Wurm Jan Philip, Overbeck Jan, Sprangers Remco
Max Planck Institute for Developmental Biology, 72076 Tübingen, Germany.
RNA. 2016 Sep;22(9):1360-72. doi: 10.1261/rna.057315.116. Epub 2016 Jun 28.
The removal of the 5' 7-methylguanosine mRNA cap structure (decapping) is a central step in the 5'-3' mRNA degradation pathway and is performed by the Dcp1:Dcp2 decapping complex. The activity of this complex is tightly regulated to prevent premature degradation of the transcript. Here, we establish that the aromatic groove of the EVH1 domain of Schizosaccharomyces pombe Dcp1 can interact with proline-rich sequences in the exonuclease Xrn1, the scaffolding protein Pat1, the helicase Dhh1, and the C-terminal disordered region of Dcp2. We show that this region of Dcp1 can also recruit a previously unidentified enhancer of decapping protein (Edc1) and solved the crystal structure of the complex. NMR relaxation dispersion experiments reveal that the Dcp1 binding site can adopt multiple conformations, thus providing the plasticity that is required to accommodate different ligands. We show that the activator Edc1 makes additional contacts with the regulatory domain of Dcp2 and that an activation motif in Edc1 increases the RNA affinity of Dcp1:Dcp2. Our data support a model where Edc1 stabilizes the RNA in the active site, which results in enhanced decapping rates. In summary, we show that multiple decapping factors, including the Dcp2 C-terminal region, compete with Edc1 for Dcp1 binding. Our data thus reveal a network of interactions that can fine-tune the catalytic activity of the decapping complex.
去除5' 7-甲基鸟苷mRNA帽结构(去帽)是5'-3' mRNA降解途径中的关键步骤,由Dcp1:Dcp2去帽复合体执行。该复合体的活性受到严格调控,以防止转录本过早降解。在此,我们证实裂殖酵母Dcp1的EVH1结构域的芳香族凹槽可与核酸外切酶Xrn1、支架蛋白Pat1、解旋酶Dhh1以及Dcp2的C端无序区域中富含脯氨酸的序列相互作用。我们发现Dcp1的这一区域还能招募一种此前未鉴定的去帽增强蛋白(Edc1),并解析了该复合体的晶体结构。核磁共振弛豫色散实验表明,Dcp1结合位点可采用多种构象,从而为容纳不同配体提供所需的可塑性。我们发现激活剂Edc1与Dcp2的调节结构域有额外的接触,且Edc1中的一个激活基序可增加Dcp1:Dcp2对RNA的亲和力。我们的数据支持一种模型,即Edc1使活性位点中的RNA稳定,从而提高去帽速率。总之,我们表明包括Dcp2 C端区域在内的多种去帽因子与Edc1竞争Dcp1的结合。因此,我们的数据揭示了一个可微调去帽复合体催化活性的相互作用网络。