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剪接复合体的亲和层析:剪接体中的U2、U5以及U4 + U6小核核糖核蛋白颗粒

Affinity chromatography of splicing complexes: U2, U5, and U4 + U6 small nuclear ribonucleoprotein particles in the spliceosome.

作者信息

Grabowski P J, Sharp P A

出版信息

Science. 1986 Sep 19;233(4770):1294-9. doi: 10.1126/science.3638792.

Abstract

The splicing process, which removes intervening sequences from messenger RNA (mRNA) precursors is essential to gene expression in eukaryotic cells. This site-specific process requires precise sequence recognition at the boundaries of an intervening sequence, but the mechanism of this recognition is not understood. The splicing of mRNA precursors occurs in a multicomponent complex termed the spliceosome. Such an assembly of components is likely to play a key role in specifying those sequences to be spliced. In order to analyze spliceosome structure, a stringent approach was developed to obtain splicing complexes free of cellular contaminants. This approach is a form of affinity chromatography based on the high specificity of the biotin-streptavidin interaction. A minimum of three subunits: U2, U5, and U4 + U6 small nuclear ribonucleoprotein particles were identified in the 35S spliceosome structure, which also contains the bipartite RNA intermediate of splicing. A 25S presplicing complex contained only the U2 particle. The multiple subunit structure of the spliceosome has implications for the regulation of a splicing event and for its possible catalysis by ribozyme or ribozymes.

摘要

剪接过程是从信使核糖核酸(mRNA)前体中去除间隔序列,这对真核细胞中的基因表达至关重要。这个位点特异性过程需要在间隔序列的边界进行精确的序列识别,但其识别机制尚不清楚。mRNA前体的剪接发生在一个称为剪接体的多组分复合物中。这样的组分组装可能在指定要剪接的序列中起关键作用。为了分析剪接体结构,开发了一种严格的方法来获得不含细胞污染物的剪接复合物。这种方法是一种基于生物素 - 链霉亲和素相互作用高特异性的亲和色谱形式。在35S剪接体结构中至少鉴定出三个亚基:U2、U5和U4 + U6小核核糖核蛋白颗粒,其还包含剪接的二分RNA中间体。一个25S预剪接复合物仅包含U2颗粒。剪接体的多亚基结构对剪接事件的调控及其可能由一种或多种核酶催化具有重要意义。

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