RNA剪接
核糖
信使核糖核酸
甲基转移酶
生物发生
甲基化
化学
核苷酸
核糖核酸
分子生物学
聚腺苷酸
基因敲除
细胞生物学
生物
生物化学
DNA
基因
酶
作者
François Bélanger,Janusz Stȩpiński,Edward Darżynkiewicz,Jerry Pelletier
标识
DOI:10.1074/jbc.m110.155283
摘要
Cellular eukaryotic mRNAs are capped at their 5' ends with a 7-methylguanosine nucleotide, a structural feature that has been shown to be important for conferring mRNA stability, stimulating mRNA biogenesis (splicing, poly(A) addition, nucleocytoplasmic transport), and increasing translational efficiency. Whereas yeast mRNAs have no additional modifications to the cap, called cap0, higher eukaryotes are methylated at the 2'-O-ribose of the first or the first and second transcribed nucleotides, called cap1 and cap2, respectively. In the present study, we identify the methyltransferase responsible for cap1 formation in human cells, which we call hMTr1 (also known as FTSJD2 and ISG95). We show in vitro that hMTr1 catalyzes specific methylation of the 2'-O-ribose of the first nucleotide of a capped RNA transcript. Using siRNA-mediated knockdown of hMTr1 in HeLa cells, we demonstrate that hMTr1 is responsible for cap1 formation in vivo.
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