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Whole‐exome sequencing for variant discovery in blepharospasm

BACKGROUND: Blepharospasm (BSP) is a type of focal dystonia characterized by involuntary orbicularis oculi spasms that are usually bilateral, synchronous, and symmetrical. Despite strong evidence for genetic contributions to BSP, progress in the field has been constrained by small cohorts, incomplet...

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Autores principales: Tian, Jun, Vemula, Satya R., Xiao, Jianfeng, Valente, Enza Maria, Defazio, Giovanni, Petrucci, Simona, Gigante, Angelo Fabio, Rudzińska‐Bar, Monika, Wszolek, Zbigniew K., Kennelly, Kathleen D., Uitti, Ryan J., van Gerpen, Jay A., Hedera, Peter, Trimble, Elizabeth J., LeDoux, Mark S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6081235/
https://www.ncbi.nlm.nih.gov/pubmed/29770609
http://dx.doi.org/10.1002/mgg3.411
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author Tian, Jun
Vemula, Satya R.
Xiao, Jianfeng
Valente, Enza Maria
Defazio, Giovanni
Petrucci, Simona
Gigante, Angelo Fabio
Rudzińska‐Bar, Monika
Wszolek, Zbigniew K.
Kennelly, Kathleen D.
Uitti, Ryan J.
van Gerpen, Jay A.
Hedera, Peter
Trimble, Elizabeth J.
LeDoux, Mark S.
author_facet Tian, Jun
Vemula, Satya R.
Xiao, Jianfeng
Valente, Enza Maria
Defazio, Giovanni
Petrucci, Simona
Gigante, Angelo Fabio
Rudzińska‐Bar, Monika
Wszolek, Zbigniew K.
Kennelly, Kathleen D.
Uitti, Ryan J.
van Gerpen, Jay A.
Hedera, Peter
Trimble, Elizabeth J.
LeDoux, Mark S.
author_sort Tian, Jun
collection PubMed
description BACKGROUND: Blepharospasm (BSP) is a type of focal dystonia characterized by involuntary orbicularis oculi spasms that are usually bilateral, synchronous, and symmetrical. Despite strong evidence for genetic contributions to BSP, progress in the field has been constrained by small cohorts, incomplete penetrance, and late age of onset. Although several genetic etiologies for dystonia have been identified through whole‐exome sequencing (WES), none of these are characteristically associated with BSP as a singular or predominant manifestation. METHODS: We performed WES on 31 subjects from 21 independent pedigrees with BSP. The strongest candidate sequence variants derived from in silico analyses were confirmed with bidirectional Sanger sequencing and subjected to cosegregation analysis. RESULTS: Cosegregating deleterious variants (GRCH37/hg19) in CACNA1A (NM_001127222.1: c.7261_7262delinsGT, p.Pro2421Val), REEP4 (NM_025232.3: c.109C>T, p.Arg37Trp), TOR2A (NM_130459.3: c.568C>T, p.Arg190Cys), and ATP2A3 (NM_005173.3: c.1966C>T, p.Arg656Cys) were identified in four independent multigenerational pedigrees. Deleterious variants in HS1BP3 (NM_022460.3: c.94C>A, p.Gly32Cys) and GNA14 (NM_004297.3: c.989_990del, p.Thr330ArgfsTer67) were identified in a father and son with segmental cranio‐cervical dystonia first manifest as BSP. Deleterious variants in DNAH17,TRPV4,CAPN11,VPS13C,UNC13B,SPTBN4,MYOD1, and MRPL15 were found in two or more independent pedigrees. To our knowledge, none of these genes have previously been associated with isolated BSP, although other CACNA1A mutations have been associated with both positive and negative motor disorders including ataxia, episodic ataxia, hemiplegic migraine, and dystonia. CONCLUSIONS: Our WES datasets provide a platform for future studies of BSP genetics which will demand careful consideration of incomplete penetrance, pleiotropy, population stratification, and oligogenic inheritance patterns.
