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A synonymous codon variant in two patients with autosomal recessive bestrophinopathy alters in vitro splicing of BEST1

PURPOSE: Autosomal recessive bestrophinopathy (ARB) is a newly defined retinal dystrophy caused by biallelic mutations in bestrophin-1 (BEST1) and is hypothesized to represent the null bestrophin-1 phenotype in humans. The aim was to determine whether a synonymous BEST1 variant, c.102C>T, identif...

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Autores principales: Davidson, Alice E., Sergouniotis, Panagiotis I., Burgess-Mullan, Rosemary, Hart-Holden, Nichola, Low, Sancy, Foster, Paul J., Manson, Forbes D.C., Black, Graeme C.M., Webster, Andrew R.
Formato: Texto
Lenguaje:English
Publicado: Molecular Vision 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3013070/
https://www.ncbi.nlm.nih.gov/pubmed/21203346
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author Davidson, Alice E.
Sergouniotis, Panagiotis I.
Burgess-Mullan, Rosemary
Hart-Holden, Nichola
Low, Sancy
Foster, Paul J.
Manson, Forbes D.C.
Black, Graeme C.M.
Webster, Andrew R.
author_facet Davidson, Alice E.
Sergouniotis, Panagiotis I.
Burgess-Mullan, Rosemary
Hart-Holden, Nichola
Low, Sancy
Foster, Paul J.
Manson, Forbes D.C.
Black, Graeme C.M.
Webster, Andrew R.
author_sort Davidson, Alice E.
collection PubMed
description PURPOSE: Autosomal recessive bestrophinopathy (ARB) is a newly defined retinal dystrophy caused by biallelic mutations in bestrophin-1 (BEST1) and is hypothesized to represent the null bestrophin-1 phenotype in humans. The aim was to determine whether a synonymous BEST1 variant, c.102C>T, identified in two unrelated ARB patients, alters pre-mRNA splicing of the gene. Additionally a detailed phenotypic characterization of this distinctive condition is presented for both patients. METHODS: BEST1 was analyzed by direct sequencing. Patients underwent standard ophthalmic assessment. In silico and in vitro analysis using a minigene system was performed to assess whether a synonymous variant identified, c.102C>T p.Gly34Gly, alters pre-mRNA splicing of BEST1. RESULTS: Both ARB patients harbored either proven (patient 1; c.102C>T p.Gly34Gly and c.572T>C p.Leu191Pro) or presumed (patient 2; c.102C>T p.Gly34Gly and c.1470_1471delCA, p.His490GlnfsX24) biallelic mutations in BEST1 and were found to have phenotypes consistent with ARB. In vitro analysis of the synonymous variant, c.102C>T p.Gly34Gly, demonstrated it to introduce a cryptic splice donor site 52 nucleotides upstream of the actual splice donor site. CONCLUSIONS: The novel BEST1 variant identified, c.102C>T p.Gly34Gly, alters pre-mRNA splicing in vitro and is potentially pathogenic. In vivo this splicing variant is predicted to lead to the production of an mRNA transcript with a premature termination codon (p.Glu35TrpfsX11) that is predicted to be degraded by NMD.
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spelling pubmed-30130702011-01-03 A synonymous codon variant in two patients with autosomal recessive bestrophinopathy alters in vitro splicing of BEST1 Davidson, Alice E. Sergouniotis, Panagiotis I. Burgess-Mullan, Rosemary Hart-Holden, Nichola Low, Sancy Foster, Paul J. Manson, Forbes D.C. Black, Graeme C.M. Webster, Andrew R. Mol Vis Research Article PURPOSE: Autosomal recessive bestrophinopathy (ARB) is a newly defined retinal dystrophy caused by biallelic mutations in bestrophin-1 (BEST1) and is hypothesized to represent the null bestrophin-1 phenotype in humans. The aim was to determine whether a synonymous BEST1 variant, c.102C>T, identified in two unrelated ARB patients, alters pre-mRNA splicing of the gene. Additionally a detailed phenotypic characterization of this distinctive condition is presented for both patients. METHODS: BEST1 was analyzed by direct sequencing. Patients underwent standard ophthalmic assessment. In silico and in vitro analysis using a minigene system was performed to assess whether a synonymous variant identified, c.102C>T p.Gly34Gly, alters pre-mRNA splicing of BEST1. RESULTS: Both ARB patients harbored either proven (patient 1; c.102C>T p.Gly34Gly and c.572T>C p.Leu191Pro) or presumed (patient 2; c.102C>T p.Gly34Gly and c.1470_1471delCA, p.His490GlnfsX24) biallelic mutations in BEST1 and were found to have phenotypes consistent with ARB. In vitro analysis of the synonymous variant, c.102C>T p.Gly34Gly, demonstrated it to introduce a cryptic splice donor site 52 nucleotides upstream of the actual splice donor site. CONCLUSIONS: The novel BEST1 variant identified, c.102C>T p.Gly34Gly, alters pre-mRNA splicing in vitro and is potentially pathogenic. In vivo this splicing variant is predicted to lead to the production of an mRNA transcript with a premature termination codon (p.Glu35TrpfsX11) that is predicted to be degraded by NMD. Molecular Vision 2010-12-31 /pmc/articles/PMC3013070/ /pubmed/21203346 Text en Copyright © 2010 Molecular Vision. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Davidson, Alice E.
Sergouniotis, Panagiotis I.
Burgess-Mullan, Rosemary
Hart-Holden, Nichola
Low, Sancy
Foster, Paul J.
Manson, Forbes D.C.
Black, Graeme C.M.
Webster, Andrew R.
A synonymous codon variant in two patients with autosomal recessive bestrophinopathy alters in vitro splicing of BEST1
title A synonymous codon variant in two patients with autosomal recessive bestrophinopathy alters in vitro splicing of BEST1
title_full A synonymous codon variant in two patients with autosomal recessive bestrophinopathy alters in vitro splicing of BEST1
title_fullStr A synonymous codon variant in two patients with autosomal recessive bestrophinopathy alters in vitro splicing of BEST1
title_full_unstemmed A synonymous codon variant in two patients with autosomal recessive bestrophinopathy alters in vitro splicing of BEST1
title_short A synonymous codon variant in two patients with autosomal recessive bestrophinopathy alters in vitro splicing of BEST1
title_sort synonymous codon variant in two patients with autosomal recessive bestrophinopathy alters in vitro splicing of best1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3013070/
https://www.ncbi.nlm.nih.gov/pubmed/21203346
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