裂解和多聚腺苷酸化特异性因子
聚腺苷酸
劈裂刺激因子
解理因子
方向性
过程性
细胞生物学
劈理(地质)
生物发生
RNA结合蛋白
前体mRNA
RNA聚合酶Ⅱ
生物
支架蛋白
信使核糖核酸
核糖核酸
分子生物学
RNA剪接
聚合酶
遗传学
发起人
信号转导
DNA
基因表达
基因
古生物学
断裂(地质)
作者
Lena M. Muckenfuss,Anabel Carmen Migenda Herranz,Franziska M Boneberg,Marcello Clerici,Martin Jinek
出处
期刊:eLife
[eLife Sciences Publications, Ltd.]
日期:2022-09-08
卷期号:11
被引量:2
摘要
3' end formation of most eukaryotic mRNAs is dependent on the assembly of a ~1.5 MDa multiprotein complex, that catalyzes the coupled reaction of pre-mRNA cleavage and polyadenylation. In mammals, the cleavage and polyadenylation specificity factor (CPSF) constitutes the core of the 3' end processing machinery onto which the remaining factors, including cleavage stimulation factor (CstF) and poly(A) polymerase (PAP), assemble. These interactions are mediated by Fip1, a CPSF subunit characterized by high degree of intrinsic disorder. Here, we report two crystal structures revealing the interactions of human Fip1 (hFip1) with CPSF30 and CstF77. We demonstrate that CPSF contains two copies of hFip1, each binding to the zinc finger (ZF) domains 4 and 5 of CPSF30. Using polyadenylation assays we show that the two hFip1 copies are functionally redundant in recruiting one copy of PAP, thereby increasing the processivity of RNA polyadenylation. We further show that the interaction between hFip1 and CstF77 is mediated via a short motif in the N-terminal 'acidic' region of hFip1. In turn, CstF77 competitively inhibits CPSF-dependent PAP recruitment and 3' polyadenylation. Taken together, these results provide a structural basis for the multivalent scaffolding and regulatory functions of hFip1 in 3' end processing.
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