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A Novel Occulta-Type Spina Bifida Mediated by Murine Double Heterozygotes EphA2 and EphA4 Receptor Tyrosine Kinases

Members of the Eph receptor tyrosine kinase have previously been implicated in cranial neural tube development. Failure of neural tube closure leads to the devastating conditions known as anencephaly and spina bifida. EphA2 and EphA4 are expressed at the tips of the closing spinal neural folds prior...

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Autores principales: Abdullah, Nor Linda, Mohd-Zin, Siti W., Ahmad-Annuar, Azlina, Abdul-Aziz, Noraishah M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5732981/
https://www.ncbi.nlm.nih.gov/pubmed/29312933
http://dx.doi.org/10.3389/fcell.2017.00105
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author Abdullah, Nor Linda
Mohd-Zin, Siti W.
Ahmad-Annuar, Azlina
Abdul-Aziz, Noraishah M.
author_facet Abdullah, Nor Linda
Mohd-Zin, Siti W.
Ahmad-Annuar, Azlina
Abdul-Aziz, Noraishah M.
author_sort Abdullah, Nor Linda
collection PubMed
description Members of the Eph receptor tyrosine kinase have previously been implicated in cranial neural tube development. Failure of neural tube closure leads to the devastating conditions known as anencephaly and spina bifida. EphA2 and EphA4 are expressed at the tips of the closing spinal neural folds prior and during neural tube closure. We investigated the possible role of murine EphA2 and EphA4 during the last step of primary neural tube closure, which is adhesion and fusion. The individual mouse knockouts of EphA2 and EphA4 per se do not exhibit neural tube defects (NTDs). The embryos generated by the crossing of double heterozygotes Epha2(tm1Jrui/+)Epha4(rb-2J/+) displayed NTDs with a wide degree of severity including close exencephaly and close spina bifida (spina bifida occulta). Interestingly, mutants displaying NTDs had skin covering the underlying lesion. The tissue sections revealed the elevated neural folds had not adhered and fused. The phenotypes seen in Epha2(tm1Jrui/+)Epha4(rb-2J/+) double heterozygous embryos suggest both genes play a compensatory role with each other in the adhesion and fusion of the neural tube. In this study, there exists a >50% penetrance of NTDs in the mouse mutants, which genetically have a single allele each of EphA2 and EphA4 absent.
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spelling pubmed-57329812018-01-08 A Novel Occulta-Type Spina Bifida Mediated by Murine Double Heterozygotes EphA2 and EphA4 Receptor Tyrosine Kinases Abdullah, Nor Linda Mohd-Zin, Siti W. Ahmad-Annuar, Azlina Abdul-Aziz, Noraishah M. Front Cell Dev Biol Cell and Developmental Biology Members of the Eph receptor tyrosine kinase have previously been implicated in cranial neural tube development. Failure of neural tube closure leads to the devastating conditions known as anencephaly and spina bifida. EphA2 and EphA4 are expressed at the tips of the closing spinal neural folds prior and during neural tube closure. We investigated the possible role of murine EphA2 and EphA4 during the last step of primary neural tube closure, which is adhesion and fusion. The individual mouse knockouts of EphA2 and EphA4 per se do not exhibit neural tube defects (NTDs). The embryos generated by the crossing of double heterozygotes Epha2(tm1Jrui/+)Epha4(rb-2J/+) displayed NTDs with a wide degree of severity including close exencephaly and close spina bifida (spina bifida occulta). Interestingly, mutants displaying NTDs had skin covering the underlying lesion. The tissue sections revealed the elevated neural folds had not adhered and fused. The phenotypes seen in Epha2(tm1Jrui/+)Epha4(rb-2J/+) double heterozygous embryos suggest both genes play a compensatory role with each other in the adhesion and fusion of the neural tube. In this study, there exists a >50% penetrance of NTDs in the mouse mutants, which genetically have a single allele each of EphA2 and EphA4 absent. Frontiers Media S.A. 2017-12-12 /pmc/articles/PMC5732981/ /pubmed/29312933 http://dx.doi.org/10.3389/fcell.2017.00105 Text en Copyright © 2017 Abdullah, Mohd-Zin, Ahmad-Annuar and Abdul-Aziz. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Abdullah, Nor Linda
Mohd-Zin, Siti W.
Ahmad-Annuar, Azlina
Abdul-Aziz, Noraishah M.
A Novel Occulta-Type Spina Bifida Mediated by Murine Double Heterozygotes EphA2 and EphA4 Receptor Tyrosine Kinases
title A Novel Occulta-Type Spina Bifida Mediated by Murine Double Heterozygotes EphA2 and EphA4 Receptor Tyrosine Kinases
title_full A Novel Occulta-Type Spina Bifida Mediated by Murine Double Heterozygotes EphA2 and EphA4 Receptor Tyrosine Kinases
title_fullStr A Novel Occulta-Type Spina Bifida Mediated by Murine Double Heterozygotes EphA2 and EphA4 Receptor Tyrosine Kinases
title_full_unstemmed A Novel Occulta-Type Spina Bifida Mediated by Murine Double Heterozygotes EphA2 and EphA4 Receptor Tyrosine Kinases
title_short A Novel Occulta-Type Spina Bifida Mediated by Murine Double Heterozygotes EphA2 and EphA4 Receptor Tyrosine Kinases
title_sort novel occulta-type spina bifida mediated by murine double heterozygotes epha2 and epha4 receptor tyrosine kinases
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5732981/
https://www.ncbi.nlm.nih.gov/pubmed/29312933
http://dx.doi.org/10.3389/fcell.2017.00105
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