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I 组内含子核酶的水解切割依赖于对剪接不重要的RNA结构。

Hydrolytic cleavage by a group I intron ribozyme is dependent on RNA structures not important for splicing.

作者信息

Haugen Peik, Andreassen Morten, Birgisdottir Asa B, Johansen Steinar

机构信息

Department of Molecular Biotechnology, Institute of Medical Biology, University of Tromsø, Norway.

出版信息

Eur J Biochem. 2004 Mar;271(5):1015-24. doi: 10.1111/j.1432-1033.2004.04003.x.

Abstract

DiGIR2 is the group I splicing-ribozyme of the mobile twin-ribozyme intron Dir.S956-1, present in Didymium nuclear ribosomal DNA. DiGIR2 is responsible for intron excision, exon ligation, 3'-splice site hydrolysis, and full-length intron RNA circle formation. We recently reported that DiGIR2 splicing (intron excision and exon ligation) competes with hydrolysis and subsequent full-length intron circularization. Here we present experimental evidence that hydrolysis at the 3'-splice site in DiGIR2 is dependent on structural elements within the P9 subdomain not involved in splicing. Whereas the GCGA tetra-loop in P9b was found to be important in hydrolytic cleavage, probably due to tertiary RNA-RNA interactions, the P9.2 hairpin structure was found to be essential for hydrolysis. The most important positions in P9.2 include three adenosines in the terminal loop (L9.2) and a consensus kink-turn motif in the proximal stem. We suggest that the L9.2 adenosines and the kink-motif represent key regulatory elements in the splicing and hydrolytic reaction pathways.

摘要

DiGIR2是存在于双岐藻核糖体DNA中的移动双核糖核酸酶内含子Dir.S956-1的I组剪接核糖核酸酶。DiGIR2负责内含子切除、外显子连接、3'-剪接位点水解以及全长内含子RNA环的形成。我们最近报道,DiGIR2剪接(内含子切除和外显子连接)与水解及随后的全长内含子环化相互竞争。在此,我们提供实验证据表明,DiGIR2中3'-剪接位点的水解取决于P9亚结构域内不参与剪接的结构元件。虽然发现P9b中的GCGA四环在水解切割中很重要,这可能是由于三级RNA-RNA相互作用,但发现P9.2发夹结构对水解至关重要。P9.2中最重要的位置包括末端环(L9.2)中的三个腺苷以及近端茎中的一个共有扭结-turn基序。我们认为,L9.2腺苷和扭结基序代表了剪接和水解反应途径中的关键调节元件。

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