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Mg2+-independent hairpin ribozyme catalysis in hydrated RNA films.

机译:Mg2 +不依赖的发夹状核酶在水合RNA膜中的催化作用。

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The hairpin ribozyme catalyzes RNA cleavage in partially hydrated RNA films in the absence of added divalent cations. This reaction exhibits the characteristics associated with the RNA cleavage reaction observed under standard conditions in solution. Catalysis is a site-specific intramolecular transesterification reaction, requires the 2'-hydroxyl group of substrate nucleotide A(-1), and generates 2',3'-cyclic phosphate and 5'-hydroxyl termini. Mutations in both ribozyme and substrate abolish catalysis in hydrated films. The reaction is accelerated by cations that may enhance binding, conformational stability, and catalytic activity, and is inhibited by Tb3+. The reaction has an apparent temperature optimum of 4 degrees C. At this temperature, cleavage is slow (k(obs): 2 d(-1)) and progressive, with accumulation of cleavage products to an extent of 40%. The use of synthetic RNAs, chelators, and analysis of all reaction components by inductively coupled plasma-optical spectrophotometry (ICPOES) effectively rules out the possibility of contaminating divalent metals in the reactions. Catalysis is minimal under conditions of extreme dehydration, indicating that the reaction requires hydration of RNA by atmospheric water. Our results provide a further caution for those studying the biochemical activity of ribozymes in vitro and in cells, as unanticipated catalysis could occur during RNA manipulation and lead to misinterpretation of data.
机译:发夹状核酶在不添加二价阳离子的情况下催化部分水合RNA膜中的RNA裂解。该反应表现出与在标准条件下在溶液中观察到的RNA切割反应相关的特征。催化是位点特异性分子内酯交换反应,需要底物核苷酸A(-1)的2'-羟基,并生成2',3'-环状磷酸酯和5'-羟基末端。核酶和底物的突变都消除了水合膜中的催化作用。阳离子可增强结合,构象稳定性和催化活性,并通过Tb3 +抑制,从而加快了反应速度。该反应的表观温度最佳为4℃。在该温度下,裂解是缓慢的(k(obs):2d(-1))并且是渐进的,裂解产物的积累达到40%的程度。使用合成RNA,螯合剂以及通过电感耦合等离子体光谱仪(ICPOES)对所有反应成分进行分析,可以有效地排除污染反应中二价金属的可能性。在极端脱水的条件下,催化作用极少,这表明该反应需要大气中的水合RNA。我们的结果为那些在体外和细胞中研究核酶生化活性的人提供了进一步的警告,因为在RNA操作过程中可能发生意外的催化作用,并导致数据的错误解释。

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