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DNA methylation program during development 被引量:2

DNA methylation program during development
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摘要 DNA methylation is a key epigenetic mark when occurring in the promoter and enhancer regions regulates the accessibility of the binding protein and gene transcription. DNA methylation is inheritable and can be de novosynthesized, erased and reinstated, making it arguably one of the most dynamic upstream regulators for gene expression and the most influential pacer for development. Recent progress has demonstrated that two forms of cytosine methylation and two pathways for demethylation orchestrated gene expression and development. The such a program, if so what the DNA methylation methylation program. The translational implication constitute ample complexity for an instructional program for forum of the current discussion and review are whether there is program entails, and what environment can change the DNA of the DNA methylation program is also proposed. DNA methylation is a key epigenetic mark when occurring in the promoter and enhancer regions regulates the accessibility of the binding protein and gene transcription. DNA methylation is inheritable and can be de novosynthesized, erased and reinstated, making it arguably one of the most dynamic upstream regulators for gene expression and the most influential pacer for development. Recent progress has demonstrated that two forms of cytosine methylation and two pathways for demethylation orchestrated gene expression and development. The such a program, if so what the DNA methylation methylation program. The translational implication constitute ample complexity for an instructional program for forum of the current discussion and review are whether there is program entails, and what environment can change the DNA of the DNA methylation program is also proposed.
作者 Feng C. ZHOU
出处 《Frontiers in Biology》 CAS CSCD 2012年第6期485-494,共10页 生物学前沿(英文版)
关键词 EPIGENETICS neural development 5-hydroxymethylcytosine EPIGENOME environmental factors DNA demethylation epigenetics, neural development, 5-hydroxymethylcytosine, epigenome, environmental factors, DNA demethylation
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