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对内含子切除反应中3'剪接位点确定所需前体tRNA结构特征的体外遗传分析。

In vitro genetic analysis of the structural features of the pre-tRNA required for determination of the 3' splice site in the intron excision reaction.

作者信息

Bufardeci E, Fabbri S, Baldi M I, Mattoccia E, Tocchini-Valentini G P

机构信息

Istituto Guido Donegani SpA, Institute of Cell Biology, CNR, Rome, Italy.

出版信息

EMBO J. 1993 Dec;12(12):4697-704. doi: 10.1002/j.1460-2075.1993.tb06158.x.

Abstract

During processing of intron-containing pre-tRNAs, the Xenopus laevis splicing endonuclease binds the precursor and cleaves it at both the 5' and 3' splice sites. In vitro selection was used to determine structural features characteristic of precursor tRNA molecules that are active in this reaction. We performed two types of selection, one for molecules that are not cut, the other for molecules that are cut at only one site. The results shed light on various aspects of the intron excision reaction, including the importance of the three-dimensional structure of the mature domain for recognition and binding of the enzyme, the active role played by the single-stranded region of the intron, and the importance of the cardinal positions which, although not necessarily occupied by the same base in all precursors, nevertheless play a fundamental role in the splicing reaction. A precursor can be cut at the 3' site if a base in the single-stranded loop of the intron is allowed to pair (A-I pair) with the base of the 5' exon situated at the position immediately following the anticodon stem [first cardinal position (CP1)]. The nature of the bases involved in the A-I pair is important, as is the position of the base in the single-stranded loop of the intron. We discuss the role of the cardinal positions in the reaction.

摘要

在含内含子的前体tRNA加工过程中,非洲爪蟾剪接内切核酸酶结合前体并在5'和3'剪接位点将其切割。体外筛选用于确定在此反应中具有活性的前体tRNA分子的结构特征。我们进行了两种类型的筛选,一种针对未被切割的分子,另一种针对仅在一个位点被切割的分子。这些结果揭示了内含子切除反应的各个方面,包括成熟结构域的三维结构对于酶的识别和结合的重要性、内含子单链区域所起的积极作用,以及关键位置的重要性,这些关键位置虽然在所有前体中不一定被相同的碱基占据,但在剪接反应中起着根本性作用。如果内含子单链环中的一个碱基被允许与位于反密码子茎之后紧邻位置的5'外显子的碱基配对(A-I配对),则前体可以在3'位点被切割[第一关键位置(CP1)]。参与A-I配对的碱基的性质很重要,内含子单链环中碱基的位置也很重要。我们讨论了关键位置在反应中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/378b/413913/2bc7d92012bb/emboj00084-0238-a.jpg

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