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Bi-allelic Mutations in Phe-tRNA Synthetase Associated with a Multi-system Pulmonary Disease Support Non-translational Function

The tRNA synthetases catalyze the first step of protein synthesis and have increasingly been studied for their nuclear and extra-cellular ex-translational activities. Human genetic conditions such as Charcot-Marie-Tooth have been attributed to dominant gain-of-function mutations in some tRNA synthet...

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Autores principales: Xu, Zhiwen, Lo, Wing-Sze, Beck, David B., Schuch, Luise A., Oláhová, Monika, Kopajtich, Robert, Chong, Yeeting E., Alston, Charlotte L., Seidl, Elias, Zhai, Liting, Lau, Ching-Fun, Timchak, Donna, LeDuc, Charles A., Borczuk, Alain C., Teich, Andrew F., Juusola, Jane, Sofeso, Christina, Müller, Christoph, Pierre, Germaine, Hilliard, Tom, Turnpenny, Peter D., Wagner, Matias, Kappler, Matthias, Brasch, Frank, Bouffard, John Paul, Nangle, Leslie A., Yang, Xiang-Lei, Zhang, Mingjie, Taylor, Robert W., Prokisch, Holger, Griese, Matthias, Chung, Wendy K., Schimmel, Paul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6035289/
https://www.ncbi.nlm.nih.gov/pubmed/29979980
http://dx.doi.org/10.1016/j.ajhg.2018.06.006
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author Xu, Zhiwen
Lo, Wing-Sze
Beck, David B.
Schuch, Luise A.
Oláhová, Monika
Kopajtich, Robert
Chong, Yeeting E.
Alston, Charlotte L.
Seidl, Elias
Zhai, Liting
Lau, Ching-Fun
Timchak, Donna
LeDuc, Charles A.
Borczuk, Alain C.
Teich, Andrew F.
Juusola, Jane
Sofeso, Christina
Müller, Christoph
Pierre, Germaine
Hilliard, Tom
Turnpenny, Peter D.
Wagner, Matias
Kappler, Matthias
Brasch, Frank
Bouffard, John Paul
Nangle, Leslie A.
Yang, Xiang-Lei
Zhang, Mingjie
Taylor, Robert W.
Prokisch, Holger
Griese, Matthias
Chung, Wendy K.
Schimmel, Paul
author_facet Xu, Zhiwen
Lo, Wing-Sze
Beck, David B.
Schuch, Luise A.
Oláhová, Monika
Kopajtich, Robert
Chong, Yeeting E.
Alston, Charlotte L.
Seidl, Elias
Zhai, Liting
Lau, Ching-Fun
Timchak, Donna
LeDuc, Charles A.
Borczuk, Alain C.
Teich, Andrew F.
Juusola, Jane
Sofeso, Christina
Müller, Christoph
Pierre, Germaine
Hilliard, Tom
Turnpenny, Peter D.
Wagner, Matias
Kappler, Matthias
Brasch, Frank
Bouffard, John Paul
Nangle, Leslie A.
Yang, Xiang-Lei
Zhang, Mingjie
Taylor, Robert W.
Prokisch, Holger
Griese, Matthias
Chung, Wendy K.
Schimmel, Paul
author_sort Xu, Zhiwen
collection PubMed
description The tRNA synthetases catalyze the first step of protein synthesis and have increasingly been studied for their nuclear and extra-cellular ex-translational activities. Human genetic conditions such as Charcot-Marie-Tooth have been attributed to dominant gain-of-function mutations in some tRNA synthetases. Unlike dominantly inherited gain-of-function mutations, recessive loss-of-function mutations can potentially elucidate ex-translational activities. We present here five individuals from four families with a multi-system disease associated with bi-allelic mutations in FARSB that encodes the beta chain of the alpha(2)beta(2) phenylalanine-tRNA synthetase (FARS). Collectively, the mutant alleles encompass a 5′-splice junction non-coding variant (SJV) and six missense variants, one of which is shared by unrelated individuals. The clinical condition is characterized by interstitial lung disease, cerebral aneurysms and brain calcifications, and cirrhosis. For the SJV, we confirmed exon skipping leading to a frameshift associated with noncatalytic activity. While the bi-allelic combination of the SJV with a p.Arg305Gln missense mutation in two individuals led to severe disease, cells from neither the asymptomatic heterozygous carriers nor the compound heterozygous affected individual had any defect in protein synthesis. These results support a disease mechanism independent of tRNA synthetase activities in protein translation and suggest that this FARS activity is essential for normal function in multiple organs.
