Kowalinski Eva, Kögel Alexander, Ebert Judith, Reichelt Peter, Stegmann Elisabeth, Habermann Bianca, Conti Elena
Department of Structural Cell Biology, Max Planck Institute of Biochemistry, Am Klopferspitz 18, 82152 Martinsried, Germany.
Computational Biology, Max Planck Institute of Biochemistry, Am Klopferspitz 18, 82152 Martinsried, Germany.
Mol Cell. 2016 Jul 7;63(1):125-34. doi: 10.1016/j.molcel.2016.05.028. Epub 2016 Jun 23.
The RNA exosome complex associates with nuclear and cytoplasmic cofactors to mediate the decay, surveillance, or processing of a wide variety of transcripts. In the cytoplasm, the conserved core of the exosome (Exo10) functions together with the conserved Ski complex. The interaction of S. cerevisiae Exo10 and Ski is not direct but requires a bridging cofactor, Ski7. Here, we report the 2.65 Å resolution structure of S. cerevisiae Exo10 bound to the interacting domain of Ski7. Extensive hydrophobic interactions rationalize the high affinity and stability of this complex, pointing to Ski7 as a constitutive component of the cytosolic exosome. Despite the absence of sequence homology, cytoplasmic Ski7 and nuclear Rrp6 bind Exo10 using similar surfaces and recognition motifs. Knowledge of the interacting residues in the yeast complexes allowed us to identify a splice variant of human HBS1-Like as a Ski7-like exosome-binding protein, revealing the evolutionary conservation of this cytoplasmic cofactor.
RNA外切体复合物与细胞核和细胞质辅助因子结合,介导多种转录本的降解、监测或加工。在细胞质中,外切体的保守核心(Exo10)与保守的Ski复合物共同发挥作用。酿酒酵母Exo10和Ski之间的相互作用不是直接的,而是需要一个桥梁辅助因子Ski7。在这里,我们报道了与Ski7相互作用结构域结合的酿酒酵母Exo10的2.65Å分辨率结构。广泛的疏水相互作用解释了该复合物的高亲和力和稳定性,表明Ski7是胞质外切体的组成成分。尽管缺乏序列同源性,但细胞质中的Ski7和细胞核中的Rrp6使用相似的表面和识别基序结合Exo10。了解酵母复合物中的相互作用残基使我们能够鉴定出人类HBS1-Like的一个剪接变体作为Ski7样外切体结合蛋白,揭示了这种细胞质辅助因子的进化保守性。