Haugen Peik, Andreassen Morten, Birgisdottir Asa B, Johansen Steinar
Department of Molecular Biotechnology, Institute of Medical Biology, University of Tromsø, Norway.
Eur J Biochem. 2004 Mar;271(5):1015-24. doi: 10.1111/j.1432-1033.2004.04003.x.
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.
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。