Environmental-stress-induced Chromatin Regulation and its Heritability
Author(s) -
Lei Fang
Publication year - 2014
Publication title -
journal of carcinogenesis and mutagenesis
Language(s) - English
Resource type - Journals
ISSN - 2157-2518
DOI - 10.4172/2157-2518.1000156
Subject(s) - chromatin , epigenetics , chromatin remodeling , biology , histone , nucleosome , genetics , histone code , epigenomics , histone modifying enzymes , microbiology and biotechnology , computational biology , dna , dna methylation , gene , gene expression
Chromatin is subject to proofreading and repair mechanisms during the process of DNA replication, as well as repair to maintain genetic and epigenetic information and genome stability. The dynamic structure of chromatin modulates various nuclear processes, including transcription and replication, by altering the accessibility of the DNA to regulatory factors. Structural changes in chromatin are affected by the chemical modification of histone proteins and DNA, remodeling of nucleosomes, incorporation of variant histones, noncoding RNAs, and nonhistone DNA-binding proteins. Phenotypic diversity and fidelity can be balanced by controlling stochastic switching of chromatin structure and dynamics in response to the environmental disruptors and endogenous stresses. The dynamic chromatin remodeling can, therefore, serve as a sensor, through which environmental and/or metabolic agents can alter gene expression, leading to global cellular changes involving multiple interactive networks. Furthermore its recent evidence also suggests that the epigenetic changes are heritable during the development. This review will discuss the environmental sensing system for chromatin regulation and genetic and epigenetic controls from developmental perspectives.
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