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spelling pubmed-60352892018-08-22 Bi-allelic Mutations in Phe-tRNA Synthetase Associated with a Multi-system Pulmonary Disease Support Non-translational Function Xu, Zhiwen Lo, Wing-Sze Beck, David B. Schuch, Luise A. Oláhová, Monika Kopajtich, Robert Chong, Yeeting E. Alston, Charlotte L. Seidl, Elias Zhai, Liting Lau, Ching-Fun Timchak, Donna LeDuc, Charles A. Borczuk, Alain C. Teich, Andrew F. Juusola, Jane Sofeso, Christina Müller, Christoph Pierre, Germaine Hilliard, Tom Turnpenny, Peter D. Wagner, Matias Kappler, Matthias Brasch, Frank Bouffard, John Paul Nangle, Leslie A. Yang, Xiang-Lei Zhang, Mingjie Taylor, Robert W. Prokisch, Holger Griese, Matthias Chung, Wendy K. Schimmel, Paul Am J Hum Genet Article The tRNA synthetases catalyze the first step of protein synthesis and have increasingly been studied for their nuclear and extra-cellular ex-translational activities. Human genetic conditions such as Charcot-Marie-Tooth have been attributed to dominant gain-of-function mutations in some tRNA synthetases. Unlike dominantly inherited gain-of-function mutations, recessive loss-of-function mutations can potentially elucidate ex-translational activities. We present here five individuals from four families with a multi-system disease associated with bi-allelic mutations in FARSB that encodes the beta chain of the alpha(2)beta(2) phenylalanine-tRNA synthetase (FARS). Collectively, the mutant alleles encompass a 5′-splice junction non-coding variant (SJV) and six missense variants, one of which is shared by unrelated individuals. The clinical condition is characterized by interstitial lung disease, cerebral aneurysms and brain calcifications, and cirrhosis. For the SJV, we confirmed exon skipping leading to a frameshift associated with noncatalytic activity. While the bi-allelic combination of the SJV with a p.Arg305Gln missense mutation in two individuals led to severe disease, cells from neither the asymptomatic heterozygous carriers nor the compound heterozygous affected individual had any defect in protein synthesis. These results support a disease mechanism independent of tRNA synthetase activities in protein translation and suggest that this FARS activity is essential for normal function in multiple organs. Elsevier 2018-07-05 2018-07-05 /pmc/articles/PMC6035289/ /pubmed/29979980 http://dx.doi.org/10.1016/j.ajhg.2018.06.006 Text en © 2018 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xu, Zhiwen
Lo, Wing-Sze
Beck, David B.
Schuch, Luise A.
Oláhová, Monika
Kopajtich, Robert
Chong, Yeeting E.
Alston, Charlotte L.
Seidl, Elias
Zhai, Liting
Lau, Ching-Fun
Timchak, Donna
LeDuc, Charles A.
Borczuk, Alain C.
Teich, Andrew F.
Juusola, Jane
Sofeso, Christina
Müller, Christoph
Pierre, Germaine
Hilliard, Tom
Turnpenny, Peter D.
Wagner, Matias
Kappler, Matthias
Brasch, Frank
Bouffard, John Paul
Nangle, Leslie A.
Yang, Xiang-Lei
Zhang, Mingjie
Taylor, Robert W.
Prokisch, Holger
Griese, Matthias
Chung, Wendy K.
Schimmel, Paul
Bi-allelic Mutations in Phe-tRNA Synthetase Associated with a Multi-system Pulmonary Disease Support Non-translational Function
title Bi-allelic Mutations in Phe-tRNA Synthetase Associated with a Multi-system Pulmonary Disease Support Non-translational Function
title_full Bi-allelic Mutations in Phe-tRNA Synthetase Associated with a Multi-system Pulmonary Disease Support Non-translational Function
title_fullStr Bi-allelic Mutations in Phe-tRNA Synthetase Associated with a Multi-system Pulmonary Disease Support Non-translational Function
title_full_unstemmed Bi-allelic Mutations in Phe-tRNA Synthetase Associated with a Multi-system Pulmonary Disease Support Non-translational Function
title_short Bi-allelic Mutations in Phe-tRNA Synthetase Associated with a Multi-system Pulmonary Disease Support Non-translational Function
title_sort bi-allelic mutations in phe-trna synthetase associated with a multi-system pulmonary disease support non-translational function
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6035289/
https://www.ncbi.nlm.nih.gov/pubmed/29979980
http://dx.doi.org/10.1016/j.ajhg.2018.06.006
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