Equine multiple congenital ocular anomalies and silver coat colour result from the pleiotropic effects of mutant PMEL.

Equine Multiple Congenital Ocular Anomalies (MCOA) syndrome is a heritable eye disorder mainly affecting silver colored horses. Clinically, the disease manifests in two distinct classes depending on the horse genotype. Horses homozygous for the mutant allele present with a wide range of ocular defec...

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Main Authors: Lisa S Andersson, Maria Wilbe, Agnese Viluma, Gus Cothran, Björn Ekesten, Susan Ewart, Gabriella Lindgren
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3781063?pdf=render
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spelling doaj-93d697d5b6474b0e96b0e4330cbfe6782020-11-25T01:20:49ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0189e7563910.1371/journal.pone.0075639Equine multiple congenital ocular anomalies and silver coat colour result from the pleiotropic effects of mutant PMEL.Lisa S AnderssonMaria WilbeAgnese VilumaGus CothranBjörn EkestenSusan EwartGabriella LindgrenEquine Multiple Congenital Ocular Anomalies (MCOA) syndrome is a heritable eye disorder mainly affecting silver colored horses. Clinically, the disease manifests in two distinct classes depending on the horse genotype. Horses homozygous for the mutant allele present with a wide range of ocular defects, such as iris stromal hypoplasia, abnormal pectinate ligaments, megaloglobus, iridociliary cysts and cataracts. The phenotype of heterozygous horses is less severe and predominantly includes iridociliary cysts, which occasionally extend into the temporal retina. In order to determine the genetic cause of MCOA syndrome we sequenced the entire previously characterized 208 kilobase region on chromosome 6 in ten individuals; five MCOA affected horses from three different breeds, one horse with the intermediate Cyst phenotype and four unaffected controls from two different breeds. This was performed using Illumina TruSeq technology with paired-end reads. Through the systematic exclusion of all polymorphisms barring two SNPs in PMEL, a missense mutation previously reported to be associated with the silver coat colour and a non-conserved intronic SNP, we establish that this gene is responsible for MCOA syndrome. Our finding, together with recent advances that show aberrant protein function due to the coding mutation, suggests that the missense mutation is causative and has pleiotrophic effect, causing both the horse silver coat color and MCOA syndrome.http://europepmc.org/articles/PMC3781063?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Lisa S Andersson
Maria Wilbe
Agnese Viluma
Gus Cothran
Björn Ekesten
Susan Ewart
Gabriella Lindgren
spellingShingle Lisa S Andersson
Maria Wilbe
Agnese Viluma
Gus Cothran
Björn Ekesten
Susan Ewart
Gabriella Lindgren
Equine multiple congenital ocular anomalies and silver coat colour result from the pleiotropic effects of mutant PMEL.
PLoS ONE
author_facet Lisa S Andersson
Maria Wilbe
Agnese Viluma
Gus Cothran
Björn Ekesten
Susan Ewart
Gabriella Lindgren
author_sort Lisa S Andersson
title Equine multiple congenital ocular anomalies and silver coat colour result from the pleiotropic effects of mutant PMEL.
title_short Equine multiple congenital ocular anomalies and silver coat colour result from the pleiotropic effects of mutant PMEL.
title_full Equine multiple congenital ocular anomalies and silver coat colour result from the pleiotropic effects of mutant PMEL.
title_fullStr Equine multiple congenital ocular anomalies and silver coat colour result from the pleiotropic effects of mutant PMEL.
title_full_unstemmed Equine multiple congenital ocular anomalies and silver coat colour result from the pleiotropic effects of mutant PMEL.
title_sort equine multiple congenital ocular anomalies and silver coat colour result from the pleiotropic effects of mutant pmel.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Equine Multiple Congenital Ocular Anomalies (MCOA) syndrome is a heritable eye disorder mainly affecting silver colored horses. Clinically, the disease manifests in two distinct classes depending on the horse genotype. Horses homozygous for the mutant allele present with a wide range of ocular defects, such as iris stromal hypoplasia, abnormal pectinate ligaments, megaloglobus, iridociliary cysts and cataracts. The phenotype of heterozygous horses is less severe and predominantly includes iridociliary cysts, which occasionally extend into the temporal retina. In order to determine the genetic cause of MCOA syndrome we sequenced the entire previously characterized 208 kilobase region on chromosome 6 in ten individuals; five MCOA affected horses from three different breeds, one horse with the intermediate Cyst phenotype and four unaffected controls from two different breeds. This was performed using Illumina TruSeq technology with paired-end reads. Through the systematic exclusion of all polymorphisms barring two SNPs in PMEL, a missense mutation previously reported to be associated with the silver coat colour and a non-conserved intronic SNP, we establish that this gene is responsible for MCOA syndrome. Our finding, together with recent advances that show aberrant protein function due to the coding mutation, suggests that the missense mutation is causative and has pleiotrophic effect, causing both the horse silver coat color and MCOA syndrome.
url http://europepmc.org/articles/PMC3781063?pdf=render
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