Rare or Overlooked? Structural Disruption of Regulatory Domains in Human Neurocristopathies

In the last few years, the role of non-coding regulatory elements and their involvement in human disease have received great attention. Among the non-coding regulatory sequences, enhancers are particularly important for the proper establishment of cell type–specific gene-expression programs. Further...

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Main Authors: Víctor Sánchez-Gaya, Maria Mariner-Faulí, Alvaro Rada-Iglesias
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-07-01
Series:Frontiers in Genetics
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fgene.2020.00688/full
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spelling doaj-87e7249982e84399aaaa94932feb04142020-11-25T03:02:50ZengFrontiers Media S.A.Frontiers in Genetics1664-80212020-07-011110.3389/fgene.2020.00688530421Rare or Overlooked? Structural Disruption of Regulatory Domains in Human NeurocristopathiesVíctor Sánchez-Gaya0Maria Mariner-Faulí1Alvaro Rada-Iglesias2Alvaro Rada-Iglesias3Alvaro Rada-Iglesias4Institute of Biomedicine and Biotechnology of Cantabria (IBBTEC), Consejo Superior de Investigaciones Científicas-University of Cantabria-Sociedad para el Desarrollo de Cantabria, Santander, SpainInstitute of Biomedicine and Biotechnology of Cantabria (IBBTEC), Consejo Superior de Investigaciones Científicas-University of Cantabria-Sociedad para el Desarrollo de Cantabria, Santander, SpainInstitute of Biomedicine and Biotechnology of Cantabria (IBBTEC), Consejo Superior de Investigaciones Científicas-University of Cantabria-Sociedad para el Desarrollo de Cantabria, Santander, SpainCenter for Molecular Medicine Cologne (CMMC), University of Cologne, Cologne, GermanyCluster of Excellence Cellular Stress Responses in Aging-Associated Diseases (CECAD), University of Cologne, Cologne, GermanyIn the last few years, the role of non-coding regulatory elements and their involvement in human disease have received great attention. Among the non-coding regulatory sequences, enhancers are particularly important for the proper establishment of cell type–specific gene-expression programs. Furthermore, the disruption of enhancers can lead to human disease through two main mechanisms: (i) Mutations or copy number variants can directly alter the enhancer sequences and thereby affect expression of their target genes; (ii) structural variants can provoke changes in 3-D chromatin organization that alter neither the enhancers nor their target genes, but rather the physical communication between them. In this review, these pathomechanisms are mostly discussed in the context of neurocristopathies, congenital disorders caused by defects that occur during neural crest development. We highlight why, due to its contribution to multiple tissues and organs, the neural crest represents an important, yet understudied, cell type involved in multiple congenital disorders. Moreover, we discuss currently available resources and experimental models for the study of human neurocristopathies. Last, we provide some practical guidelines that can be followed when investigating human neurocristopathies caused by structural variants. Importantly, these guidelines can be useful not only to uncover the etiology of human neurocristopathies, but also of other human congenital disorders in which enhancer disruption is involved.https://www.frontiersin.org/article/10.3389/fgene.2020.00688/fullneural creststructural variantneurocristopathy3-D genomeenhancerslong-range regulation
collection DOAJ
language English
format Article
sources DOAJ
author Víctor Sánchez-Gaya
Maria Mariner-Faulí
Alvaro Rada-Iglesias
Alvaro Rada-Iglesias
Alvaro Rada-Iglesias
spellingShingle Víctor Sánchez-Gaya
Maria Mariner-Faulí
Alvaro Rada-Iglesias
Alvaro Rada-Iglesias
Alvaro Rada-Iglesias
Rare or Overlooked? Structural Disruption of Regulatory Domains in Human Neurocristopathies
Frontiers in Genetics
neural crest
structural variant
neurocristopathy
3-D genome
enhancers
long-range regulation
author_facet Víctor Sánchez-Gaya
Maria Mariner-Faulí
Alvaro Rada-Iglesias
Alvaro Rada-Iglesias
Alvaro Rada-Iglesias
author_sort Víctor Sánchez-Gaya
title Rare or Overlooked? Structural Disruption of Regulatory Domains in Human Neurocristopathies
title_short Rare or Overlooked? Structural Disruption of Regulatory Domains in Human Neurocristopathies
title_full Rare or Overlooked? Structural Disruption of Regulatory Domains in Human Neurocristopathies
title_fullStr Rare or Overlooked? Structural Disruption of Regulatory Domains in Human Neurocristopathies
title_full_unstemmed Rare or Overlooked? Structural Disruption of Regulatory Domains in Human Neurocristopathies
title_sort rare or overlooked? structural disruption of regulatory domains in human neurocristopathies
publisher Frontiers Media S.A.
series Frontiers in Genetics
issn 1664-8021
publishDate 2020-07-01
description In the last few years, the role of non-coding regulatory elements and their involvement in human disease have received great attention. Among the non-coding regulatory sequences, enhancers are particularly important for the proper establishment of cell type–specific gene-expression programs. Furthermore, the disruption of enhancers can lead to human disease through two main mechanisms: (i) Mutations or copy number variants can directly alter the enhancer sequences and thereby affect expression of their target genes; (ii) structural variants can provoke changes in 3-D chromatin organization that alter neither the enhancers nor their target genes, but rather the physical communication between them. In this review, these pathomechanisms are mostly discussed in the context of neurocristopathies, congenital disorders caused by defects that occur during neural crest development. We highlight why, due to its contribution to multiple tissues and organs, the neural crest represents an important, yet understudied, cell type involved in multiple congenital disorders. Moreover, we discuss currently available resources and experimental models for the study of human neurocristopathies. Last, we provide some practical guidelines that can be followed when investigating human neurocristopathies caused by structural variants. Importantly, these guidelines can be useful not only to uncover the etiology of human neurocristopathies, but also of other human congenital disorders in which enhancer disruption is involved.
topic neural crest
structural variant
neurocristopathy
3-D genome
enhancers
long-range regulation
url https://www.frontiersin.org/article/10.3389/fgene.2020.00688/full
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