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I类内含子在3'剪接位点反应的要求。

Requirements of a group I intron for reactions at the 3' splice site.

作者信息

van der Horst G, Inoue T

机构信息

Salk Institute for Biological Studies, La Jolla, CA 92037.

出版信息

J Mol Biol. 1993 Feb 5;229(3):685-94. doi: 10.1006/jmbi.1993.1072.

Abstract

Structural elements of the Tetrahymena group I intron have been implicated in directing the exon-ligation transesterification reaction (the second step of self-splicing) to the correct 3' splice site. The 3' splice site also serves as the reaction site in a distinct transesterification reaction known as G-exchange and in a specific hydrolysis reaction. The dependence of the reactions on the internal guide sequence (IGS), an exon-binding element, was examined. Hydrolysis did not require the IGS, while G-exchange did, suggesting that one of the guanosine-binding sites employed during G-exchange requires the IGS. For the exon ligation reaction, the specification of the 3' splice site is thought to be influenced by the 3' exon-IGS pairing P10 and three structural elements in the intron: the universally conserved guanosine residue preceding the 3' splice site, the long-range pairing P9.0, and the triple stem-loop region composed of P9, P9.1 and P9.2. A systematic mutational study of the three structural elements was performed in order to clarify the mechanism of the specification of the 3' splice site for the reactions. For both transesterification reactions, the elements are important, with some superfluity in function. The specific hydrolysis reaction, however, shows even more dependence on the individual elements, especially the conserved guanosine. The results are discussed in terms of models for the mechanism of self-splicing.

摘要

嗜热四膜虫I组内含子的结构元件与指导外显子连接转酯反应(自我剪接的第二步)至正确的3'剪接位点有关。3'剪接位点在一种称为G交换的独特转酯反应以及一种特定的水解反应中也作为反应位点。研究了这些反应对内部引导序列(IGS,一种外显子结合元件)的依赖性。水解不需要IGS,而G交换需要,这表明G交换过程中使用的鸟苷结合位点之一需要IGS。对于外显子连接反应,3'剪接位点的确定被认为受3'外显子-IGS配对P10以及内含子中的三个结构元件影响:3'剪接位点之前普遍保守的鸟苷残基、远距离配对P9.0以及由P9、P9.1和P9.2组成的三链茎环区域。为了阐明这些反应中3'剪接位点确定的机制,对这三个结构元件进行了系统的突变研究。对于这两种转酯反应,这些元件都很重要,功能上存在一些冗余。然而,特定的水解反应对各个元件的依赖性更强,尤其是保守的鸟苷。根据自我剪接机制的模型对结果进行了讨论。

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