首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Reconstitution of CPSF active in polyadenylation: Recognition of the polyadenylation signal by WDR33
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Reconstitution of CPSF active in polyadenylation: Recognition of the polyadenylation signal by WDR33

机译:重组在聚腺苷酸化中起作用的CPSF:通过WDR33识别聚腺苷酸化信号

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摘要

Cleavage and polyadenylation specificity factor (CPSF) is the central component of the 39 processing machinery for polyadenylated mRNAs in metazoans: CPSF recognizes the polyadenylation signal AAUAAA, providing sequence specificity in both pre-mRNA cleavage and polyadenylation, and catalyzes pre-mRNA cleavage. Here we show that of the seven polypeptides that have been proposed to constitute CPSF, only four (CPSF160, CPSF30, hFip1, and WDR33) are necessary and sufficient to reconstitute a CPSF subcomplex active in AAUAAA-dependent polyadenylation, whereas CPSF100, CPSF73, and symplekin are dispensable. WDR33 is required for binding of reconstituted CPSF to AAUAAA-containing RNA and can be specifically UV cross-linked to such RNAs, as can CPSF30. Transcriptome-wide identification of WDR33 targets by photoactivatable ribonucleoside-enhanced crosslinking and immunoprecipitation (PAR-CLIP) showed that WDR33 binds in and very close to the AAUAAA signal in vivo with high specificity. Thus, our data indicate that the large CPSF subunit participating in recognition of the polyadenylation signal is WDR33 and not CPSF160, as suggested by previous studies.
机译:裂解和聚腺苷酸化特异性因子(CPSF)是后生动物中39种加工多肽的重要组成部分:CPSF识别聚腺苷酸化信号AAUAAA,在mRNA裂解前和聚腺苷酸化过程中均提供序列特异性,并催化mRNA裂解。在这里,我们显示了已经提出的构成CPSF的7种多肽中,只有4种(CPSF160,CPSF30,hFip1和WDR33)是必需的,并且足以重构在AAUAAA依赖的聚腺苷酸化中具有活性的CPSF亚复合物,而CPSF100,CPSF73和symplekin是可有可无的。 WDR33是重组CPSF与含有AAUAAA的RNA结合所必需的,并且可以与CPSF30进行UV交联。通过光活化核糖核苷增强的交联和免疫沉淀(PAR-CLIP)在WDR33靶标的转录组范围内鉴定显示,WDR33在体内与AAUAAA信号结合且非常接近,具有很高的特异性。因此,我们的数据表明,参与聚腺苷酸信号识别的大型CPSF亚基是WDR33,而不是CPSF160,如先前的研究所建议。

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