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Biallelic variants in TAMM41 are associated with low muscle cardiolipin levels, leading to neonatal mitochondrial disease

Mitochondrial disorders are clinically and genetically heterogeneous, with variants in mitochondrial or nuclear genes leading to varied clinical phenotypes. TAMM41 encodes a mitochondrial protein with cytidine diphosphate-diacylglycerol synthase activity: an essential early step in the biosynthesis...

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Autores principales: Thompson, Kyle, Bianchi, Lucas, Rastelli, Francesca, Piron-Prunier, Florence, Ayciriex, Sophie, Besmond, Claude, Hubert, Laurence, Barth, Magalie, Barbosa, Inês A., Deshpande, Charu, Chitre, Manali, Mehta, Sarju G., Wever, Eric J.M., Marcorelles, Pascale, Donkervoort, Sandra, Saade, Dimah, Bönnemann, Carsten G., Chao, Katherine R., Cai, Chunyu, Iannaccone, Susan T., Dean, Andrew F., McFarland, Robert, Vaz, Frédéric M., Delahodde, Agnès, Taylor, Robert W., Rötig, Agnès
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8935507/
https://www.ncbi.nlm.nih.gov/pubmed/35321494
http://dx.doi.org/10.1016/j.xhgg.2022.100097
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author Thompson, Kyle
Bianchi, Lucas
Rastelli, Francesca
Piron-Prunier, Florence
Ayciriex, Sophie
Besmond, Claude
Hubert, Laurence
Barth, Magalie
Barbosa, Inês A.
Deshpande, Charu
Chitre, Manali
Mehta, Sarju G.
Wever, Eric J.M.
Marcorelles, Pascale
Donkervoort, Sandra
Saade, Dimah
Bönnemann, Carsten G.
Chao, Katherine R.
Cai, Chunyu
Iannaccone, Susan T.
Dean, Andrew F.
McFarland, Robert
Vaz, Frédéric M.
Delahodde, Agnès
Taylor, Robert W.
Rötig, Agnès
author_facet Thompson, Kyle
Bianchi, Lucas
Rastelli, Francesca
Piron-Prunier, Florence
Ayciriex, Sophie
Besmond, Claude
Hubert, Laurence
Barth, Magalie
Barbosa, Inês A.
Deshpande, Charu
Chitre, Manali
Mehta, Sarju G.
Wever, Eric J.M.
Marcorelles, Pascale
Donkervoort, Sandra
Saade, Dimah
Bönnemann, Carsten G.
Chao, Katherine R.
Cai, Chunyu
Iannaccone, Susan T.
Dean, Andrew F.
McFarland, Robert
Vaz, Frédéric M.
Delahodde, Agnès
Taylor, Robert W.
Rötig, Agnès
author_sort Thompson, Kyle
collection PubMed
description Mitochondrial disorders are clinically and genetically heterogeneous, with variants in mitochondrial or nuclear genes leading to varied clinical phenotypes. TAMM41 encodes a mitochondrial protein with cytidine diphosphate-diacylglycerol synthase activity: an essential early step in the biosynthesis of phosphatidylglycerol and cardiolipin. Cardiolipin is a mitochondria-specific phospholipid that is important for many mitochondrial processes. We report three unrelated individuals with mitochondrial disease that share clinical features, including lethargy at birth, hypotonia, developmental delay, myopathy, and ptosis. Whole exome and genome sequencing identified compound heterozygous variants in TAMM41 in each proband. Western blot analysis in fibroblasts showed a mild oxidative phosphorylation (OXPHOS) defect in only one of the three affected individuals. In skeletal muscle samples, however, there was severe loss of subunits of complexes I–IV and a decrease in fully assembled OXPHOS complexes I–V in two subjects as well as decreased TAMM41 protein levels. Similar to the tissue-specific observations on OXPHOS, cardiolipin levels were unchanged in subject fibroblasts but significantly decreased in the skeletal muscle of affected individuals. To assess the functional impact of the TAMM41 missense variants, the equivalent mutations were modeled in yeast. All three mutants failed to rescue the growth defect of the Δtam41 strains on non-fermentable (respiratory) medium compared with wild-type TAM41, confirming the pathogenicity of the variants. We establish that TAMM41 is an additional gene involved in mitochondrial phospholipid biosynthesis and modification and that its deficiency results in a mitochondrial disorder, though unlike families with pathogenic AGK (Sengers syndrome) and TAFAZZIN (Barth syndrome) variants, there was no evidence of cardiomyopathy.
