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Mutation of SALL2 causes recessive ocular coloboma in humans and mice

Ocular coloboma is a congenital defect resulting from failure of normal closure of the optic fissure during embryonic eye development. This birth defect causes childhood blindness worldwide, yet the genetic etiology is poorly understood. Here, we identified a novel homozygous mutation in the SALL2 g...

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Autores principales: Kelberman, Daniel, Islam, Lily, Lakowski, Jörn, Bacchelli, Chiara, Chanudet, Estelle, Lescai, Francesco, Patel, Aara, Stupka, Elia, Buck, Anja, Wolf, Stephan, Beales, Philip L., Jacques, Thomas S., Bitner-Glindzicz, Maria, Liasis, Alki, Lehmann, Ordan J., Kohlhase, Jürgen, Nischal, Ken K., Sowden, Jane C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3990155/
https://www.ncbi.nlm.nih.gov/pubmed/24412933
http://dx.doi.org/10.1093/hmg/ddt643
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author Kelberman, Daniel
Islam, Lily
Lakowski, Jörn
Bacchelli, Chiara
Chanudet, Estelle
Lescai, Francesco
Patel, Aara
Stupka, Elia
Buck, Anja
Wolf, Stephan
Beales, Philip L.
Jacques, Thomas S.
Bitner-Glindzicz, Maria
Liasis, Alki
Lehmann, Ordan J.
Kohlhase, Jürgen
Nischal, Ken K.
Sowden, Jane C.
author_facet Kelberman, Daniel
Islam, Lily
Lakowski, Jörn
Bacchelli, Chiara
Chanudet, Estelle
Lescai, Francesco
Patel, Aara
Stupka, Elia
Buck, Anja
Wolf, Stephan
Beales, Philip L.
Jacques, Thomas S.
Bitner-Glindzicz, Maria
Liasis, Alki
Lehmann, Ordan J.
Kohlhase, Jürgen
Nischal, Ken K.
Sowden, Jane C.
author_sort Kelberman, Daniel
collection PubMed
description Ocular coloboma is a congenital defect resulting from failure of normal closure of the optic fissure during embryonic eye development. This birth defect causes childhood blindness worldwide, yet the genetic etiology is poorly understood. Here, we identified a novel homozygous mutation in the SALL2 gene in members of a consanguineous family affected with non-syndromic ocular coloboma variably affecting the iris and retina. This mutation, c.85G>T, introduces a premature termination codon (p.Glu29*) predicted to truncate the SALL2 protein so that it lacks three clusters of zinc-finger motifs that are essential for DNA-binding activity. This discovery identifies SALL2 as the third member of the Drosophila homeotic Spalt-like family of developmental transcription factor genes implicated in human disease. SALL2 is expressed in the developing human retina at the time of, and subsequent to, optic fissure closure. Analysis of Sall2-deficient mouse embryos revealed delayed apposition of the optic fissure margins and the persistence of an anterior retinal coloboma phenotype after birth. Sall2-deficient embryos displayed correct posterior closure toward the optic nerve head, and upon contact of the fissure margins, dissolution of the basal lamina occurred and PAX2, known to be critical for this process, was expressed normally. Anterior closure was disrupted with the fissure margins failing to meet, or in some cases misaligning leading to a retinal lesion. These observations demonstrate, for the first time, a role for SALL2 in eye morphogenesis and that loss of function of the gene causes ocular coloboma in humans and mice.
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spelling pubmed-39901552014-04-17 Mutation of SALL2 causes recessive ocular coloboma in humans and mice Kelberman, Daniel Islam, Lily Lakowski, Jörn Bacchelli, Chiara Chanudet, Estelle Lescai, Francesco Patel, Aara Stupka, Elia Buck, Anja Wolf, Stephan Beales, Philip L. Jacques, Thomas S. Bitner-Glindzicz, Maria Liasis, Alki Lehmann, Ordan J. Kohlhase, Jürgen Nischal, Ken K. Sowden, Jane C. Hum Mol Genet Articles Ocular coloboma is a congenital defect resulting from failure of normal closure of the optic fissure during embryonic eye development. This birth defect causes childhood blindness worldwide, yet the genetic etiology is poorly understood. Here, we identified a novel homozygous mutation in the SALL2 gene in members of a consanguineous family affected with non-syndromic ocular coloboma variably affecting the iris and retina. This mutation, c.85G>T, introduces a premature termination codon (p.Glu29*) predicted to truncate the SALL2 protein so that it lacks three clusters of zinc-finger motifs that are essential for DNA-binding activity. This discovery identifies SALL2 as the third member of the Drosophila homeotic Spalt-like family of developmental transcription factor genes implicated in human disease. SALL2 is expressed in the developing human retina at the time of, and subsequent to, optic fissure closure. Analysis of Sall2-deficient mouse embryos revealed delayed apposition of the optic fissure margins and the persistence of an anterior retinal coloboma phenotype after birth. Sall2-deficient embryos displayed correct posterior closure toward the optic nerve head, and upon contact of the fissure margins, dissolution of the basal lamina occurred and PAX2, known to be critical for this process, was expressed normally. Anterior closure was disrupted with the fissure margins failing to meet, or in some cases misaligning leading to a retinal lesion. These observations demonstrate, for the first time, a role for SALL2 in eye morphogenesis and that loss of function of the gene causes ocular coloboma in humans and mice. Oxford University Press 2014-05-15 2014-01-09 /pmc/articles/PMC3990155/ /pubmed/24412933 http://dx.doi.org/10.1093/hmg/ddt643 Text en © The Author 2014. Published by Oxford University Press. http://creativecommons.org/licenses/by/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Kelberman, Daniel
Islam, Lily
Lakowski, Jörn
Bacchelli, Chiara
Chanudet, Estelle
Lescai, Francesco
Patel, Aara
Stupka, Elia
Buck, Anja
Wolf, Stephan
Beales, Philip L.
Jacques, Thomas S.
Bitner-Glindzicz, Maria
Liasis, Alki
Lehmann, Ordan J.
Kohlhase, Jürgen
Nischal, Ken K.
Sowden, Jane C.
Mutation of SALL2 causes recessive ocular coloboma in humans and mice
title Mutation of SALL2 causes recessive ocular coloboma in humans and mice
title_full Mutation of SALL2 causes recessive ocular coloboma in humans and mice
title_fullStr Mutation of SALL2 causes recessive ocular coloboma in humans and mice
title_full_unstemmed Mutation of SALL2 causes recessive ocular coloboma in humans and mice
title_short Mutation of SALL2 causes recessive ocular coloboma in humans and mice
title_sort mutation of sall2 causes recessive ocular coloboma in humans and mice
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3990155/
https://www.ncbi.nlm.nih.gov/pubmed/24412933
http://dx.doi.org/10.1093/hmg/ddt643
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