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嗜鸟粪盘菌IIA型内含子在体外的自我剪接。3'端内含子改变对5'和3'剪接位点切割的影响。

Self-splicing of a Podospora anserina group IIA intron in vitro. Effects of 3'-terminal intron alterations on cleavage at the 5' and 3' splice site.

作者信息

Schmidt U, Sägebarth R, Schmelzer C, Stahl U

机构信息

Fachgebiet Mikrobiologie und Genetik, Technische Universität Berlin, Germany.

出版信息

J Mol Biol. 1993 Jun 5;231(3):559-68. doi: 10.1006/jmbi.1993.1309.

Abstract

A shortened derivative of the group IIA intron from the mitochondrial cytochrome-c-oxidase subunit I gene (COI I1) of the ascomycete Podospora anserina can undergo self-splicing in vitro. When compared to self-splicing group IIB introns from yeast mitochondria (aI5c, bI1) the autocatalytic reaction shows a lower efficiency and 5' cleavage takes place predominantly by hydrolysis. In order to test the influence on reaction efficiency and mode of 5' cleavage of the long peripheral structure of domain VI (dVI) we generated mutant Podospora introns that have different structural forms of shortened dVI. Our results show that: (1) in general the size and structure of dVI distal from the branch site is essential for 5' transesterification and influences the efficiency of the second splicing step; (2) 5' transesterification as well as the complete self-splicing reaction is more efficient when the structure of dVI is adapted to that of yeast group IIB introns. Moreover, our data indicate that the postulated gamma-gamma' tertiary interaction is also functional for group IIA introns. A weakening or disruption of this interaction in the Podospora intron leads to a greatly reduced cleavage at the 3' splice site and to a selection of cryptic sites downstream in the 3' exon that almost exclusively restore the strong wild-type gamma-gamma' pairing. The so-called "guide" interaction seems to support the selection of 3' cleavage sites but is of secondary importance in relation to the gamma-gamma' interaction.

摘要

来自子囊菌Podospora anserina线粒体细胞色素c氧化酶亚基I基因(COI I1)的IIA类内含子的一个缩短衍生物能够在体外进行自我剪接。与来自酵母线粒体的自我剪接IIB类内含子(aI5c、bI1)相比,自催化反应效率较低,5'切割主要通过水解发生。为了测试结构域VI(dVI)的长外围结构对反应效率和5'切割模式的影响,我们构建了具有不同缩短dVI结构形式的突变型Podospora内含子。我们的结果表明:(1)一般来说,远离分支位点的dVI的大小和结构对于5'转酯反应至关重要,并影响第二个剪接步骤的效率;(2)当dVI的结构与酵母IIB类内含子的结构相适应时,5'转酯反应以及完整的自我剪接反应效率更高。此外,我们的数据表明,假定的γ-γ'三级相互作用对IIA类内含子也有作用。Podospora内含子中这种相互作用的减弱或破坏会导致3'剪接位点的切割大大减少,并导致在3'外显子下游选择隐蔽位点,这些位点几乎完全恢复了强野生型γ-γ'配对。所谓的“引导”相互作用似乎支持3'切割位点的选择,但相对于γ-γ'相互作用来说是次要的。

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