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酵母U2A'/U2B复合物是前体剪接体形成所必需的。

The yeast U2A'/U2B complex is required for pre-spliceosome formation.

作者信息

Caspary F, Séraphin B

机构信息

EMBL, Meyerhofstrasse 1, D-69117 Heidelberg, Germany.

出版信息

EMBO J. 1998 Nov 2;17(21):6348-58. doi: 10.1093/emboj/17.21.6348.

Abstract

Human U2 snRNP contains two specific proteins, U2A' and U2B", that interact with U2 snRNA stem-loop IV. In Saccharomyces cerevisiae, only the counterpart of human U2B", Yib9p, has been identified. Database searches revealed a gene potentially coding for a protein with striking similarities to human U2A', henceforth called LEA1 (looks exceptionally like U2A'). We demonstrate that Lea1p is a specific component of the yeast U2 snRNP. In addition, we show that Lea1p interacts directly with Yib9p. In vivo association of Lea1p with U2 snRNA requires Yib9p. Reciprocally, Yib9p binds to the U2 snRNA only in the presence of Lea1p in vivo, even though it has been previously shown to associate on its own with the U2 snRNA stem-loop IV in vitro. Strains lacking LEA1 and/or YIB9 grow slowly, are temperature sensitive and contain reduced levels of U2 snRNA. Pre-mRNA splicing is strongly impaired in these cells. In vitro studies demonstrate that spliceosome assembly is blocked prior to addition of U2 snRNP. This phenotype can be rescued partially, but specifically, by addition of the corresponding recombinant protein(s). This demonstrates a specific role for the yeast U2 snRNP specific proteins during formation of the pre-spliceosome.

摘要

人类U2小核核糖核蛋白颗粒(snRNP)包含两种特定蛋白质,U2A' 和U2B",它们与U2 snRNA茎环IV相互作用。在酿酒酵母中,仅鉴定出了人类U2B"的对应物Yib9p。数据库搜索揭示了一个可能编码与人类U2A' 具有显著相似性的蛋白质的基因,此后将其称为LEA1(看起来特别像U2A')。我们证明Lea1p是酵母U2 snRNP的一个特定组分。此外,我们表明Lea1p直接与Yib9p相互作用。Lea1p与U2 snRNA在体内的结合需要Yib9p。相应地,Yib9p仅在体内存在Lea1p的情况下与U2 snRNA结合,尽管先前已表明它在体外可独自与U2 snRNA茎环IV结合。缺乏LEA1和/或YIB9的菌株生长缓慢,对温度敏感,并且U2 snRNA水平降低。这些细胞中的前体mRNA剪接受到严重损害。体外研究表明,在添加U2 snRNP之前,剪接体组装被阻断。通过添加相应的重组蛋白,可以部分但特异性地挽救这种表型。这证明了酵母U2 snRNP特异性蛋白在剪接体前体形成过程中的特定作用。

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本文引用的文献

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New constructs and strategies for efficient PCR-based gene manipulations in yeast.酵母中基于高效PCR的基因操作的新构建体和策略
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