Golas Monika M, Sander Bjoern, Will Cindy L, Lührmann Reinhard, Stark Holger
Department of Cellular Biochemistry and Research Group of 3D Electron Cryomicroscopy, Max Planck Institute for Biophysical Chemistry, Am Fassberg 11, D-37077 Göttingen, Germany.
Mol Cell. 2005 Mar 18;17(6):869-83. doi: 10.1016/j.molcel.2005.02.016.
In some eukaryotes, a minor class of introns is removed by the U12-dependent spliceosome, which contains the small nuclear ribonucleoprotein (snRNP) heterodimer U11/U12. The U11/U12 di-snRNP forms a molecular bridge that functionally pairs the intron ends of the pre-mRNA. We have determined the three-dimensional (3D) structure of the human U11/U12 di-snRNP by single particle electron cryomicroscopy using angular reconstitution and random conical tilt. SF3b, a heteromeric protein complex functionally important for branch site recognition, was located in the U11/U12 di-snRNP by antibody labeling and by identification of structural domains of SF3b155, SF3b49, and p14. The conformation of SF3b bound to the U11/U12 di-snRNP differs from that of isolated SF3b: upon integration into the di-snRNP, SF3b rearranges into a more open form. The manner in which SF3b is integrated in the U11/U12 di-snRNP has important implications for branch site recognition. Furthermore, a putative model of the pre-mRNA binding to the U11/U12 di-snRNP is proposed.
在一些真核生物中,一小类内含子由依赖U12的剪接体去除,该剪接体包含小核核糖核蛋白(snRNP)异二聚体U11/U12。U11/U12双snRNP形成一个分子桥,在功能上使前体mRNA的内含子末端配对。我们通过使用角度重构和随机圆锥倾斜的单颗粒电子冷冻显微镜确定了人U11/U12双snRNP的三维(3D)结构。SF3b是一种对分支位点识别功能重要的异源蛋白复合物,通过抗体标记以及鉴定SF3b155、SF3b49和p14的结构域,确定其位于U11/U12双snRNP中。与U11/U12双snRNP结合的SF3b的构象不同于分离的SF3b:整合到双snRNP中后,SF3b重排成更开放的形式。SF3b整合到U11/U12双snRNP中的方式对分支位点识别具有重要意义。此外,还提出了前体mRNA与U11/U12双snRNP结合的推测模型。