Crystallizing the 6S and 8S spliceosomal assembly intermediates: a complex project.

Jann Patrick Pelz, Hermann Schindelin, Katharina van Pee, Jochen Kuper, Caroline Kisker, Kay Diederichs, Utz Fischer, Clemens Grimm
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引用次数: 4

Abstract

The small nuclear ribonucleoproteins (snRNPs) U1, U2, U4/6 and U5 are major constituents of the pre-mRNA processing spliceosome. They contain a common RNP core that is formed by the ordered binding of Sm proteins onto the single-stranded Sm site of the snRNA. Although spontaneous in vitro, assembly of the Sm core requires assistance from the PRMT5 and SMN complexes in vivo. To gain insight into the key steps of the assembly process, the crystal structures of two assembly intermediates of U snRNPs termed the 6S and 8S complexes have recently been reported. These multimeric protein complexes could only be crystallized after the application of various rescue strategies. The developed strategy leading to the crystallization and solution of the 8S crystal structure was subsequently used to guide a combination of rational crystal-contact optimization with surface-entropy reduction of crystals of the related 6S complex. Conversely, the resulting high-resolution 6S crystal structure was used during the restrained refinement of the 8S crystal structure.

结晶6S和8S剪接体组装中间体:一个复杂的项目。
小核核糖核蛋白(snRNPs) U1、U2、U4/6和U5是mrna加工前剪接体的主要成分。它们含有一个共同的RNP核,该核是由Sm蛋白有序结合到snRNA的单链Sm位点上形成的。虽然Sm核的体外组装是自发的,但在体内需要PRMT5和SMN复合物的帮助。为了深入了解组装过程的关键步骤,最近报道了两种称为6S和8S配合物的U snRNPs组装中间体的晶体结构。这些多聚体蛋白复合物只有在应用各种拯救策略后才能结晶。随后,该研究将8S晶体结构的结晶和溶解策略用于指导合理的晶体接触优化与相关6S配合物晶体表面熵降低的结合。相反,得到的高分辨率6S晶体结构被用于对8S晶体结构进行抑制细化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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