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锥虫剪接前导RNA的结构-功能分析

Structure-function analysis of the trypanosomatid spliced leader RNA.

作者信息

Goncharov I, Xu Y X, Zimmer Y, Sherman K, Michaeli S

机构信息

Department of Biological Chemistry, The Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Nucleic Acids Res. 1998 May 1;26(9):2200-7. doi: 10.1093/nar/26.9.2200.

Abstract

In trypanosomes, all mRNAs possess a spliced leader (SL) at their 5' end. SL is added to pre-mRNA via trans -splicing from a small RNA, the SL RNA. To examine structure-function aspects of the trypanosomatid SL RNA, an in vivo system was developed in the monogenetic trypanosomatid Leptomonas collosoma to analyze the function of chimeric and site-directed SL RNA mutants in trans -splicing. Stable cell lines expressing chimeric and mutated SL RNA from the authentic SL RNA regulatory unit were obtained. The chimeric RNA was expressed and assembled into an SL RNP particle, but could not serve as a substrate in splicing. Mutations in loop II and III of L.collosoma SL RNA formed the Y structure intermediate. In addition, a double SL RNA mutant in loop II, and positions 7 and 8 of the intron, also formed the Y structure intermediate, suggesting that these intron positions, although proposed to participate in the interaction of SL RNA with U5, may not be crucial for the first step of the trans -splicing reaction. A mutation in the exon located in loop I was not utilized in splicing, suggesting the importance of exon sequences for trans -splicing in trypanosomes. However, a double SL RNA mutant in loop II and exon position 31 was utilized in both steps of splicing; the mutant thus provides a model molecule for further analysis of positions essential for the function of the SL RNA.

摘要

在锥虫中,所有mRNA在其5'端都有一个剪接前导序列(SL)。SL是通过从小RNA(即SL RNA)进行反式剪接添加到前体mRNA上的。为了研究锥虫SL RNA的结构-功能方面,在单基因锥虫粗线椎虫中开发了一种体内系统,以分析嵌合和定点SL RNA突变体在反式剪接中的功能。获得了从真实SL RNA调控单元表达嵌合和突变SL RNA的稳定细胞系。嵌合RNA被表达并组装成SL核糖核蛋白颗粒,但不能作为剪接的底物。粗线椎虫SL RNA环II和环III中的突变形成了Y结构中间体。此外,环II以及内含子第7和第8位的双SL RNA突变体也形成了Y结构中间体,这表明这些内含子位置,尽管被认为参与SL RNA与U5的相互作用,但可能对反式剪接反应的第一步并不关键。位于环I中的外显子中的一个突变在剪接中未被利用,这表明外显子序列对锥虫反式剪接的重要性。然而,环II和外显子第31位的双SL RNA突变体在剪接的两个步骤中都被利用;因此,该突变体为进一步分析SL RNA功能所必需的位置提供了一个模型分子。

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