Einvik C, Nielsen H, Nour R, Johansen S
Department of Molecular Cell Biology, Institute of Medical Biology, University of Tromsø, N-9037 Tromsø, Norway.
Nucleic Acids Res. 2000 May 15;28(10):2194-200. doi: 10.1093/nar/28.10.2194.
DiGIR1 is a group I-like ribozyme derived from the mobile twin ribozyme group I intron DiSSU1 in the nuclear ribosomal DNA of the myxomycete Didymium iridis. This ribozyme is responsible for intron RNA processing in vitro and in vivo at two internal sites close to the 5'-end of the intron endo-nuclease open reading frame and is a unique example of a group I ribozyme with an evolved biological function. DiGIR1 is the smallest functional group I ribozyme known from nature and has an unusual core organization including the 6 bp P15 pseudoknot. Here we report results of functional and structural analyses that identify RNA elements critical for hydrolysis outside the DiGIR1 ribozyme core moiety. Results from deletion analysis, disruption/compensation mutagenesis and RNA structure probing analysis all support the existence of two new segments, named P2 and P2.1, involved in the hydrolysis of DiGIR1. Significant decreases in the hydrolysis rate, k (obs), were observed in disruption mutants involving both segments. These effects were restored by compensatory base pairing mutants. The possible role of P2 is to tether the ribozyme core, whereas P2.1 appears to be more directly involved in catalysis.
DiGIR1是一种I类样核酶,源自黏菌黄柄钙皮菌核糖体DNA中的移动双体核酶I类内含子DiSSU1。这种核酶负责在体外和体内对内含子RNA进行加工,加工位点位于靠近内含子内切核酸酶开放阅读框5'端的两个内部位点,是具有进化生物学功能的I类核酶的独特例子。DiGIR1是自然界已知的最小的功能性I类核酶,具有不同寻常的核心结构,包括6个碱基对的P15假结。在此,我们报告了功能和结构分析的结果,这些分析确定了DiGIR1核酶核心部分之外对水解至关重要的RNA元件。缺失分析、破坏/补偿诱变和RNA结构探测分析的结果均支持存在两个新的片段,命名为P2和P2.1,它们参与DiGIR1的水解。在涉及这两个片段的破坏突变体中观察到水解速率k(obs)显著降低。这些效应通过补偿性碱基配对突变体得以恢复。P2的可能作用是连接核酶核心,而P2.1似乎更直接参与催化作用。