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spelling pubmed-60812352018-08-09 Whole‐exome sequencing for variant discovery in blepharospasm Tian, Jun Vemula, Satya R. Xiao, Jianfeng Valente, Enza Maria Defazio, Giovanni Petrucci, Simona Gigante, Angelo Fabio Rudzińska‐Bar, Monika Wszolek, Zbigniew K. Kennelly, Kathleen D. Uitti, Ryan J. van Gerpen, Jay A. Hedera, Peter Trimble, Elizabeth J. LeDoux, Mark S. Mol Genet Genomic Med Original Articles BACKGROUND: Blepharospasm (BSP) is a type of focal dystonia characterized by involuntary orbicularis oculi spasms that are usually bilateral, synchronous, and symmetrical. Despite strong evidence for genetic contributions to BSP, progress in the field has been constrained by small cohorts, incomplete penetrance, and late age of onset. Although several genetic etiologies for dystonia have been identified through whole‐exome sequencing (WES), none of these are characteristically associated with BSP as a singular or predominant manifestation. METHODS: We performed WES on 31 subjects from 21 independent pedigrees with BSP. The strongest candidate sequence variants derived from in silico analyses were confirmed with bidirectional Sanger sequencing and subjected to cosegregation analysis. RESULTS: Cosegregating deleterious variants (GRCH37/hg19) in CACNA1A (NM_001127222.1: c.7261_7262delinsGT, p.Pro2421Val), REEP4 (NM_025232.3: c.109C>T, p.Arg37Trp), TOR2A (NM_130459.3: c.568C>T, p.Arg190Cys), and ATP2A3 (NM_005173.3: c.1966C>T, p.Arg656Cys) were identified in four independent multigenerational pedigrees. Deleterious variants in HS1BP3 (NM_022460.3: c.94C>A, p.Gly32Cys) and GNA14 (NM_004297.3: c.989_990del, p.Thr330ArgfsTer67) were identified in a father and son with segmental cranio‐cervical dystonia first manifest as BSP. Deleterious variants in DNAH17,TRPV4,CAPN11,VPS13C,UNC13B,SPTBN4,MYOD1, and MRPL15 were found in two or more independent pedigrees. To our knowledge, none of these genes have previously been associated with isolated BSP, although other CACNA1A mutations have been associated with both positive and negative motor disorders including ataxia, episodic ataxia, hemiplegic migraine, and dystonia. CONCLUSIONS: Our WES datasets provide a platform for future studies of BSP genetics which will demand careful consideration of incomplete penetrance, pleiotropy, population stratification, and oligogenic inheritance patterns. John Wiley and Sons Inc. 2018-05-16 /pmc/articles/PMC6081235/ /pubmed/29770609 http://dx.doi.org/10.1002/mgg3.411 Text en © 2018 The Authors. Molecular Genetics & Genomic Medicine published by Wiley Periodicals, Inc. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Tian, Jun
Vemula, Satya R.
Xiao, Jianfeng
Valente, Enza Maria
Defazio, Giovanni
Petrucci, Simona
Gigante, Angelo Fabio
Rudzińska‐Bar, Monika
Wszolek, Zbigniew K.
Kennelly, Kathleen D.
Uitti, Ryan J.
van Gerpen, Jay A.
Hedera, Peter
Trimble, Elizabeth J.
LeDoux, Mark S.
Whole‐exome sequencing for variant discovery in blepharospasm
title Whole‐exome sequencing for variant discovery in blepharospasm
title_full Whole‐exome sequencing for variant discovery in blepharospasm
title_fullStr Whole‐exome sequencing for variant discovery in blepharospasm
title_full_unstemmed Whole‐exome sequencing for variant discovery in blepharospasm
title_short Whole‐exome sequencing for variant discovery in blepharospasm
title_sort whole‐exome sequencing for variant discovery in blepharospasm
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6081235/
https://www.ncbi.nlm.nih.gov/pubmed/29770609
http://dx.doi.org/10.1002/mgg3.411
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