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Programmable RNA 5-methylcytosine (m5C) modification of cellular RNAs by dCasRx conjugated methyltransferase and demethylase

Nucleic Acids Res. 2024-04; 
Tao Zhang, Feiyu Zhao, Jinze Li, Xiaodi Sun, Xiyun Zhang, Hejun Wang, Peng Fan, Liangxue Lai, Zhanjun Li, Tingting Sui
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Molecular Biology Reagents … by GenScript Biotech (China) and then cloned into the dCasRx backbone. Tet2 CD was amplified from the pcDNA3-FlagTet2 CD plasmid (#72219), purchased from Addgene. All RCMS … Get A Quote

摘要

5-Methylcytosine (m5C), an abundant RNA modification, plays a crucial role in regulating RNA fate and gene expression. While recent progress has been made in understanding the biological roles of m5C, the inability to introduce m5C at specific sites within transcripts has hindered efforts to elucidate direct links between specific m5C and phenotypic outcomes. Here, we developed a CRISPR-Cas13d-based tool, named reengineered m5C modification system (termed 'RCMS'), for targeted m5C methylation and demethylation in specific transcripts. The RCMS editors consist of a nuclear-localized dCasRx conjugated to either a methyltransferase, NSUN2/NSUN6, or a demethylase, the catalytic domain of mouse Tet2 (ten-eleven tran... More

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