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Biallelic Variants in ASNA1, Encoding a Cytosolic Targeting Factor of Tail-Anchored Proteins, Cause Rapidly Progressive Pediatric Cardiomyopathy

Pediatric cardiomyopathies are a clinically and genetically heterogeneous group of heart muscle disorders associated with high morbidity and mortality. Although knowledge of the genetic basis of pediatric cardiomyopathy has improved considerably, the underlying cause remains elusive in a substantial...

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Autores principales: Verhagen, Judith M.A., van den Born, Myrthe, van der Linde, Herma C., G.J. Nikkels, Peter, Verdijk, Rob M., Kivlen, Maryann H., van Unen, Leontine M.A., Baas, Annette F., ter Heide, Henriette, van Osch-Gevers, Lennie, Hoogeveen-Westerveld, Marianne, Herkert, Johanna C., Bertoli-Avella, Aida M., van Slegtenhorst, Marjon A., Wessels, Marja W., Verheijen, Frans W., Hassel, David, Hofstra, Robert M.W., Hegde, Ramanujan S., van Hasselt, Peter M., van Ham, Tjakko J., van de Laar, Ingrid M.B.H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Lippincott Williams & Wilkins 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7205403/
https://www.ncbi.nlm.nih.gov/pubmed/31461301
http://dx.doi.org/10.1161/CIRCGEN.119.002507
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author Verhagen, Judith M.A.
van den Born, Myrthe
van der Linde, Herma C.
G.J. Nikkels, Peter
Verdijk, Rob M.
Kivlen, Maryann H.
van Unen, Leontine M.A.
Baas, Annette F.
ter Heide, Henriette
van Osch-Gevers, Lennie
Hoogeveen-Westerveld, Marianne
Herkert, Johanna C.
Bertoli-Avella, Aida M.
van Slegtenhorst, Marjon A.
Wessels, Marja W.
Verheijen, Frans W.
Hassel, David
Hofstra, Robert M.W.
Hegde, Ramanujan S.
van Hasselt, Peter M.
van Ham, Tjakko J.
van de Laar, Ingrid M.B.H.
author_facet Verhagen, Judith M.A.
van den Born, Myrthe
van der Linde, Herma C.
G.J. Nikkels, Peter
Verdijk, Rob M.
Kivlen, Maryann H.
van Unen, Leontine M.A.
Baas, Annette F.
ter Heide, Henriette
van Osch-Gevers, Lennie
Hoogeveen-Westerveld, Marianne
Herkert, Johanna C.
Bertoli-Avella, Aida M.
van Slegtenhorst, Marjon A.
Wessels, Marja W.
Verheijen, Frans W.
Hassel, David
Hofstra, Robert M.W.
Hegde, Ramanujan S.
van Hasselt, Peter M.
van Ham, Tjakko J.
van de Laar, Ingrid M.B.H.
author_sort Verhagen, Judith M.A.
collection PubMed
description Pediatric cardiomyopathies are a clinically and genetically heterogeneous group of heart muscle disorders associated with high morbidity and mortality. Although knowledge of the genetic basis of pediatric cardiomyopathy has improved considerably, the underlying cause remains elusive in a substantial proportion of cases. METHODS: Exome sequencing was used to screen for the causative genetic defect in a pair of siblings with rapidly progressive dilated cardiomyopathy and death in early infancy. Protein expression was assessed in patient samples, followed by an in vitro tail-anchored protein insertion assay and functional analyses in zebrafish. RESULTS: We identified compound heterozygous variants in the highly conserved ASNA1 gene (arsA arsenite transporter, ATP-binding, homolog), which encodes an ATPase required for post-translational membrane insertion of tail-anchored proteins. The c.913C>T variant on the paternal allele is predicted to result in a premature stop codon p.(Gln305*), and likely explains the decreased protein expression observed in myocardial tissue and skin fibroblasts. The c.488T>C variant on the maternal allele results in a valine to alanine substitution at residue 163 (p.Val163Ala). Functional studies showed that this variant leads to protein misfolding as well as less effective tail-anchored protein insertion. Loss of asna1 in zebrafish resulted in reduced cardiac contractility and early lethality. In contrast to wild-type mRNA, injection of either mutant mRNA failed to rescue this phenotype. CONCLUSIONS: Biallelic variants in ASNA1 cause severe pediatric cardiomyopathy and early death. Our findings point toward a critical role of the tail-anchored membrane protein insertion pathway in vertebrate cardiac function and disease.
