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Enzymatic deamination of the epigenetic nucleoside N6-methyladenosine regulates gene expression

Nucleic Acids Res. 2021-12; 
Zhuoran Jiang, Chao Wang, Zixin Wu, Kun Chen, Wei Yang, Hexiang Deng, Heng Song, Xiang Zhou
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Proteins, Expression, Isolation and Analysis All antibiotics were sourced from Sangon Biotech (China). The DNA primers were synthesized from Gene Create in ultra-page grade (Wuhan, China). Ni-NTA resin was purchased from GenScript (China) Get A Quote

摘要

N6-methyladenosine (m6A) modification is the most extensively studied epigenetic modification due to its crucial role in regulating an array of biological processes. Herein, Bsu06560, formerly annotated as an adenine deaminase derived from Bacillus subtilis 168, was recognized as the first enzyme capable of metabolizing the epigenetic nucleoside N6-methyladenosine. A model of Bsu06560 was constructed, and several critical residues were putatively identified via mutational screening. Two mutants, F91L and Q150W, provided a superiorly enhanced conversion ratio of adenosine and N6-methyladenosine. The CRISPR-Cas9 system generated Bsu06560-knockout, F91L, and Q150W mutations from the B. subtilis 168 genome. Transcr... More

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