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Novel compound mutations in the mitochondrial translation elongation factor (TSFM) gene cause severe cardiomyopathy with myocardial fibro-adipose replacement

Primary mitochondrial dysfunction is an under-appreciated cause of cardiomyopathy, especially when cardiac symptoms are the unique or prevalent manifestation of disease. Here, we report an unusual presentation of mitochondrial cardiomyopathy, with dilated phenotype and pathologic evidence of biventr...

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Autores principales: Perli, Elena, Pisano, Annalinda, Glasgow, Ruth I. C., Carbo, Miriam, Hardy, Steven A., Falkous, Gavin, He, Langping, Cerbelli, Bruna, Pignataro, Maria Gemma, Zacara, Elisabetta, Re, Federica, Della Monica, Paola Lilla, Morea, Veronica, Bonnen, Penelope E., Taylor, Robert W., d’Amati, Giulia, Giordano, Carla
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6434145/
https://www.ncbi.nlm.nih.gov/pubmed/30911037
http://dx.doi.org/10.1038/s41598-019-41483-9
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author Perli, Elena
Pisano, Annalinda
Glasgow, Ruth I. C.
Carbo, Miriam
Hardy, Steven A.
Falkous, Gavin
He, Langping
Cerbelli, Bruna
Pignataro, Maria Gemma
Zacara, Elisabetta
Re, Federica
Della Monica, Paola Lilla
Morea, Veronica
Bonnen, Penelope E.
Taylor, Robert W.
d’Amati, Giulia
Giordano, Carla
author_facet Perli, Elena
Pisano, Annalinda
Glasgow, Ruth I. C.
Carbo, Miriam
Hardy, Steven A.
Falkous, Gavin
He, Langping
Cerbelli, Bruna
Pignataro, Maria Gemma
Zacara, Elisabetta
Re, Federica
Della Monica, Paola Lilla
Morea, Veronica
Bonnen, Penelope E.
Taylor, Robert W.
d’Amati, Giulia
Giordano, Carla
author_sort Perli, Elena
collection PubMed
description Primary mitochondrial dysfunction is an under-appreciated cause of cardiomyopathy, especially when cardiac symptoms are the unique or prevalent manifestation of disease. Here, we report an unusual presentation of mitochondrial cardiomyopathy, with dilated phenotype and pathologic evidence of biventricular fibro-adipose replacement, in a 33-year old woman who underwent cardiac transplant. Whole exome sequencing revealed two novel compound heterozygous variants in the TSFM gene, coding for the mitochondrial translation elongation factor EF-Ts. This protein participates in the elongation step of mitochondrial translation by binding and stabilizing the translation elongation factor Tu (EF-Tu). Bioinformatics analysis predicted a destabilization of the EF-Ts variants complex with EF-Tu, in agreement with the dramatic steady-state level reduction of both proteins in the clinically affected myocardium, which demonstrated a combined respiratory chain enzyme deficiency. In patient fibroblasts, the decrease of EF-Ts was paralleled by up-regulation of EF-Tu and induction of genes involved in mitochondrial biogenesis, along with increased expression of respiratory chain subunits and normal oxygen consumption rate. Our report extends the current picture of morphologic phenotypes associated with mitochondrial cardiomyopathies and confirms the heart as a main target of TSFM dysfunction. The compensatory response detected in patient fibroblasts might explain the tissue-specific expression of TSFM-associated disease.
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spelling pubmed-64341452019-04-02 Novel compound mutations in the mitochondrial translation elongation factor (TSFM) gene cause severe cardiomyopathy with myocardial fibro-adipose replacement Perli, Elena Pisano, Annalinda Glasgow, Ruth I. C. Carbo, Miriam Hardy, Steven A. Falkous, Gavin He, Langping Cerbelli, Bruna Pignataro, Maria Gemma Zacara, Elisabetta Re, Federica Della Monica, Paola Lilla Morea, Veronica Bonnen, Penelope E. Taylor, Robert W. d’Amati, Giulia Giordano, Carla Sci Rep Article Primary mitochondrial dysfunction is an under-appreciated cause of cardiomyopathy, especially when cardiac symptoms are the unique or prevalent manifestation of disease. Here, we report an unusual presentation of mitochondrial cardiomyopathy, with dilated phenotype and pathologic evidence of biventricular fibro-adipose replacement, in a 33-year old woman who underwent cardiac transplant. Whole exome sequencing revealed two novel compound heterozygous variants in the TSFM gene, coding for the mitochondrial translation elongation factor EF-Ts. This protein participates in the elongation step of mitochondrial translation by binding and stabilizing the translation elongation factor Tu (EF-Tu). Bioinformatics analysis predicted a destabilization of the EF-Ts variants complex with EF-Tu, in agreement with the dramatic steady-state level reduction of both proteins in the clinically affected myocardium, which demonstrated a combined respiratory chain enzyme deficiency. In patient fibroblasts, the decrease of EF-Ts was paralleled by up-regulation of EF-Tu and induction of genes involved in mitochondrial biogenesis, along with increased expression of respiratory chain subunits and normal oxygen consumption rate. Our report extends the current picture of morphologic phenotypes associated with mitochondrial cardiomyopathies and confirms the heart as a main target of TSFM dysfunction. The compensatory response detected in patient fibroblasts might explain the tissue-specific expression of TSFM-associated disease. Nature Publishing Group UK 2019-03-25 /pmc/articles/PMC6434145/ /pubmed/30911037 http://dx.doi.org/10.1038/s41598-019-41483-9 Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Perli, Elena
Pisano, Annalinda
Glasgow, Ruth I. C.
Carbo, Miriam
Hardy, Steven A.
Falkous, Gavin
He, Langping
Cerbelli, Bruna
Pignataro, Maria Gemma
Zacara, Elisabetta
Re, Federica
Della Monica, Paola Lilla
Morea, Veronica
Bonnen, Penelope E.
Taylor, Robert W.
d’Amati, Giulia
Giordano, Carla
Novel compound mutations in the mitochondrial translation elongation factor (TSFM) gene cause severe cardiomyopathy with myocardial fibro-adipose replacement
title Novel compound mutations in the mitochondrial translation elongation factor (TSFM) gene cause severe cardiomyopathy with myocardial fibro-adipose replacement
title_full Novel compound mutations in the mitochondrial translation elongation factor (TSFM) gene cause severe cardiomyopathy with myocardial fibro-adipose replacement
title_fullStr Novel compound mutations in the mitochondrial translation elongation factor (TSFM) gene cause severe cardiomyopathy with myocardial fibro-adipose replacement
title_full_unstemmed Novel compound mutations in the mitochondrial translation elongation factor (TSFM) gene cause severe cardiomyopathy with myocardial fibro-adipose replacement
title_short Novel compound mutations in the mitochondrial translation elongation factor (TSFM) gene cause severe cardiomyopathy with myocardial fibro-adipose replacement
title_sort novel compound mutations in the mitochondrial translation elongation factor (tsfm) gene cause severe cardiomyopathy with myocardial fibro-adipose replacement
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6434145/
https://www.ncbi.nlm.nih.gov/pubmed/30911037
http://dx.doi.org/10.1038/s41598-019-41483-9
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