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spelling pubmed-72054032020-05-21 Biallelic Variants in ASNA1, Encoding a Cytosolic Targeting Factor of Tail-Anchored Proteins, Cause Rapidly Progressive Pediatric Cardiomyopathy Verhagen, Judith M.A. van den Born, Myrthe van der Linde, Herma C. G.J. Nikkels, Peter Verdijk, Rob M. Kivlen, Maryann H. van Unen, Leontine M.A. Baas, Annette F. ter Heide, Henriette van Osch-Gevers, Lennie Hoogeveen-Westerveld, Marianne Herkert, Johanna C. Bertoli-Avella, Aida M. van Slegtenhorst, Marjon A. Wessels, Marja W. Verheijen, Frans W. Hassel, David Hofstra, Robert M.W. Hegde, Ramanujan S. van Hasselt, Peter M. van Ham, Tjakko J. van de Laar, Ingrid M.B.H. Circ Genom Precis Med Original Articles Pediatric cardiomyopathies are a clinically and genetically heterogeneous group of heart muscle disorders associated with high morbidity and mortality. Although knowledge of the genetic basis of pediatric cardiomyopathy has improved considerably, the underlying cause remains elusive in a substantial proportion of cases. METHODS: Exome sequencing was used to screen for the causative genetic defect in a pair of siblings with rapidly progressive dilated cardiomyopathy and death in early infancy. Protein expression was assessed in patient samples, followed by an in vitro tail-anchored protein insertion assay and functional analyses in zebrafish. RESULTS: We identified compound heterozygous variants in the highly conserved ASNA1 gene (arsA arsenite transporter, ATP-binding, homolog), which encodes an ATPase required for post-translational membrane insertion of tail-anchored proteins. The c.913C>T variant on the paternal allele is predicted to result in a premature stop codon p.(Gln305*), and likely explains the decreased protein expression observed in myocardial tissue and skin fibroblasts. The c.488T>C variant on the maternal allele results in a valine to alanine substitution at residue 163 (p.Val163Ala). Functional studies showed that this variant leads to protein misfolding as well as less effective tail-anchored protein insertion. Loss of asna1 in zebrafish resulted in reduced cardiac contractility and early lethality. In contrast to wild-type mRNA, injection of either mutant mRNA failed to rescue this phenotype. CONCLUSIONS: Biallelic variants in ASNA1 cause severe pediatric cardiomyopathy and early death. Our findings point toward a critical role of the tail-anchored membrane protein insertion pathway in vertebrate cardiac function and disease. Lippincott Williams & Wilkins 2019-08-28 /pmc/articles/PMC7205403/ /pubmed/31461301 http://dx.doi.org/10.1161/CIRCGEN.119.002507 Text en © 2019 The Authors. Circulation: Genomic and Precision Medicine is published on behalf of the American Heart Association, Inc., by Wolters Kluwer Health, Inc. This is an open access article under the terms of the Creative Commons Attribution (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution, and reproduction in any medium, provided that the original work is properly cited.
spellingShingle Original Articles
Verhagen, Judith M.A.
van den Born, Myrthe
van der Linde, Herma C.
G.J. Nikkels, Peter
Verdijk, Rob M.
Kivlen, Maryann H.
van Unen, Leontine M.A.
Baas, Annette F.
ter Heide, Henriette
van Osch-Gevers, Lennie
Hoogeveen-Westerveld, Marianne
Herkert, Johanna C.
Bertoli-Avella, Aida M.
van Slegtenhorst, Marjon A.
Wessels, Marja W.
Verheijen, Frans W.
Hassel, David
Hofstra, Robert M.W.
Hegde, Ramanujan S.
van Hasselt, Peter M.
van Ham, Tjakko J.
van de Laar, Ingrid M.B.H.
Biallelic Variants in ASNA1, Encoding a Cytosolic Targeting Factor of Tail-Anchored Proteins, Cause Rapidly Progressive Pediatric Cardiomyopathy
title Biallelic Variants in ASNA1, Encoding a Cytosolic Targeting Factor of Tail-Anchored Proteins, Cause Rapidly Progressive Pediatric Cardiomyopathy
title_full Biallelic Variants in ASNA1, Encoding a Cytosolic Targeting Factor of Tail-Anchored Proteins, Cause Rapidly Progressive Pediatric Cardiomyopathy
title_fullStr Biallelic Variants in ASNA1, Encoding a Cytosolic Targeting Factor of Tail-Anchored Proteins, Cause Rapidly Progressive Pediatric Cardiomyopathy
title_full_unstemmed Biallelic Variants in ASNA1, Encoding a Cytosolic Targeting Factor of Tail-Anchored Proteins, Cause Rapidly Progressive Pediatric Cardiomyopathy
title_short Biallelic Variants in ASNA1, Encoding a Cytosolic Targeting Factor of Tail-Anchored Proteins, Cause Rapidly Progressive Pediatric Cardiomyopathy
title_sort biallelic variants in asna1, encoding a cytosolic targeting factor of tail-anchored proteins, cause rapidly progressive pediatric cardiomyopathy
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7205403/
https://www.ncbi.nlm.nih.gov/pubmed/31461301
http://dx.doi.org/10.1161/CIRCGEN.119.002507
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