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Mutations in CPAMD8 Cause a Unique Form of Autosomal-Recessive Anterior Segment Dysgenesis

Anterior segment dysgeneses (ASDs) comprise a spectrum of developmental disorders affecting the anterior segment of the eye. Here, we describe three unrelated families affected by a previously unclassified form of ASD. Shared ocular manifestations include bilateral iris hypoplasia, ectopia lentis, c...

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Autores principales: Cheong, Sek-Shir, Hentschel, Lisa, Davidson, Alice E., Gerrelli, Dianne, Davie, Rebecca, Rizzo, Roberta, Pontikos, Nikolas, Plagnol, Vincent, Moore, Anthony T., Sowden, Jane C., Michaelides, Michel, Snead, Martin, Tuft, Stephen J., Hardcastle, Alison J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5142107/
https://www.ncbi.nlm.nih.gov/pubmed/27839872
http://dx.doi.org/10.1016/j.ajhg.2016.09.022
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author Cheong, Sek-Shir
Hentschel, Lisa
Davidson, Alice E.
Gerrelli, Dianne
Davie, Rebecca
Rizzo, Roberta
Pontikos, Nikolas
Plagnol, Vincent
Moore, Anthony T.
Sowden, Jane C.
Michaelides, Michel
Snead, Martin
Tuft, Stephen J.
Hardcastle, Alison J.
author_facet Cheong, Sek-Shir
Hentschel, Lisa
Davidson, Alice E.
Gerrelli, Dianne
Davie, Rebecca
Rizzo, Roberta
Pontikos, Nikolas
Plagnol, Vincent
Moore, Anthony T.
Sowden, Jane C.
Michaelides, Michel
Snead, Martin
Tuft, Stephen J.
Hardcastle, Alison J.
author_sort Cheong, Sek-Shir
collection PubMed
description Anterior segment dysgeneses (ASDs) comprise a spectrum of developmental disorders affecting the anterior segment of the eye. Here, we describe three unrelated families affected by a previously unclassified form of ASD. Shared ocular manifestations include bilateral iris hypoplasia, ectopia lentis, corectopia, ectropion uveae, and cataracts. Whole-exome sequencing and targeted Sanger sequencing identified mutations in CPAMD8 (C3 and PZP-like alpha-2-macroglobulin domain-containing protein 8) as the cause of recessive ASD in all three families. A homozygous missense mutation in the evolutionarily conserved alpha-2-macroglobulin (A2M) domain of CPAMD8, c.4351T>C (p. Ser1451Pro), was identified in family 1. In family 2, compound heterozygous frameshift, c.2352_2353insC (p.Arg785Glnfs(∗)23), and splice-site, c.4549-1G>A, mutations were identified. Two affected siblings in the third family were compound heterozygous for splice-site mutations c.700+1G>T and c.4002+1G>A. CPAMD8 splice-site mutations caused aberrant pre-mRNA splicing in vivo or in vitro. Intriguingly, our phylogenetic analysis revealed rodent lineage-specific CPAMD8 deletion, precluding a developmental expression study in mice. We therefore investigated the spatiotemporal expression of CPAMD8 in the developing human eye. RT-PCR and in situ hybridization revealed CPAMD8 expression in the lens, iris, cornea, and retina early in development, including strong expression in the distal tips of the retinal neuroepithelium that form the iris and ciliary body, thus correlating CPAMD8 expression with the affected tissues. Our study delineates a unique form of recessive ASD and defines a role for CPAMD8, a protein of unknown function, in anterior segment development, implying another pathway for the pathogenicity of ASD.
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spelling pubmed-51421072017-06-01 Mutations in CPAMD8 Cause a Unique Form of Autosomal-Recessive Anterior Segment Dysgenesis Cheong, Sek-Shir Hentschel, Lisa Davidson, Alice E. Gerrelli, Dianne Davie, Rebecca Rizzo, Roberta Pontikos, Nikolas Plagnol, Vincent Moore, Anthony T. Sowden, Jane C. Michaelides, Michel Snead, Martin Tuft, Stephen J. Hardcastle, Alison J. Am J Hum Genet Report Anterior segment dysgeneses (ASDs) comprise a spectrum of developmental disorders affecting the anterior segment of the eye. Here, we describe three unrelated families affected by a previously unclassified form of ASD. Shared ocular manifestations include bilateral iris hypoplasia, ectopia lentis, corectopia, ectropion uveae, and cataracts. Whole-exome sequencing and targeted Sanger sequencing identified mutations in CPAMD8 (C3 and PZP-like alpha-2-macroglobulin domain-containing protein 8) as the cause of recessive ASD in all three families. A homozygous missense mutation in the evolutionarily conserved alpha-2-macroglobulin (A2M) domain of CPAMD8, c.4351T>C (p. Ser1451Pro), was identified in family 1. In family 2, compound heterozygous frameshift, c.2352_2353insC (p.Arg785Glnfs(∗)23), and splice-site, c.4549-1G>A, mutations were identified. Two affected siblings in the third family were compound heterozygous for splice-site mutations c.700+1G>T and c.4002+1G>A. CPAMD8 splice-site mutations caused aberrant pre-mRNA splicing in vivo or in vitro. Intriguingly, our phylogenetic analysis revealed rodent lineage-specific CPAMD8 deletion, precluding a developmental expression study in mice. We therefore investigated the spatiotemporal expression of CPAMD8 in the developing human eye. RT-PCR and in situ hybridization revealed CPAMD8 expression in the lens, iris, cornea, and retina early in development, including strong expression in the distal tips of the retinal neuroepithelium that form the iris and ciliary body, thus correlating CPAMD8 expression with the affected tissues. Our study delineates a unique form of recessive ASD and defines a role for CPAMD8, a protein of unknown function, in anterior segment development, implying another pathway for the pathogenicity of ASD. Elsevier 2016-12-01 2016-11-10 /pmc/articles/PMC5142107/ /pubmed/27839872 http://dx.doi.org/10.1016/j.ajhg.2016.09.022 Text en © 2016 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Report
Cheong, Sek-Shir
Hentschel, Lisa
Davidson, Alice E.
Gerrelli, Dianne
Davie, Rebecca
Rizzo, Roberta
Pontikos, Nikolas
Plagnol, Vincent
Moore, Anthony T.
Sowden, Jane C.
Michaelides, Michel
Snead, Martin
Tuft, Stephen J.
Hardcastle, Alison J.
Mutations in CPAMD8 Cause a Unique Form of Autosomal-Recessive Anterior Segment Dysgenesis
title Mutations in CPAMD8 Cause a Unique Form of Autosomal-Recessive Anterior Segment Dysgenesis
title_full Mutations in CPAMD8 Cause a Unique Form of Autosomal-Recessive Anterior Segment Dysgenesis
title_fullStr Mutations in CPAMD8 Cause a Unique Form of Autosomal-Recessive Anterior Segment Dysgenesis
title_full_unstemmed Mutations in CPAMD8 Cause a Unique Form of Autosomal-Recessive Anterior Segment Dysgenesis
title_short Mutations in CPAMD8 Cause a Unique Form of Autosomal-Recessive Anterior Segment Dysgenesis
title_sort mutations in cpamd8 cause a unique form of autosomal-recessive anterior segment dysgenesis
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5142107/
https://www.ncbi.nlm.nih.gov/pubmed/27839872
http://dx.doi.org/10.1016/j.ajhg.2016.09.022
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