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利用纯化的剪接体成分重建酿酒酵母剪接的两个步骤。

Reconstitution of both steps of Saccharomyces cerevisiae splicing with purified spliceosomal components.

作者信息

Warkocki Zbigniew, Odenwälder Peter, Schmitzová Jana, Platzmann Florian, Stark Holger, Urlaub Henning, Ficner Ralf, Fabrizio Patrizia, Lührmann Reinhard

机构信息

Department of Cellular Biochemistry, Max Planck Institute of Biophysical Chemistry, Göttingen, Germany.

出版信息

Nat Struct Mol Biol. 2009 Dec;16(12):1237-43. doi: 10.1038/nsmb.1729. Epub 2009 Nov 22.

Abstract

The spliceosome is a ribonucleoprotein machine that removes introns from pre-mRNA in a two-step reaction. To investigate the catalytic steps of splicing, we established an in vitro splicing complementation system. Spliceosomes stalled before step 1 of this process were purified to near-homogeneity from a temperature-sensitive mutant of the RNA helicase Prp2, compositionally defined, and shown to catalyze efficient step 1 when supplemented with recombinant Prp2, Spp2 and Cwc25, thereby demonstrating that Cwc25 has a previously unknown role in promoting step 1. Step 2 catalysis additionally required Prp16, Slu7, Prp18 and Prp22. Our data further suggest that Prp2 facilitates catalytic activation by remodeling the spliceosome, including destabilizing the SF3a and SF3b proteins, likely exposing the branch site before step 1. Remodeling by Prp2 was confirmed by negative stain EM and image processing. This system allows future mechanistic analyses of spliceosome activation and catalysis.

摘要

剪接体是一种核糖核蛋白机器,它通过两步反应从前体mRNA中去除内含子。为了研究剪接的催化步骤,我们建立了一个体外剪接互补系统。从RNA解旋酶Prp2的温度敏感突变体中纯化出在此过程第一步之前停滞的剪接体,使其接近均一,确定其组成,并表明当补充重组Prp2、Spp2和Cwc25时,它能有效催化第一步,从而证明Cwc25在促进第一步中具有先前未知的作用。第二步催化还需要Prp16、Slu7、Prp18和Prp22。我们的数据进一步表明,Prp2通过重塑剪接体促进催化激活,包括使SF3a和SF3b蛋白不稳定,可能在第一步之前暴露分支位点。通过负染电子显微镜和图像处理证实了Prp2介导的重塑。该系统为未来剪接体激活和催化的机制分析提供了可能。

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