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Overexpression of Grainyhead-like 3 causes spina bifida and interacts genetically with mutant alleles of Grhl2 and Vangl2 in mice

The genetic basis of human neural tube defects (NTDs), such as anencephaly and spina bifida (SB), is complex and heterogeneous. Grainyhead-like genes represent candidates for involvement in NTDs based on the presence of SB and exencephaly in mice carrying loss-of-function alleles of Grhl2 or Grhl3....

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Autores principales: De Castro, Sandra C P, Gustavsson, Peter, Marshall, Abigail R, Gordon, William M, Galea, Gabriel, Nikolopoulou, Evanthia, Savery, Dawn, Rolo, Ana, Stanier, Philip, Andersen, Bogi, Copp, Andrew J, Greene, Nicholas D E
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6276835/
https://www.ncbi.nlm.nih.gov/pubmed/30189017
http://dx.doi.org/10.1093/hmg/ddy313
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author De Castro, Sandra C P
Gustavsson, Peter
Marshall, Abigail R
Gordon, William M
Galea, Gabriel
Nikolopoulou, Evanthia
Savery, Dawn
Rolo, Ana
Stanier, Philip
Andersen, Bogi
Copp, Andrew J
Greene, Nicholas D E
author_facet De Castro, Sandra C P
Gustavsson, Peter
Marshall, Abigail R
Gordon, William M
Galea, Gabriel
Nikolopoulou, Evanthia
Savery, Dawn
Rolo, Ana
Stanier, Philip
Andersen, Bogi
Copp, Andrew J
Greene, Nicholas D E
author_sort De Castro, Sandra C P
collection PubMed
description The genetic basis of human neural tube defects (NTDs), such as anencephaly and spina bifida (SB), is complex and heterogeneous. Grainyhead-like genes represent candidates for involvement in NTDs based on the presence of SB and exencephaly in mice carrying loss-of-function alleles of Grhl2 or Grhl3. We found that reinstatement of Grhl3 expression, by bacterial artificial chromosome (BAC)-mediated transgenesis, prevents SB in Grhl3-null embryos, as in the Grhl3 hypomorphic curly tail strain. Notably, however, further increase in expression of Grhl3 causes highly penetrant SB. Grhl3 overexpression recapitulates the spinal NTD phenotype of loss-of-function embryos, although the underlying mechanism differs. However, it does not phenocopy other defects of Grhl3-null embryos such as abnormal axial curvature, cranial NTDs (exencephaly) or skin barrier defects, the latter being rescued by the Grhl3-transgene. Grhl2 and Grhl3 can form homodimers and heterodimers, suggesting a possible model in which defects arising from overexpression of Grhl3 result from sequestration of Grhl2 in heterodimers, mimicking Grhl2 loss of function. This hypothesis predicts that increased abundance of Grhl2 would have an ameliorating effect in Grhl3 overexpressing embryo. Instead, we observed a striking additive genetic interaction between Grhl2 and Grhl3 gain-of-function alleles. Severe SB arose in embryos in which both genes were expressed at moderately elevated levels that individually do not cause NTDs. Furthermore, moderate Grhl3 overexpression also interacted with the Vangl2(Lp) allele to cause SB, demonstrating genetic interaction with the planar cell polarity signalling pathway that is implicated in mouse and human NTDs.
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spelling pubmed-62768352018-12-11 Overexpression of Grainyhead-like 3 causes spina bifida and interacts genetically with mutant alleles of Grhl2 and Vangl2 in mice De Castro, Sandra C P Gustavsson, Peter Marshall, Abigail R Gordon, William M Galea, Gabriel Nikolopoulou, Evanthia Savery, Dawn Rolo, Ana Stanier, Philip Andersen, Bogi Copp, Andrew J Greene, Nicholas D E Hum Mol Genet General Article The genetic basis of human neural tube defects (NTDs), such as anencephaly and spina bifida (SB), is complex and heterogeneous. Grainyhead-like genes represent candidates for involvement in NTDs based on the presence of SB and exencephaly in mice carrying loss-of-function alleles of Grhl2 or Grhl3. We found that reinstatement of Grhl3 expression, by bacterial artificial chromosome (BAC)-mediated transgenesis, prevents SB in Grhl3-null embryos, as in the Grhl3 hypomorphic curly tail strain. Notably, however, further increase in expression of Grhl3 causes highly penetrant SB. Grhl3 overexpression recapitulates the spinal NTD phenotype of loss-of-function embryos, although the underlying mechanism differs. However, it does not phenocopy other defects of Grhl3-null embryos such as abnormal axial curvature, cranial NTDs (exencephaly) or skin barrier defects, the latter being rescued by the Grhl3-transgene. Grhl2 and Grhl3 can form homodimers and heterodimers, suggesting a possible model in which defects arising from overexpression of Grhl3 result from sequestration of Grhl2 in heterodimers, mimicking Grhl2 loss of function. This hypothesis predicts that increased abundance of Grhl2 would have an ameliorating effect in Grhl3 overexpressing embryo. Instead, we observed a striking additive genetic interaction between Grhl2 and Grhl3 gain-of-function alleles. Severe SB arose in embryos in which both genes were expressed at moderately elevated levels that individually do not cause NTDs. Furthermore, moderate Grhl3 overexpression also interacted with the Vangl2(Lp) allele to cause SB, demonstrating genetic interaction with the planar cell polarity signalling pathway that is implicated in mouse and human NTDs. Oxford University Press 2018-12-15 2018-09-04 /pmc/articles/PMC6276835/ /pubmed/30189017 http://dx.doi.org/10.1093/hmg/ddy313 Text en © The Author(s) 2018. Published by Oxford University Press. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle General Article
De Castro, Sandra C P
Gustavsson, Peter
Marshall, Abigail R
Gordon, William M
Galea, Gabriel
Nikolopoulou, Evanthia
Savery, Dawn
Rolo, Ana
Stanier, Philip
Andersen, Bogi
Copp, Andrew J
Greene, Nicholas D E
Overexpression of Grainyhead-like 3 causes spina bifida and interacts genetically with mutant alleles of Grhl2 and Vangl2 in mice
title Overexpression of Grainyhead-like 3 causes spina bifida and interacts genetically with mutant alleles of Grhl2 and Vangl2 in mice
title_full Overexpression of Grainyhead-like 3 causes spina bifida and interacts genetically with mutant alleles of Grhl2 and Vangl2 in mice
title_fullStr Overexpression of Grainyhead-like 3 causes spina bifida and interacts genetically with mutant alleles of Grhl2 and Vangl2 in mice
title_full_unstemmed Overexpression of Grainyhead-like 3 causes spina bifida and interacts genetically with mutant alleles of Grhl2 and Vangl2 in mice
title_short Overexpression of Grainyhead-like 3 causes spina bifida and interacts genetically with mutant alleles of Grhl2 and Vangl2 in mice
title_sort overexpression of grainyhead-like 3 causes spina bifida and interacts genetically with mutant alleles of grhl2 and vangl2 in mice
topic General Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6276835/
https://www.ncbi.nlm.nih.gov/pubmed/30189017
http://dx.doi.org/10.1093/hmg/ddy313
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