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Analysis of DNMT1 gene variants in progression of neural tube defects—an in silico to in vitro approach

Neural tube defects (NTDs) are significant congenital deformities of the central nervous system among which spina bifida is the most common form that occurs due to defect in the neurulation process of embryogenesis. NTDs are among the most common type of birth defects occurring at a range of 0.5–10...

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Autores principales: Sadhukhan, Susanta, Paul, Nirvika, Ghosh, Sudakshina, Munian, Dinesh, Ganguly, Kausik, Ghosh, Krishnendu, Sengupta, Mainak, Das, Madhusudan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9727204/
https://www.ncbi.nlm.nih.gov/pubmed/36394275
http://dx.doi.org/10.1042/BSR20220998
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author Sadhukhan, Susanta
Paul, Nirvika
Ghosh, Sudakshina
Munian, Dinesh
Ganguly, Kausik
Ghosh, Krishnendu
Sengupta, Mainak
Das, Madhusudan
author_facet Sadhukhan, Susanta
Paul, Nirvika
Ghosh, Sudakshina
Munian, Dinesh
Ganguly, Kausik
Ghosh, Krishnendu
Sengupta, Mainak
Das, Madhusudan
author_sort Sadhukhan, Susanta
collection PubMed
description Neural tube defects (NTDs) are significant congenital deformities of the central nervous system among which spina bifida is the most common form that occurs due to defect in the neurulation process of embryogenesis. NTDs are among the most common type of birth defects occurring at a range of 0.5–10 in every 1000 live births worldwide and are thought to have multifactorial etiology, including multigenetic and epigenetic notions. Epigenetic regulations control differential gene expression in normal and disease phenotypes. DNA methylation is a significant epigenetic process, guided by DNMT1, one of the most important maintenance methylating agents. However, the relationship between DNMT1 and NTDs had always been inconclusive and poorly understood. In the present study, by utilizing in silico methodologies we tried to figure out potent single nucleotide variants (SNVs) that could play roles in generating functional differences in DNMT1 expression and we also tried to check (by in vitro method) if there is any connection between DNMT1 expression and spina bifida condition. A number of coding and non-coding (both intragenic and intergenic) SNVs of DNMT1 were found (using the in silico methods) that have potentials to alter its expression. From the in vitro experimentations, differential DNMT1 RNA expressions were found between spina bifida affected newborns and their respective mothers when compared with controls. It is the first report of NTD from Eastern India precisely showing inverse correlation between DNMT1 expression and occurrence of NTD. The findings of the present study could be further considered for early prognosis and future experimental designs.
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spelling pubmed-97272042022-12-15 Analysis of DNMT1 gene variants in progression of neural tube defects—an in silico to in vitro approach Sadhukhan, Susanta Paul, Nirvika Ghosh, Sudakshina Munian, Dinesh Ganguly, Kausik Ghosh, Krishnendu Sengupta, Mainak Das, Madhusudan Biosci Rep Bioinformatics Neural tube defects (NTDs) are significant congenital deformities of the central nervous system among which spina bifida is the most common form that occurs due to defect in the neurulation process of embryogenesis. NTDs are among the most common type of birth defects occurring at a range of 0.5–10 in every 1000 live births worldwide and are thought to have multifactorial etiology, including multigenetic and epigenetic notions. Epigenetic regulations control differential gene expression in normal and disease phenotypes. DNA methylation is a significant epigenetic process, guided by DNMT1, one of the most important maintenance methylating agents. However, the relationship between DNMT1 and NTDs had always been inconclusive and poorly understood. In the present study, by utilizing in silico methodologies we tried to figure out potent single nucleotide variants (SNVs) that could play roles in generating functional differences in DNMT1 expression and we also tried to check (by in vitro method) if there is any connection between DNMT1 expression and spina bifida condition. A number of coding and non-coding (both intragenic and intergenic) SNVs of DNMT1 were found (using the in silico methods) that have potentials to alter its expression. From the in vitro experimentations, differential DNMT1 RNA expressions were found between spina bifida affected newborns and their respective mothers when compared with controls. It is the first report of NTD from Eastern India precisely showing inverse correlation between DNMT1 expression and occurrence of NTD. The findings of the present study could be further considered for early prognosis and future experimental designs. Portland Press Ltd. 2022-12-06 /pmc/articles/PMC9727204/ /pubmed/36394275 http://dx.doi.org/10.1042/BSR20220998 Text en © 2022 The Author(s). https://creativecommons.org/licenses/by/4.0/This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Bioinformatics
Sadhukhan, Susanta
Paul, Nirvika
Ghosh, Sudakshina
Munian, Dinesh
Ganguly, Kausik
Ghosh, Krishnendu
Sengupta, Mainak
Das, Madhusudan
Analysis of DNMT1 gene variants in progression of neural tube defects—an in silico to in vitro approach
title Analysis of DNMT1 gene variants in progression of neural tube defects—an in silico to in vitro approach
title_full Analysis of DNMT1 gene variants in progression of neural tube defects—an in silico to in vitro approach
title_fullStr Analysis of DNMT1 gene variants in progression of neural tube defects—an in silico to in vitro approach
title_full_unstemmed Analysis of DNMT1 gene variants in progression of neural tube defects—an in silico to in vitro approach
title_short Analysis of DNMT1 gene variants in progression of neural tube defects—an in silico to in vitro approach
title_sort analysis of dnmt1 gene variants in progression of neural tube defects—an in silico to in vitro approach
topic Bioinformatics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9727204/
https://www.ncbi.nlm.nih.gov/pubmed/36394275
http://dx.doi.org/10.1042/BSR20220998
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