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Is LMNB1 a Susceptibility Gene for Neural Tube Defects in Humans?

BACKGROUND: Lamins are intermediate filament proteins that form a major component of the nuclear lamina, a protein complex at the surface of the inner nuclear membrane. Numerous clinically diverse conditions, termed laminopathies, have been found to result from mutation of LMNA. In contrast, coding...

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Autores principales: Robinson, Alexis, Partridge, Darren, Malhas, Ashraf, De Castro, Sandra CP, Gustavsson, Peter, Thompson, Dominic N, Vaux, David J, Copp, Andrew J, Stanier, Philip, Bassuk, Alexander G, Greene, Nicholas DE
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3738925/
https://www.ncbi.nlm.nih.gov/pubmed/23733478
http://dx.doi.org/10.1002/bdra.23141
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author Robinson, Alexis
Partridge, Darren
Malhas, Ashraf
De Castro, Sandra CP
Gustavsson, Peter
Thompson, Dominic N
Vaux, David J
Copp, Andrew J
Stanier, Philip
Bassuk, Alexander G
Greene, Nicholas DE
author_facet Robinson, Alexis
Partridge, Darren
Malhas, Ashraf
De Castro, Sandra CP
Gustavsson, Peter
Thompson, Dominic N
Vaux, David J
Copp, Andrew J
Stanier, Philip
Bassuk, Alexander G
Greene, Nicholas DE
author_sort Robinson, Alexis
collection PubMed
description BACKGROUND: Lamins are intermediate filament proteins that form a major component of the nuclear lamina, a protein complex at the surface of the inner nuclear membrane. Numerous clinically diverse conditions, termed laminopathies, have been found to result from mutation of LMNA. In contrast, coding or loss of function mutations of LMNB1, encoding lamin B1, have not been identified in human disease. In mice, polymorphism in Lmnb1 has been shown to modify risk of neural tube defects (NTDs), malformations of the central nervous system that result from incomplete closure of the neural folds. METHODS: Mutation analysis by DNA sequencing was performed on all exons of LMNB1 in 239 samples from patients with NTDs from the United Kingdom, Sweden, and United States. Possible functional effects of missense variants were analyzed by bioinformatics prediction and fluorescence in photobleaching. RESULTS: In NTD patients, we identified two unique missense variants that were predicted to disrupt protein structure/function and represent putative contributory mutations. Fluorescence loss in photobleaching analysis showed that the A436T variant compromised stability of lamin B1 interaction within the lamina. CONCLUSION: The genetic basis of human NTDs appears highly heterogenous with possible involvement of multiple predisposing genes. We hypothesize that rare variants of LMNB1 may contribute to susceptibility to NTDs. Birth Defects Research (Part A) 97:398–402, 2013. © 2013 Wiley Periodicals, Inc.
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spelling pubmed-37389252013-08-14 Is LMNB1 a Susceptibility Gene for Neural Tube Defects in Humans? Robinson, Alexis Partridge, Darren Malhas, Ashraf De Castro, Sandra CP Gustavsson, Peter Thompson, Dominic N Vaux, David J Copp, Andrew J Stanier, Philip Bassuk, Alexander G Greene, Nicholas DE Birth Defects Res A Clin Mol Teratol Original Research Article BACKGROUND: Lamins are intermediate filament proteins that form a major component of the nuclear lamina, a protein complex at the surface of the inner nuclear membrane. Numerous clinically diverse conditions, termed laminopathies, have been found to result from mutation of LMNA. In contrast, coding or loss of function mutations of LMNB1, encoding lamin B1, have not been identified in human disease. In mice, polymorphism in Lmnb1 has been shown to modify risk of neural tube defects (NTDs), malformations of the central nervous system that result from incomplete closure of the neural folds. METHODS: Mutation analysis by DNA sequencing was performed on all exons of LMNB1 in 239 samples from patients with NTDs from the United Kingdom, Sweden, and United States. Possible functional effects of missense variants were analyzed by bioinformatics prediction and fluorescence in photobleaching. RESULTS: In NTD patients, we identified two unique missense variants that were predicted to disrupt protein structure/function and represent putative contributory mutations. Fluorescence loss in photobleaching analysis showed that the A436T variant compromised stability of lamin B1 interaction within the lamina. CONCLUSION: The genetic basis of human NTDs appears highly heterogenous with possible involvement of multiple predisposing genes. We hypothesize that rare variants of LMNB1 may contribute to susceptibility to NTDs. Birth Defects Research (Part A) 97:398–402, 2013. © 2013 Wiley Periodicals, Inc. Blackwell Publishing Ltd 2013-06 2013-06-03 /pmc/articles/PMC3738925/ /pubmed/23733478 http://dx.doi.org/10.1002/bdra.23141 Text en Copyright © 2013 Wiley Periodicals, Inc. http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Original Research Article
Robinson, Alexis
Partridge, Darren
Malhas, Ashraf
De Castro, Sandra CP
Gustavsson, Peter
Thompson, Dominic N
Vaux, David J
Copp, Andrew J
Stanier, Philip
Bassuk, Alexander G
Greene, Nicholas DE
Is LMNB1 a Susceptibility Gene for Neural Tube Defects in Humans?
title Is LMNB1 a Susceptibility Gene for Neural Tube Defects in Humans?
title_full Is LMNB1 a Susceptibility Gene for Neural Tube Defects in Humans?
title_fullStr Is LMNB1 a Susceptibility Gene for Neural Tube Defects in Humans?
title_full_unstemmed Is LMNB1 a Susceptibility Gene for Neural Tube Defects in Humans?
title_short Is LMNB1 a Susceptibility Gene for Neural Tube Defects in Humans?
title_sort is lmnb1 a susceptibility gene for neural tube defects in humans?
topic Original Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3738925/
https://www.ncbi.nlm.nih.gov/pubmed/23733478
http://dx.doi.org/10.1002/bdra.23141
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