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A Novel Dominant Mutation in SAG, the Arrestin-1 Gene, Is a Common Cause of Retinitis Pigmentosa in Hispanic Families in the Southwestern United States

PURPOSE: To identify the causes of autosomal dominant retinitis pigmentosa (adRP) in a cohort of families without mutations in known adRP genes and consequently to characterize a novel dominant-acting missense mutation in SAG. METHODS: Patients underwent ophthalmologic testing and were screened for...

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Autores principales: Sullivan, Lori S., Bowne, Sara J., Koboldt, Daniel C., Cadena, Elizabeth L., Heckenlively, John R., Branham, Kari E., Wheaton, Dianna H., Jones, Kaylie D., Ruiz, Richard S., Pennesi, Mark E., Yang, Paul, Davis-Boozer, David, Northrup, Hope, Gurevich, Vsevold V., Chen, Rui, Xu, Mingchu, Li, Yumei, Birch, David G., Daiger, Stephen P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Association for Research in Vision and Ophthalmology 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5455168/
https://www.ncbi.nlm.nih.gov/pubmed/28549094
http://dx.doi.org/10.1167/iovs.16-21341
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author Sullivan, Lori S.
Bowne, Sara J.
Koboldt, Daniel C.
Cadena, Elizabeth L.
Heckenlively, John R.
Branham, Kari E.
Wheaton, Dianna H.
Jones, Kaylie D.
Ruiz, Richard S.
Pennesi, Mark E.
Yang, Paul
Davis-Boozer, David
Northrup, Hope
Gurevich, Vsevold V.
Chen, Rui
Xu, Mingchu
Li, Yumei
Birch, David G.
Daiger, Stephen P.
author_facet Sullivan, Lori S.
Bowne, Sara J.
Koboldt, Daniel C.
Cadena, Elizabeth L.
Heckenlively, John R.
Branham, Kari E.
Wheaton, Dianna H.
Jones, Kaylie D.
Ruiz, Richard S.
Pennesi, Mark E.
Yang, Paul
Davis-Boozer, David
Northrup, Hope
Gurevich, Vsevold V.
Chen, Rui
Xu, Mingchu
Li, Yumei
Birch, David G.
Daiger, Stephen P.
author_sort Sullivan, Lori S.
collection PubMed
description PURPOSE: To identify the causes of autosomal dominant retinitis pigmentosa (adRP) in a cohort of families without mutations in known adRP genes and consequently to characterize a novel dominant-acting missense mutation in SAG. METHODS: Patients underwent ophthalmologic testing and were screened for mutations using targeted-capture and whole-exome next-generation sequencing. Confirmation and additional screening were done by Sanger sequencing. Haplotypes segregating with the mutation were determined using short tandem repeat and single nucleotide variant polymorphisms. Genealogies were established by interviews of family members. RESULTS: Eight families in a cohort of 300 adRP families, and four additional families, were found to have a novel heterozygous mutation in the SAG gene, c.440G>T; p.Cys147Phe. Patients exhibited symptoms of retinitis pigmentosa and none showed symptoms characteristic of Oguchi disease. All families are of Hispanic descent and most were ascertained in Texas or California. A single haplotype including the SAG mutation was identified in all families. The mutation dramatically alters a conserved amino acid, is extremely rare in global databases, and was not found in 4000+ exomes from Hispanic controls. Molecular modeling based on the crystal structure of bovine arrestin-1 predicts protein misfolding/instability. CONCLUSIONS: This is the first dominant-acting mutation identified in SAG, a founder mutation possibly originating in Mexico several centuries ago. The phenotype is clearly adRP and is distinct from the previously reported phenotypes of recessive null mutations, that is, Oguchi disease and recessive RP. The mutation accounts for 3% of the 300 families in the adRP Cohort and 36% of Hispanic families in this cohort.
