Literature DB >> 29325627

Epigenetic mechanisms underlying nervous system diseases.

Irfan A Qureshi1, Mark F Mehler2.   

Abstract

Epigenetic mechanisms act as control systems for modulating genomic structure and activity in response to evolving profiles of cell-extrinsic, cell-cell, and cell-intrinsic signals. These dynamic processes are responsible for mediating cell- and tissue-specific gene expression and function and gene-gene and gene-environmental interactions. The major epigenetic mechanisms include DNA methylation and hydroxymethylation; histone protein posttranslational modifications, nucleosome remodeling/repositioning, and higher-order chromatin reorganization; noncoding RNA regulation; and RNA editing. These mechanisms are intimately involved in executing fundamental genomic programs, including gene transcription, posttranscriptional RNA processing and transport, translation, X-chromosome inactivation, genomic imprinting, retrotransposon regulation, DNA replication, and DNA repair and the maintenance of genomic stability. For the nervous system, epigenetics offers a novel and robust framework for explaining how brain development and aging occur, neural cellular diversity is generated, synaptic and neural network connectivity and plasticity are mediated, and complex cognitive and behavioral phenotypes are inherited transgenerationally. Epigenetic factors and processes are, not surprisingly, implicated in nervous system disease pathophysiology through several emerging paradigms - mutations and genetic variation in genes encoding epigenetic factors; impairments in epigenetic factor expression, localization, and function; epigenetic mechanisms modulating disease-associated factors and pathways; and the presence of deregulated epigenetic profiles in central and peripheral tissues.
Copyright © 2018 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  DNA methylation; RNA editing; chromatin; epigenetic; histone modification; noncoding RNA; transgenerational inheritance

Mesh:

Year:  2018        PMID: 29325627      PMCID: PMC6822391          DOI: 10.1016/B978-0-444-63233-3.00005-1

Source DB:  PubMed          Journal:  Handb Clin Neurol        ISSN: 0072-9752


  129 in total

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Review 9.  Understanding neurological disease mechanisms in the era of epigenetics.

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Journal:  JAMA Neurol       Date:  2013-06       Impact factor: 18.302

10.  Mutations in DNMT1 cause hereditary sensory neuropathy with dementia and hearing loss.

Authors:  Christopher J Klein; Maria-Victoria Botuyan; Yanhong Wu; Christopher J Ward; Garth A Nicholson; Simon Hammans; Kaori Hojo; Hiromitch Yamanishi; Adam R Karpf; Douglas C Wallace; Mariella Simon; Cecilie Lander; Lisa A Boardman; Julie M Cunningham; Glenn E Smith; William J Litchy; Benjamin Boes; Elizabeth J Atkinson; Sumit Middha; P James B Dyck; Joseph E Parisi; Georges Mer; David I Smith; Peter J Dyck
Journal:  Nat Genet       Date:  2011-05-01       Impact factor: 38.330

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Review 3.  Epigenetic regulation in Huntington's disease.

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4.  Altered methylation pattern of the SRD5A2 gene in the cerebrospinal fluid of post-finasteride patients: a pilot study.

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Review 7.  Epigenetics in blood-brain barrier disruption.

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9.  The impact of methodology on the reproducibility and rigor of DNA methylation data.

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