Université Bordeaux Segalen, Bordeaux, F-33000, France.
Nucleic Acids Res. 2012 Feb;40(3):1226-39. doi: 10.1093/nar/gkr800. Epub 2011 Oct 12.
Polyadenylation is a co-transcriptional process that modifies mRNA 3'-ends in eukaryotes. In yeast, CF IA and CPF constitute the core 3'-end maturation complex. CF IA comprises Rna14p, Rna15p, Pcf11p and Clp1p. CF IA interacts with the C-terminal domain of RNA Pol II largest subunit via Pcf11p which links pre-mRNA 3'-end processing to transcription termination. Here, we analysed the role of Clp1p in 3' processing. Clp1p binds ATP and interacts in CF IA with Pcf11p only. Depletion of Clp1p abolishes transcription termination. Moreover, we found that association of mutations in the ATP-binding domain and in the distant Pcf11p-binding region impair 3'-end processing. Strikingly, these mutations prevent not only Clp1p-Pcf11p interaction but also association of Pcf11p with Rna14p-Rna15p. ChIP experiments showed that Rna15p cross-linking to the 3'-end of a protein-coding gene is perturbed by these mutations whereas Pcf11p is only partially affected. Our study reveals an essential role of Clp1p in CF IA organization. We postulate that Clp1p transmits conformational changes to RNA Pol II through Pcf11p to couple transcription termination and 3'-end processing. These rearrangements likely rely on the correct orientation of ATP within Clp1p.
聚腺苷酸化是真核生物中转录后修饰 mRNA 3' 端的过程。在酵母中,CFIA 和 CPF 构成核心 3' 端成熟复合物。CFIA 由 Rna14p、Rna15p、Pcf11p 和 Clp1p 组成。CFIA 通过 Pcf11p 与 RNA Pol II 最大亚基的 C 端结构域相互作用,将前体 mRNA 3' 端加工与转录终止联系起来。在这里,我们分析了 Clp1p 在 3' 加工中的作用。Clp1p 结合 ATP,并仅在 CFIA 中与 Pcf11p 相互作用。Clp1p 的缺失会导致转录终止。此外,我们发现 ATP 结合域和远离 Pcf11p 结合区的突变会损害 3' 端加工。引人注目的是,这些突变不仅阻止了 Clp1p-Pcf11p 相互作用,还阻止了 Pcf11p 与 Rna14p-Rna15p 的结合。ChIP 实验表明,这些突变会干扰 Rna15p 与一个蛋白编码基因 3' 端的交联,但对 Pcf11p 的影响较小。我们的研究揭示了 Clp1p 在 CFIA 组织中的重要作用。我们推测,Clp1p 通过 Pcf11p 将构象变化传递给 RNA Pol II,以连接转录终止和 3' 端加工。这些重排可能依赖于 Clp1p 内 ATP 的正确取向。