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CNGB3 Missense Variant Causes Recessive Achromatopsia in Original Braunvieh Cattle

Sporadic occurrence of inherited eye disorders has been reported in cattle but so far pathogenic variants were found only for rare forms of cataract but not for retinopathies. The aim of this study was to characterize the phenotype and the genetic aetiology of a recessive form of congenital day-blin...

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Autores principales: Häfliger, Irene M., Marchionatti, Emma, Stengård, Michele, Wolf-Hofstetter, Sonja, Paris, Julia M., Jacinto, Joana G. P., Watté, Christine, Voelter, Katrin, Occelli, Laurence M., Komáromy, András M., Oevermann, Anna, Goepfert, Christine, Borgo, Angelica, Roduit, Raphaël, Spengeler, Mirjam, Seefried, Franz R., Drögemüller, Cord
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8620519/
https://www.ncbi.nlm.nih.gov/pubmed/34830323
http://dx.doi.org/10.3390/ijms222212440
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author Häfliger, Irene M.
Marchionatti, Emma
Stengård, Michele
Wolf-Hofstetter, Sonja
Paris, Julia M.
Jacinto, Joana G. P.
Watté, Christine
Voelter, Katrin
Occelli, Laurence M.
Komáromy, András M.
Oevermann, Anna
Goepfert, Christine
Borgo, Angelica
Roduit, Raphaël
Spengeler, Mirjam
Seefried, Franz R.
Drögemüller, Cord
author_facet Häfliger, Irene M.
Marchionatti, Emma
Stengård, Michele
Wolf-Hofstetter, Sonja
Paris, Julia M.
Jacinto, Joana G. P.
Watté, Christine
Voelter, Katrin
Occelli, Laurence M.
Komáromy, András M.
Oevermann, Anna
Goepfert, Christine
Borgo, Angelica
Roduit, Raphaël
Spengeler, Mirjam
Seefried, Franz R.
Drögemüller, Cord
author_sort Häfliger, Irene M.
collection PubMed
description Sporadic occurrence of inherited eye disorders has been reported in cattle but so far pathogenic variants were found only for rare forms of cataract but not for retinopathies. The aim of this study was to characterize the phenotype and the genetic aetiology of a recessive form of congenital day-blindness observed in several cases of purebred Original Braunvieh cattle. Electroretinography in an affected calf revealed absent cone-mediated function, whereas the rods continue to function normally. Brain areas involved in vision were morphologically normal. When targeting cones by immunofluorescence, a decrease in cone number and an accumulation of beta subunits of cone cyclic-nucleotide gated channel (CNGB3) in the outer plexiform layer of affected animals was obvious. Achromatopsia is a monogenic Mendelian disease characterized by the loss of cone photoreceptor function resulting in day-blindness, total color-blindness, and decreased central visual acuity. After SNP genotyping and subsequent homozygosity mapping with twelve affected cattle, we performed whole-genome sequencing and variant calling of three cases. We identified a single missense variant in the bovine CNGB3 gene situated in a ~2.5 Mb homozygous genome region on chromosome 14 shared between all cases. All affected cattle were homozygous carriers of the p.Asp251Asn mutation that was predicted to be deleterious, affecting an evolutionary conserved residue. In conclusion, we have evidence for the occurrence of a breed-specific novel CNGB3-related form of recessively inherited achromatopsia in Original Braunvieh cattle which we have designated OH1 showing an allele frequency of the deleterious allele of ~8%. The identification of carriers will enable selection against this inherited disorder. The studied cattle might serve as an animal model to further elucidate the function of CNGB3 in mammals.
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spelling pubmed-86205192021-11-27 CNGB3 Missense Variant Causes Recessive Achromatopsia in Original Braunvieh Cattle Häfliger, Irene M. Marchionatti, Emma Stengård, Michele Wolf-Hofstetter, Sonja Paris, Julia M. Jacinto, Joana G. P. Watté, Christine Voelter, Katrin Occelli, Laurence M. Komáromy, András M. Oevermann, Anna Goepfert, Christine Borgo, Angelica Roduit, Raphaël Spengeler, Mirjam Seefried, Franz R. Drögemüller, Cord Int J Mol Sci Article Sporadic occurrence of inherited eye disorders has been reported in cattle but so far pathogenic variants were found only for rare forms of cataract but not for retinopathies. The aim of this study was to characterize the phenotype and the genetic aetiology of a recessive form of congenital day-blindness observed in several cases of purebred Original Braunvieh cattle. Electroretinography in an affected calf revealed absent cone-mediated function, whereas the rods continue to function normally. Brain areas involved in vision were morphologically normal. When targeting cones by immunofluorescence, a decrease in cone number and an accumulation of beta subunits of cone cyclic-nucleotide gated channel (CNGB3) in the outer plexiform layer of affected animals was obvious. Achromatopsia is a monogenic Mendelian disease characterized by the loss of cone photoreceptor function resulting in day-blindness, total color-blindness, and decreased central visual acuity. After SNP genotyping and subsequent homozygosity mapping with twelve affected cattle, we performed whole-genome sequencing and variant calling of three cases. We identified a single missense variant in the bovine CNGB3 gene situated in a ~2.5 Mb homozygous genome region on chromosome 14 shared between all cases. All affected cattle were homozygous carriers of the p.Asp251Asn mutation that was predicted to be deleterious, affecting an evolutionary conserved residue. In conclusion, we have evidence for the occurrence of a breed-specific novel CNGB3-related form of recessively inherited achromatopsia in Original Braunvieh cattle which we have designated OH1 showing an allele frequency of the deleterious allele of ~8%. The identification of carriers will enable selection against this inherited disorder. The studied cattle might serve as an animal model to further elucidate the function of CNGB3 in mammals. MDPI 2021-11-18 /pmc/articles/PMC8620519/ /pubmed/34830323 http://dx.doi.org/10.3390/ijms222212440 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Häfliger, Irene M.
Marchionatti, Emma
Stengård, Michele
Wolf-Hofstetter, Sonja
Paris, Julia M.
Jacinto, Joana G. P.
Watté, Christine
Voelter, Katrin
Occelli, Laurence M.
Komáromy, András M.
Oevermann, Anna
Goepfert, Christine
Borgo, Angelica
Roduit, Raphaël
Spengeler, Mirjam
Seefried, Franz R.
Drögemüller, Cord
CNGB3 Missense Variant Causes Recessive Achromatopsia in Original Braunvieh Cattle
title CNGB3 Missense Variant Causes Recessive Achromatopsia in Original Braunvieh Cattle
title_full CNGB3 Missense Variant Causes Recessive Achromatopsia in Original Braunvieh Cattle
title_fullStr CNGB3 Missense Variant Causes Recessive Achromatopsia in Original Braunvieh Cattle
title_full_unstemmed CNGB3 Missense Variant Causes Recessive Achromatopsia in Original Braunvieh Cattle
title_short CNGB3 Missense Variant Causes Recessive Achromatopsia in Original Braunvieh Cattle
title_sort cngb3 missense variant causes recessive achromatopsia in original braunvieh cattle
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8620519/
https://www.ncbi.nlm.nih.gov/pubmed/34830323
http://dx.doi.org/10.3390/ijms222212440
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