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酵母PRP19蛋白并不与小核RNA紧密结合,但似乎在U2与前体mRNA结合后、功能性剪接体形成之前与剪接体结合。

The yeast PRP19 protein is not tightly associated with small nuclear RNAs, but appears to associate with the spliceosome after binding of U2 to the pre-mRNA and prior to formation of the functional spliceosome.

作者信息

Tarn W Y, Lee K R, Cheng S C

机构信息

Institute of Molecular Biology, Academia Sinica, Nankang, Taiwan, Republic of China.

出版信息

Mol Cell Biol. 1993 Mar;13(3):1883-91. doi: 10.1128/mcb.13.3.1883-1891.1993.

Abstract

We have previously shown that the yeast PRP19 protein is associated with the spliceosome during the splicing reaction by immunoprecipitation studies with anti-PRP19 antibody. We have extended such studies by using extracts depleted of specific splicing factors to investigate the step of the spliceosome assembly process that PRP19 is involved in. PRP19 was not associated with the splicing complexes formed in U2- or U6-depleted extracts but was associated with the splicing complex formed in heat-inactivated prp2 extracts. This finding indicates that PRP19 becomes associated with the splicing complexes after or concomitant with binding of the U6 small nuclear ribonucleoprotein particle (snRNP) to the precursor RNA and before formation of the functional spliceosome. We further analyzed whether PRP19 is an integral component of snRNPs. We have constructed a strain in which an epitope of nine amino acid residues recognized by a well-characterized monoclonal antibody, 12CA5, is linked to the carboxyl terminus of the wild-type PRP19 protein. Immunoprecipitation of the splicing extracts with anti-PRP19 antibody or precipitation of the extracts prepared from the epitope-tagged strain with the 12CA5 antibody did not precipitate significant amounts of snRNAs. Addition of micrococcal nuclease-treated extracts to the PRP19-depleted extract restored its splicing activity. These results indicate that PRP19 is not tightly associated with any of the snRNAs required for the splicing reaction. No non-snRNP protein factor has been demonstrated to participate in either step of the spliceosome assembly pathway that PRP19 might be involved in. Thus, PRP19 represents a novel splicing factor.

摘要

我们之前通过用抗PRP19抗体进行免疫沉淀研究表明,酵母PRP19蛋白在剪接反应过程中与剪接体相关联。我们通过使用去除特定剪接因子的提取物扩展了此类研究,以探究PRP19参与的剪接体组装过程的步骤。PRP19与在U2或U6缺失的提取物中形成的剪接复合物不相关,但与在热失活的prp2提取物中形成的剪接复合物相关。这一发现表明,PRP19在U6小核核糖核蛋白颗粒(snRNP)与前体RNA结合之后或同时,以及在功能性剪接体形成之前与剪接复合物相关联。我们进一步分析了PRP19是否是snRNP的一个组成部分。我们构建了一个菌株,其中一个由特征明确的单克隆抗体12CA5识别的九个氨基酸残基的表位与野生型PRP19蛋白的羧基末端相连。用抗PRP19抗体对剪接提取物进行免疫沉淀,或用12CA5抗体对从表位标记菌株制备的提取物进行沉淀,均未沉淀出大量的snRNA。向PRP19缺失的提取物中添加微球菌核酸酶处理的提取物可恢复其剪接活性。这些结果表明,PRP19与剪接反应所需的任何snRNA都没有紧密关联。尚未证明有非snRNP蛋白因子参与PRP19可能涉及的剪接体组装途径的任何一个步骤。因此,PRP19代表一种新型的剪接因子。

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