snRNP公司
剪接体
小核RNA
Prp24型
RNA剪接
卡哈尔体
细胞生物学
生物
遗传学
核糖核酸
非编码RNA
基因
作者
Amandine Duchemin,Tina O’Grady,Sarah Hanache,Agnès Méreau,Marc Thiry,Ludivine Wacheul,Catherine Michaux,Éric A. Perpète,Éric Hervouet,Paul Peixoto,Felix G.M. Ernst,Yann Audic,Samuel Dequiedt,Denis L.J. Lafontaine,Denis Mottet
标识
DOI:10.1038/s41467-021-26932-2
摘要
The U6 snRNA, the core catalytic component of the spliceosome, is extensively modified post-transcriptionally, with 2'-O-methylation being most common. However, how U6 2'-O-methylation is regulated remains largely unknown. Here we report that TFIP11, the human homolog of the yeast spliceosome disassembly factor Ntr1, localizes to nucleoli and Cajal Bodies and is essential for the 2'-O-methylation of U6. Mechanistically, we demonstrate that TFIP11 knockdown reduces the association of U6 snRNA with fibrillarin and associated snoRNAs, therefore altering U6 2'-O-methylation. We show U6 snRNA hypomethylation is associated with changes in assembly of the U4/U6.U5 tri-snRNP leading to defects in spliceosome assembly and alterations in splicing fidelity. Strikingly, this function of TFIP11 is independent of the RNA helicase DHX15, its known partner in yeast. In sum, our study demonstrates an unrecognized function for TFIP11 in U6 snRNP modification and U4/U6.U5 tri-snRNP assembly, identifying TFIP11 as a critical spliceosome assembly regulator.
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