化学
碱基
劈理(地质)
解理因子
过程性
RNA聚合酶Ⅱ
立体化学
RNA聚合酶
聚合酶
核糖核酸
生物化学
DNA
分子生物学
生物
基因
基因表达
古生物学
发起人
断裂(地质)
作者
Carmen Tse,Jun Xu,Liang Xu,Fu Kit Sheong,Shenglong Wang,Hoi Yee Chow,Xin Gao,Xuechen Li,Peter Pak‐Hang Cheung,Dong Wang,Yingkai Zhang,Xuhui Huang
出处
期刊:Nature Catalysis
[Nature Portfolio]
日期:2019-02-11
卷期号:2 (3): 228-235
被引量:14
标识
DOI:10.1038/s41929-019-0227-5
摘要
RNA polymerase II (Pol II) utilises the same active site for polymerization and intrinsic cleavage. Pol II proofreads the nascent transcript by its intrinsic nuclease activity to maintain high transcriptional fidelity critical for cell growth and viability. The detailed catalytic mechanism of intrinsic cleavage remains unknown. Here, we combined ab initio quantum mechanics/molecular mechanics studies and biochemical cleavage assays to show that Pol II utilises downstream phosphate oxygen to activate the attacking nucleophile in hydrolysis, while the newly formed 3'-end is protonated through active-site water without a defined general acid. Experimentally, alteration of downstream phosphate oxygen either by 2'-5' sugar linkage or stereo-specific thio-substitution of phosphate oxygen drastically reduced cleavage rate. We showed by N7-modification that guanine nucleobase does not directly involve as acid-base catalyst. Our proposed mechanism provides important insights into the understanding of intrinsic transcriptional cleavage reaction, an essential step of transcriptional fidelity control.
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