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A second catalytic metal ion in group I ribozyme

机译:第一类核酶中的第二种催化金属离子

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Although only a subset of protein enzymes depend on the presence of a metal ion for their catalytic function, all naturally occurring RNA enzymes require metal ions to stabilize their structure and for catalytic competence. In the self-splicing group I intron from Tetrahymena thermophila, several divalent metals can serve structural roles, but only Mg2+ and Mn2+ promote splice-site cleavage and exon ligation. A study of a ribozyme reaction analogous to 5'-splice-site cleavage by guanosine uncovered the first metal ion with a definitive role in catalysis. Substitution of the 3'-oxygen of the leaving group with sulphur resulted in a metal-specificity switch, indicating an interaction between the leaving group and the metal ion. Here we use 3'-(thioinosylyl)-(3'-->5')-uridine, IspU, as a substrate in a reaction that emulates exon ligation. Activity requires the addition of a thiophilic metal ion (Cd2+ or Mn2+), providing evidence for stabilization of the leaving group by a metal ion in that step of splicing. Based on the principle of microscopic reversibility, this metal ion activates the nucleophilic 3'-hydroxyl of guanosine in the first step of splicing, supporting the model of a two-metal-ion active site.
机译:尽管只有一部分蛋白质酶的催化功能取决于金属离子的存在,但是所有天然存在的RNA酶都需要金属离子来稳定其结构和催化能力。在嗜热四膜膜虫的自剪切组I内含子中,几种二价金属可以起到结构作用,但是只有Mg2 +和Mn2 +才能促进剪接位点的切割和外显子的连接。类似于鸟苷切割5'-剪接位点的核酶反应的研究发现了在催化中起决定性作用的第一金属离子。离去基团的3'-氧被硫取代导致金属特异性转换,表明离去基团和金属离子之间有相互作用。在这里,我们在模拟外显子连接的反应中使用3'-(硫代磺酰基)-(3'-> 5')-尿苷IspU作为底物。活性需要添加亲硫金属离子(Cd2 +或Mn2 +),从而为在拼接步骤中金属离子稳定离去基团提供了证据。根据微观可逆性原理,该金属离子在第一步剪接过程中激活鸟苷的亲核3'-羟基,从而支持了两个金属离子活性位点的模型。

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