MeCP2-Related Diseases and Animal Models

The role of epigenetics in human disease has become an area of increased research interest. Collaborative efforts from scientists and clinicians have led to a better understanding of the molecular mechanisms by which epigenetic regulation is involved in the pathogenesis of many human diseases. Sever...

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Main Authors: Chinelo D. Ezeonwuka, Mojgan Rastegar
Format: Article
Language:English
Published: MDPI AG 2014-01-01
Series:Diseases
Subjects:
Online Access:http://www.mdpi.com/2079-9721/2/1/45
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spelling doaj-5fd3d29407d34817999adddb10c272cc2020-11-24T23:55:34ZengMDPI AGDiseases2079-97212014-01-0121457010.3390/diseases2010045diseases2010045MeCP2-Related Diseases and Animal ModelsChinelo D. Ezeonwuka0Mojgan Rastegar1Regenerative Medicine Program, Department of Biochemistry and Medical Genetics, Faculty of Medicine, University of Manitoba, 745 Bannatyne Avenue, Winnipeg, Manitoba, R3E 0J9, CanadaRegenerative Medicine Program, Department of Biochemistry and Medical Genetics, Faculty of Medicine, University of Manitoba, 745 Bannatyne Avenue, Winnipeg, Manitoba, R3E 0J9, CanadaThe role of epigenetics in human disease has become an area of increased research interest. Collaborative efforts from scientists and clinicians have led to a better understanding of the molecular mechanisms by which epigenetic regulation is involved in the pathogenesis of many human diseases. Several neurological and non-neurological disorders are associated with mutations in genes that encode for epigenetic factors. One of the most studied proteins that impacts human disease and is associated with deregulation of epigenetic processes is Methyl CpG binding protein 2 (MeCP2). MeCP2 is an epigenetic regulator that modulates gene expression by translating epigenetic DNA methylation marks into appropriate cellular responses. In order to highlight the importance of epigenetics to development and disease, we will discuss how MeCP2 emerges as a key epigenetic player in human neurodevelopmental, neurological, and non-neurological disorders. We will review our current knowledge on MeCP2-related diseases, including Rett Syndrome, Angelman Syndrome, Fetal Alcohol Spectrum Disorder, Hirschsprung disease, and Cancer. Additionally, we will briefly discuss about the existing MeCP2 animal models that have been generated for a better understanding of how MeCP2 impacts certain human diseases.http://www.mdpi.com/2079-9721/2/1/45MeCP2DNA methylationRett SyndromeAutism Spectrum Disorders, Fetal Alcohol Spectrum DisordersRheumatoid arthritisanimal models
collection DOAJ
language English
format Article
sources DOAJ
author Chinelo D. Ezeonwuka
Mojgan Rastegar
spellingShingle Chinelo D. Ezeonwuka
Mojgan Rastegar
MeCP2-Related Diseases and Animal Models
Diseases
MeCP2
DNA methylation
Rett Syndrome
Autism Spectrum Disorders, Fetal Alcohol Spectrum Disorders
Rheumatoid arthritis
animal models
author_facet Chinelo D. Ezeonwuka
Mojgan Rastegar
author_sort Chinelo D. Ezeonwuka
title MeCP2-Related Diseases and Animal Models
title_short MeCP2-Related Diseases and Animal Models
title_full MeCP2-Related Diseases and Animal Models
title_fullStr MeCP2-Related Diseases and Animal Models
title_full_unstemmed MeCP2-Related Diseases and Animal Models
title_sort mecp2-related diseases and animal models
publisher MDPI AG
series Diseases
issn 2079-9721
publishDate 2014-01-01
description The role of epigenetics in human disease has become an area of increased research interest. Collaborative efforts from scientists and clinicians have led to a better understanding of the molecular mechanisms by which epigenetic regulation is involved in the pathogenesis of many human diseases. Several neurological and non-neurological disorders are associated with mutations in genes that encode for epigenetic factors. One of the most studied proteins that impacts human disease and is associated with deregulation of epigenetic processes is Methyl CpG binding protein 2 (MeCP2). MeCP2 is an epigenetic regulator that modulates gene expression by translating epigenetic DNA methylation marks into appropriate cellular responses. In order to highlight the importance of epigenetics to development and disease, we will discuss how MeCP2 emerges as a key epigenetic player in human neurodevelopmental, neurological, and non-neurological disorders. We will review our current knowledge on MeCP2-related diseases, including Rett Syndrome, Angelman Syndrome, Fetal Alcohol Spectrum Disorder, Hirschsprung disease, and Cancer. Additionally, we will briefly discuss about the existing MeCP2 animal models that have been generated for a better understanding of how MeCP2 impacts certain human diseases.
topic MeCP2
DNA methylation
Rett Syndrome
Autism Spectrum Disorders, Fetal Alcohol Spectrum Disorders
Rheumatoid arthritis
animal models
url http://www.mdpi.com/2079-9721/2/1/45
work_keys_str_mv AT chinelodezeonwuka mecp2relateddiseasesandanimalmodels
AT mojganrastegar mecp2relateddiseasesandanimalmodels
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