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A Rat Methyl-Seq Platform to Identify Epigenetic Changes Associated with Stress Exposure
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Epigenetic Methylations on N6-Adenine and N6-Adenosine with the same Input but Different Output
Zhiqing Li1,2, Ping Zhao3,4, Qingyou Xia5,6
1Biological Science Research Center, Southwest University, Chongqing 400715, China. lizhiqing@swu.edu.cn.
Abstract:
Epigenetic modifications on individual bases in DNA and RNA can encode inheritable genetic information beyond the canonical bases. Among the nucleic acid modifications, DNA N6-methadenine (6mA) and RNA N6-methyladenosine (m6A) have recently been well-studied due to the technological development of detection strategies and the functional identification of modification enzymes. The current findings demonstrate a wide spectrum of 6mA and m6A distributions from prokaryotes to eukaryotes and critical roles in multiple cellular processes. It is interesting that the processes of modification in which the methyl group is added to adenine and adenosine are the same, but the outcomes of these modifications in terms of their physiological impacts in organisms are quite different. In this review, we summarize the latest progress in the study of enzymes involved in the 6mA and m6A methylation machinery, including methyltransferases and demethylases, and their functions in various biological pathways. In particular, we focus on the mechanisms by which 6mA and m6A regulate the expression of target genes, and we highlight the future challenges in epigenetic regulation.
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