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Cohesin Mutations Induce Chromatin Conformation Perturbation of the H19/IGF2 Imprinted Region and Gene Expression Dysregulation in Cornelia de Lange Syndrome Cell Lines

Traditionally, Cornelia de Lange Syndrome (CdLS) is considered a cohesinopathy caused by constitutive mutations in cohesin complex genes. Cohesin is a major regulator of chromatin architecture, including the formation of chromatin loops at the imprinted IGF2/H19 domain. We used 3C analysis on lympho...

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Autores principales: Pileggi, Silvana, La Vecchia, Marta, Colombo, Elisa Adele, Fontana, Laura, Colapietro, Patrizia, Rovina, Davide, Morotti, Annamaria, Tabano, Silvia, Porta, Giovanni, Alcalay, Myriam, Gervasini, Cristina, Miozzo, Monica, Sirchia, Silvia Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8615450/
https://www.ncbi.nlm.nih.gov/pubmed/34827619
http://dx.doi.org/10.3390/biom11111622
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author Pileggi, Silvana
La Vecchia, Marta
Colombo, Elisa Adele
Fontana, Laura
Colapietro, Patrizia
Rovina, Davide
Morotti, Annamaria
Tabano, Silvia
Porta, Giovanni
Alcalay, Myriam
Gervasini, Cristina
Miozzo, Monica
Sirchia, Silvia Maria
author_facet Pileggi, Silvana
La Vecchia, Marta
Colombo, Elisa Adele
Fontana, Laura
Colapietro, Patrizia
Rovina, Davide
Morotti, Annamaria
Tabano, Silvia
Porta, Giovanni
Alcalay, Myriam
Gervasini, Cristina
Miozzo, Monica
Sirchia, Silvia Maria
author_sort Pileggi, Silvana
collection PubMed
description Traditionally, Cornelia de Lange Syndrome (CdLS) is considered a cohesinopathy caused by constitutive mutations in cohesin complex genes. Cohesin is a major regulator of chromatin architecture, including the formation of chromatin loops at the imprinted IGF2/H19 domain. We used 3C analysis on lymphoblastoid cells from CdLS patients carrying mutations in NIPBL and SMC1A genes to explore 3D chromatin structure of the IGF2/H19 locus and evaluate the influence of cohesin alterations in chromatin architecture. We also assessed quantitative expression of imprinted loci and WNT pathway genes, together with DMR methylation status of the imprinted genes. A general impairment of chromatin architecture and the emergence of new interactions were found. Moreover, imprinting alterations also involved the expression and methylation levels of imprinted genes, suggesting an association among cohesin genetic defects, chromatin architecture impairment, and imprinting network alteration. The WNT pathway resulted dysregulated: canonical WNT, cell cycle, and WNT signal negative regulation were the most significantly affected subpathways. Among the deregulated pathway nodes, the key node of the frizzled receptors was repressed. Our study provides new evidence that mutations in genes of the cohesin complex have effects on the chromatin architecture and epigenetic stability of genes commonly regulated by high order chromatin structure.
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spelling pubmed-86154502021-11-26 Cohesin Mutations Induce Chromatin Conformation Perturbation of the H19/IGF2 Imprinted Region and Gene Expression Dysregulation in Cornelia de Lange Syndrome Cell Lines Pileggi, Silvana La Vecchia, Marta Colombo, Elisa Adele Fontana, Laura Colapietro, Patrizia Rovina, Davide Morotti, Annamaria Tabano, Silvia Porta, Giovanni Alcalay, Myriam Gervasini, Cristina Miozzo, Monica Sirchia, Silvia Maria Biomolecules Article Traditionally, Cornelia de Lange Syndrome (CdLS) is considered a cohesinopathy caused by constitutive mutations in cohesin complex genes. Cohesin is a major regulator of chromatin architecture, including the formation of chromatin loops at the imprinted IGF2/H19 domain. We used 3C analysis on lymphoblastoid cells from CdLS patients carrying mutations in NIPBL and SMC1A genes to explore 3D chromatin structure of the IGF2/H19 locus and evaluate the influence of cohesin alterations in chromatin architecture. We also assessed quantitative expression of imprinted loci and WNT pathway genes, together with DMR methylation status of the imprinted genes. A general impairment of chromatin architecture and the emergence of new interactions were found. Moreover, imprinting alterations also involved the expression and methylation levels of imprinted genes, suggesting an association among cohesin genetic defects, chromatin architecture impairment, and imprinting network alteration. The WNT pathway resulted dysregulated: canonical WNT, cell cycle, and WNT signal negative regulation were the most significantly affected subpathways. Among the deregulated pathway nodes, the key node of the frizzled receptors was repressed. Our study provides new evidence that mutations in genes of the cohesin complex have effects on the chromatin architecture and epigenetic stability of genes commonly regulated by high order chromatin structure. MDPI 2021-11-02 /pmc/articles/PMC8615450/ /pubmed/34827619 http://dx.doi.org/10.3390/biom11111622 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pileggi, Silvana
La Vecchia, Marta
Colombo, Elisa Adele
Fontana, Laura
Colapietro, Patrizia
Rovina, Davide
Morotti, Annamaria
Tabano, Silvia
Porta, Giovanni
Alcalay, Myriam
Gervasini, Cristina
Miozzo, Monica
Sirchia, Silvia Maria
Cohesin Mutations Induce Chromatin Conformation Perturbation of the H19/IGF2 Imprinted Region and Gene Expression Dysregulation in Cornelia de Lange Syndrome Cell Lines
title Cohesin Mutations Induce Chromatin Conformation Perturbation of the H19/IGF2 Imprinted Region and Gene Expression Dysregulation in Cornelia de Lange Syndrome Cell Lines
title_full Cohesin Mutations Induce Chromatin Conformation Perturbation of the H19/IGF2 Imprinted Region and Gene Expression Dysregulation in Cornelia de Lange Syndrome Cell Lines
title_fullStr Cohesin Mutations Induce Chromatin Conformation Perturbation of the H19/IGF2 Imprinted Region and Gene Expression Dysregulation in Cornelia de Lange Syndrome Cell Lines
title_full_unstemmed Cohesin Mutations Induce Chromatin Conformation Perturbation of the H19/IGF2 Imprinted Region and Gene Expression Dysregulation in Cornelia de Lange Syndrome Cell Lines
title_short Cohesin Mutations Induce Chromatin Conformation Perturbation of the H19/IGF2 Imprinted Region and Gene Expression Dysregulation in Cornelia de Lange Syndrome Cell Lines
title_sort cohesin mutations induce chromatin conformation perturbation of the h19/igf2 imprinted region and gene expression dysregulation in cornelia de lange syndrome cell lines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8615450/
https://www.ncbi.nlm.nih.gov/pubmed/34827619
http://dx.doi.org/10.3390/biom11111622
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