolated from myocardium of heterozygous HCM-patients with either β-MyHC-mutation Arg723Gly or Arg200Val, and from healthy controls. From the myocardial samples of the HCM-patients we also obtained cryo-sections, and laser-microdissected single cardiomyocytes for quantification of mutated vs. wildtype MYH7-mRNA using a single cell RT-qPCR and restriction digest approach. We characterized gene transcription by visualizing active transcription sites by fluorescence in situ hybridization of intronic and exonic sequences of MYH7-pre-mRNA. For both mutations, cardiomyocytes showed large cell-to-cell variation in Ca(++)-sensitivity. Interestingly, some cardiomyocytes were essentially indistinguishable from controls what might indicate that they had no mutant β-MyHC while others had highly reduced Ca(++)-sensitivity suggesting substantial fractions of mutant β-MyHC. Single-cell MYH7-mRNA-quantification in cardiomyocytes of the same patients revealed high cell-to-cell variability of mutated vs. wildtype mRNA, ranging from essentially pure mutant to essentially pure wildtype MYH7-mRNA. We found 27% of nuclei without active transcription sites which is inconsistent with continuous gene transcription but suggests burst-like transcription of MYH7. Model simulations indicated that burst-like, stochastic on/off-switching of MYH7 transcription, which is independent for mutant and wildtype alleles, could generate the observed cell-to-cell variation in the fraction of mutant vs. wildtype MYH7-mRNA, a similar variation in β-MyHC-protein, and highly heterogeneous Ca(++)-sensitivity of individual cardiomyocytes. In the long run, such contractile imbalance in the myocardium may well induce progressive structural distortions like cellular and myofibrillar disarray and interstitial fibrosis, as they are typically observed in HCM.
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spelling pubmed-59003842018-04-23 Burst-Like Transcription of Mutant and Wildtype MYH7-Alleles as Possible Origin of Cell-to-Cell Contractile Imbalance in Hypertrophic Cardiomyopathy Montag, Judith Kowalski, Kathrin Makul, Mirza Ernstberger, Pia Radocaj, Ante Beck, Julia Becker, Edgar Tripathi, Snigdha Keyser, Britta Mühlfeld, Christian Wissel, Kirsten Pich, Andreas van der Velden, Jolanda dos Remedios, Cristobal G. Perrot, Andreas Francino, Antonio Navarro-López, Francesco Brenner, Bernhard Kraft, Theresia Front Physiol Physiology Hypertrophic Cardiomyopathy (HCM) has been related to many different mutations in more than 20 different, mostly sarcomeric proteins. While development of the HCM-phenotype is thought to be triggered by the different mutations, a common mechanism remains elusive. Studying missense-mutations in the ventricular beta-myosin heavy chain (β-MyHC, MYH7) we hypothesized that significant contractile heterogeneity exists among individual cardiomyocytes of HCM-patients that results from cell-to-cell variation in relative expression of mutated vs. wildtype β-MyHC. To test this hypothesis, we measured force-calcium-relationships of cardiomyocytes isolated from myocardium of heterozygous HCM-patients with either β-MyHC-mutation Arg723Gly or Arg200Val, and from healthy controls. From the myocardial samples of the HCM-patients we also obtained cryo-sections, and laser-microdissected single cardiomyocytes for quantification of mutated vs. wildtype MYH7-mRNA using a single cell RT-qPCR and restriction digest approach. We characterized gene transcription by visualizing active transcription sites by fluorescence in situ hybridization of intronic and exonic sequences of MYH7-pre-mRNA. For both mutations, cardiomyocytes showed large cell-to-cell variation in Ca(++)-sensitivity. Interestingly, some cardiomyocytes were essentially indistinguishable from controls what might indicate that they had no mutant β-MyHC while others had highly reduced Ca(++)-sensitivity suggesting substantial fractions of mutant β-MyHC. Single-cell MYH7-mRNA-quantification in cardiomyocytes of the same patients revealed high cell-to-cell variability of mutated vs. wildtype mRNA, ranging from essentially pure mutant to essentially pure wildtype MYH7-mRNA. We found 27% of nuclei without active transcription sites which is inconsistent with continuous gene transcription but suggests burst-like transcription of MYH7. Model simulations indicated that burst-like, stochastic on/off-switching of MYH7 transcription, which is independent for mutant and wildtype alleles, could generate the observed cell-to-cell variation in the fraction of mutant vs. wildtype MYH7-mRNA, a similar variation in β-MyHC-protein, and highly heterogeneous Ca(++)-sensitivity of individual cardiomyocytes. In the long run, such contractile imbalance in the myocardium may well induce progressive structural distortions like cellular and myofibrillar disarray and interstitial fibrosis, as they are typically observed in HCM. Frontiers Media S.A. 2018-04-09 /pmc/articles/PMC5900384/ /pubmed/29686627 http://dx.doi.org/10.3389/fphys.2018.00359 Text en Copyright © 2018 Montag, Kowalski, Makul, Ernstberger, Radocaj, Beck, Becker, Tripathi, Keyser, Mühlfeld, Wissel, Pich, van der Velden, dos Remedios, Perrot, Francino, Navarro-López, Brenner and Kraft. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Montag, Judith
Kowalski, Kathrin
Makul, Mirza
Ernstberger, Pia
Radocaj, Ante
Beck, Julia
Becker, Edgar
Tripathi, Snigdha
Keyser, Britta
Mühlfeld, Christian
Wissel, Kirsten
Pich, Andreas
van der Velden, Jolanda
dos Remedios, Cristobal G.
Perrot, Andreas
Francino, Antonio
Navarro-López, Francesco
Brenner, Bernhard
Kraft, Theresia
Burst-Like Transcription of Mutant and Wildtype MYH7-Alleles as Possible Origin of Cell-to-Cell Contractile Imbalance in Hypertrophic Cardiomyopathy
title Burst-Like Transcription of Mutant and Wildtype MYH7-Alleles as Possible Origin of Cell-to-Cell Contractile Imbalance in Hypertrophic Cardiomyopathy
title_full Burst-Like Transcription of Mutant and Wildtype MYH7-Alleles as Possible Origin of Cell-to-Cell Contractile Imbalance in Hypertrophic Cardiomyopathy
title_fullStr Burst-Like Transcription of Mutant and Wildtype MYH7-Alleles as Possible Origin of Cell-to-Cell Contractile Imbalance in Hypertrophic Cardiomyopathy
title_full_unstemmed Burst-Like Transcription of Mutant and Wildtype MYH7-Alleles as Possible Origin of Cell-to-Cell Contractile Imbalance in Hypertrophic Cardiomyopathy
title_short Burst-Like Transcription of Mutant and Wildtype MYH7-Alleles as Possible Origin of Cell-to-Cell Contractile Imbalance in Hypertrophic Cardiomyopathy
title_sort burst-like transcription of mutant and wildtype myh7-alleles as possible origin of cell-to-cell contractile imbalance in hypertrophic cardiomyopathy
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5900384/
https://www.ncbi.nlm.nih.gov/pubmed/29686627
http://dx.doi.org/10.3389/fphys.2018.00359
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