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Genome-Wide Association Mapping in Dogs Enables Identification of the Homeobox Gene, NKX2-8, as a Genetic Component of Neural Tube Defects in Humans

Neural tube defects (NTDs) is a general term for central nervous system malformations secondary to a failure of closure or development of the neural tube. The resulting pathologies may involve the brain, spinal cord and/or vertebral column, in addition to associated structures such as soft tissue or...

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Autores principales: Safra, Noa, Bassuk, Alexander G., Ferguson, Polly J., Aguilar, Miriam, Coulson, Rochelle L., Thomas, Nicholas, Hitchens, Peta L., Dickinson, Peter J., Vernau, Karen M., Wolf, Zena T., Bannasch, Danika L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3715436/
https://www.ncbi.nlm.nih.gov/pubmed/23874236
http://dx.doi.org/10.1371/journal.pgen.1003646
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author Safra, Noa
Bassuk, Alexander G.
Ferguson, Polly J.
Aguilar, Miriam
Coulson, Rochelle L.
Thomas, Nicholas
Hitchens, Peta L.
Dickinson, Peter J.
Vernau, Karen M.
Wolf, Zena T.
Bannasch, Danika L.
author_facet Safra, Noa
Bassuk, Alexander G.
Ferguson, Polly J.
Aguilar, Miriam
Coulson, Rochelle L.
Thomas, Nicholas
Hitchens, Peta L.
Dickinson, Peter J.
Vernau, Karen M.
Wolf, Zena T.
Bannasch, Danika L.
author_sort Safra, Noa
collection PubMed
description Neural tube defects (NTDs) is a general term for central nervous system malformations secondary to a failure of closure or development of the neural tube. The resulting pathologies may involve the brain, spinal cord and/or vertebral column, in addition to associated structures such as soft tissue or skin. The condition is reported among the more common birth defects in humans, leading to significant infant morbidity and mortality. The etiology remains poorly understood but genetic, nutritional, environmental factors, or a combination of these, are known to play a role in the development of NTDs. The variable conditions associated with NTDs occur naturally in dogs, and have been previously reported in the Weimaraner breed. Taking advantage of the strong linkage-disequilibrium within dog breeds we performed genome-wide association analysis and mapped a genomic region for spinal dysraphism, a presumed NTD, using 4 affected and 96 unaffected Weimaraners. The associated region on canine chromosome 8 (p(genome) = 3.0×10(−5)), after 100,000 permutations, encodes 18 genes, including NKX2-8, a homeobox gene which is expressed in the developing neural tube. Sequencing NKX2-8 in affected Weimaraners revealed a G to AA frameshift mutation within exon 2 of the gene, resulting in a premature stop codon that is predicted to produce a truncated protein. The exons of NKX2-8 were sequenced in human patients with spina bifida and rare variants (rs61755040 and rs10135525) were found to be significantly over-represented (p = 0.036). This is the first documentation of a potential role for NKX2-8 in the etiology of NTDs, made possible by investigating the molecular basis of naturally occurring mutations in dogs.
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spelling pubmed-37154362013-07-19 Genome-Wide Association Mapping in Dogs Enables Identification of the Homeobox Gene, NKX2-8, as a Genetic Component of Neural Tube Defects in Humans Safra, Noa Bassuk, Alexander G. Ferguson, Polly J. Aguilar, Miriam Coulson, Rochelle L. Thomas, Nicholas Hitchens, Peta L. Dickinson, Peter J. Vernau, Karen M. Wolf, Zena T. Bannasch, Danika L. PLoS Genet Research Article Neural tube defects (NTDs) is a general term for central nervous system malformations secondary to a failure of closure or development of the neural tube. The resulting pathologies may involve the brain, spinal cord and/or vertebral column, in addition to associated structures such as soft tissue or skin. The condition is reported among the more common birth defects in humans, leading to significant infant morbidity and mortality. The etiology remains poorly understood but genetic, nutritional, environmental factors, or a combination of these, are known to play a role in the development of NTDs. The variable conditions associated with NTDs occur naturally in dogs, and have been previously reported in the Weimaraner breed. Taking advantage of the strong linkage-disequilibrium within dog breeds we performed genome-wide association analysis and mapped a genomic region for spinal dysraphism, a presumed NTD, using 4 affected and 96 unaffected Weimaraners. The associated region on canine chromosome 8 (p(genome) = 3.0×10(−5)), after 100,000 permutations, encodes 18 genes, including NKX2-8, a homeobox gene which is expressed in the developing neural tube. Sequencing NKX2-8 in affected Weimaraners revealed a G to AA frameshift mutation within exon 2 of the gene, resulting in a premature stop codon that is predicted to produce a truncated protein. The exons of NKX2-8 were sequenced in human patients with spina bifida and rare variants (rs61755040 and rs10135525) were found to be significantly over-represented (p = 0.036). This is the first documentation of a potential role for NKX2-8 in the etiology of NTDs, made possible by investigating the molecular basis of naturally occurring mutations in dogs. Public Library of Science 2013-07-18 /pmc/articles/PMC3715436/ /pubmed/23874236 http://dx.doi.org/10.1371/journal.pgen.1003646 Text en © 2013 Safra et al http://creativecommons.org/licenses/by/4.0/ 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 author and source are properly credited.
spellingShingle Research Article
Safra, Noa
Bassuk, Alexander G.
Ferguson, Polly J.
Aguilar, Miriam
Coulson, Rochelle L.
Thomas, Nicholas
Hitchens, Peta L.
Dickinson, Peter J.
Vernau, Karen M.
Wolf, Zena T.
Bannasch, Danika L.
Genome-Wide Association Mapping in Dogs Enables Identification of the Homeobox Gene, NKX2-8, as a Genetic Component of Neural Tube Defects in Humans
title Genome-Wide Association Mapping in Dogs Enables Identification of the Homeobox Gene, NKX2-8, as a Genetic Component of Neural Tube Defects in Humans
title_full Genome-Wide Association Mapping in Dogs Enables Identification of the Homeobox Gene, NKX2-8, as a Genetic Component of Neural Tube Defects in Humans
title_fullStr Genome-Wide Association Mapping in Dogs Enables Identification of the Homeobox Gene, NKX2-8, as a Genetic Component of Neural Tube Defects in Humans
title_full_unstemmed Genome-Wide Association Mapping in Dogs Enables Identification of the Homeobox Gene, NKX2-8, as a Genetic Component of Neural Tube Defects in Humans
title_short Genome-Wide Association Mapping in Dogs Enables Identification of the Homeobox Gene, NKX2-8, as a Genetic Component of Neural Tube Defects in Humans
title_sort genome-wide association mapping in dogs enables identification of the homeobox gene, nkx2-8, as a genetic component of neural tube defects in humans
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3715436/
https://www.ncbi.nlm.nih.gov/pubmed/23874236
http://dx.doi.org/10.1371/journal.pgen.1003646
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