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spelling pubmed-54551682017-06-04 A Novel Dominant Mutation in SAG, the Arrestin-1 Gene, Is a Common Cause of Retinitis Pigmentosa in Hispanic Families in the Southwestern United States Sullivan, Lori S. Bowne, Sara J. Koboldt, Daniel C. Cadena, Elizabeth L. Heckenlively, John R. Branham, Kari E. Wheaton, Dianna H. Jones, Kaylie D. Ruiz, Richard S. Pennesi, Mark E. Yang, Paul Davis-Boozer, David Northrup, Hope Gurevich, Vsevold V. Chen, Rui Xu, Mingchu Li, Yumei Birch, David G. Daiger, Stephen P. Invest Ophthalmol Vis Sci Biochemistry and Molecular Biology PURPOSE: To identify the causes of autosomal dominant retinitis pigmentosa (adRP) in a cohort of families without mutations in known adRP genes and consequently to characterize a novel dominant-acting missense mutation in SAG. METHODS: Patients underwent ophthalmologic testing and were screened for mutations using targeted-capture and whole-exome next-generation sequencing. Confirmation and additional screening were done by Sanger sequencing. Haplotypes segregating with the mutation were determined using short tandem repeat and single nucleotide variant polymorphisms. Genealogies were established by interviews of family members. RESULTS: Eight families in a cohort of 300 adRP families, and four additional families, were found to have a novel heterozygous mutation in the SAG gene, c.440G>T; p.Cys147Phe. Patients exhibited symptoms of retinitis pigmentosa and none showed symptoms characteristic of Oguchi disease. All families are of Hispanic descent and most were ascertained in Texas or California. A single haplotype including the SAG mutation was identified in all families. The mutation dramatically alters a conserved amino acid, is extremely rare in global databases, and was not found in 4000+ exomes from Hispanic controls. Molecular modeling based on the crystal structure of bovine arrestin-1 predicts protein misfolding/instability. CONCLUSIONS: This is the first dominant-acting mutation identified in SAG, a founder mutation possibly originating in Mexico several centuries ago. The phenotype is clearly adRP and is distinct from the previously reported phenotypes of recessive null mutations, that is, Oguchi disease and recessive RP. The mutation accounts for 3% of the 300 families in the adRP Cohort and 36% of Hispanic families in this cohort. The Association for Research in Vision and Ophthalmology 2017-05 /pmc/articles/PMC5455168/ /pubmed/28549094 http://dx.doi.org/10.1167/iovs.16-21341 Text en Copyright 2017 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
spellingShingle Biochemistry and Molecular Biology
Sullivan, Lori S.
Bowne, Sara J.
Koboldt, Daniel C.
Cadena, Elizabeth L.
Heckenlively, John R.
Branham, Kari E.
Wheaton, Dianna H.
Jones, Kaylie D.
Ruiz, Richard S.
Pennesi, Mark E.
Yang, Paul
Davis-Boozer, David
Northrup, Hope
Gurevich, Vsevold V.
Chen, Rui
Xu, Mingchu
Li, Yumei
Birch, David G.
Daiger, Stephen P.
A Novel Dominant Mutation in SAG, the Arrestin-1 Gene, Is a Common Cause of Retinitis Pigmentosa in Hispanic Families in the Southwestern United States
title A Novel Dominant Mutation in SAG, the Arrestin-1 Gene, Is a Common Cause of Retinitis Pigmentosa in Hispanic Families in the Southwestern United States
title_full A Novel Dominant Mutation in SAG, the Arrestin-1 Gene, Is a Common Cause of Retinitis Pigmentosa in Hispanic Families in the Southwestern United States
title_fullStr A Novel Dominant Mutation in SAG, the Arrestin-1 Gene, Is a Common Cause of Retinitis Pigmentosa in Hispanic Families in the Southwestern United States
title_full_unstemmed A Novel Dominant Mutation in SAG, the Arrestin-1 Gene, Is a Common Cause of Retinitis Pigmentosa in Hispanic Families in the Southwestern United States
title_short A Novel Dominant Mutation in SAG, the Arrestin-1 Gene, Is a Common Cause of Retinitis Pigmentosa in Hispanic Families in the Southwestern United States
title_sort novel dominant mutation in sag, the arrestin-1 gene, is a common cause of retinitis pigmentosa in hispanic families in the southwestern united states
topic Biochemistry and Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5455168/
https://www.ncbi.nlm.nih.gov/pubmed/28549094
http://dx.doi.org/10.1167/iovs.16-21341
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