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spelling pubmed-89355072022-03-22 Biallelic variants in TAMM41 are associated with low muscle cardiolipin levels, leading to neonatal mitochondrial disease Thompson, Kyle Bianchi, Lucas Rastelli, Francesca Piron-Prunier, Florence Ayciriex, Sophie Besmond, Claude Hubert, Laurence Barth, Magalie Barbosa, Inês A. Deshpande, Charu Chitre, Manali Mehta, Sarju G. Wever, Eric J.M. Marcorelles, Pascale Donkervoort, Sandra Saade, Dimah Bönnemann, Carsten G. Chao, Katherine R. Cai, Chunyu Iannaccone, Susan T. Dean, Andrew F. McFarland, Robert Vaz, Frédéric M. Delahodde, Agnès Taylor, Robert W. Rötig, Agnès HGG Adv Report Mitochondrial disorders are clinically and genetically heterogeneous, with variants in mitochondrial or nuclear genes leading to varied clinical phenotypes. TAMM41 encodes a mitochondrial protein with cytidine diphosphate-diacylglycerol synthase activity: an essential early step in the biosynthesis of phosphatidylglycerol and cardiolipin. Cardiolipin is a mitochondria-specific phospholipid that is important for many mitochondrial processes. We report three unrelated individuals with mitochondrial disease that share clinical features, including lethargy at birth, hypotonia, developmental delay, myopathy, and ptosis. Whole exome and genome sequencing identified compound heterozygous variants in TAMM41 in each proband. Western blot analysis in fibroblasts showed a mild oxidative phosphorylation (OXPHOS) defect in only one of the three affected individuals. In skeletal muscle samples, however, there was severe loss of subunits of complexes I–IV and a decrease in fully assembled OXPHOS complexes I–V in two subjects as well as decreased TAMM41 protein levels. Similar to the tissue-specific observations on OXPHOS, cardiolipin levels were unchanged in subject fibroblasts but significantly decreased in the skeletal muscle of affected individuals. To assess the functional impact of the TAMM41 missense variants, the equivalent mutations were modeled in yeast. All three mutants failed to rescue the growth defect of the Δtam41 strains on non-fermentable (respiratory) medium compared with wild-type TAM41, confirming the pathogenicity of the variants. We establish that TAMM41 is an additional gene involved in mitochondrial phospholipid biosynthesis and modification and that its deficiency results in a mitochondrial disorder, though unlike families with pathogenic AGK (Sengers syndrome) and TAFAZZIN (Barth syndrome) variants, there was no evidence of cardiomyopathy. Elsevier 2022-03-04 /pmc/articles/PMC8935507/ /pubmed/35321494 http://dx.doi.org/10.1016/j.xhgg.2022.100097 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Report
Thompson, Kyle
Bianchi, Lucas
Rastelli, Francesca
Piron-Prunier, Florence
Ayciriex, Sophie
Besmond, Claude
Hubert, Laurence
Barth, Magalie
Barbosa, Inês A.
Deshpande, Charu
Chitre, Manali
Mehta, Sarju G.
Wever, Eric J.M.
Marcorelles, Pascale
Donkervoort, Sandra
Saade, Dimah
Bönnemann, Carsten G.
Chao, Katherine R.
Cai, Chunyu
Iannaccone, Susan T.
Dean, Andrew F.
McFarland, Robert
Vaz, Frédéric M.
Delahodde, Agnès
Taylor, Robert W.
Rötig, Agnès
Biallelic variants in TAMM41 are associated with low muscle cardiolipin levels, leading to neonatal mitochondrial disease
title Biallelic variants in TAMM41 are associated with low muscle cardiolipin levels, leading to neonatal mitochondrial disease
title_full Biallelic variants in TAMM41 are associated with low muscle cardiolipin levels, leading to neonatal mitochondrial disease
title_fullStr Biallelic variants in TAMM41 are associated with low muscle cardiolipin levels, leading to neonatal mitochondrial disease
title_full_unstemmed Biallelic variants in TAMM41 are associated with low muscle cardiolipin levels, leading to neonatal mitochondrial disease
title_short Biallelic variants in TAMM41 are associated with low muscle cardiolipin levels, leading to neonatal mitochondrial disease
title_sort biallelic variants in tamm41 are associated with low muscle cardiolipin levels, leading to neonatal mitochondrial disease
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8935507/
https://www.ncbi.nlm.nih.gov/pubmed/35321494
http://dx.doi.org/10.1016/j.xhgg.2022.100097
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