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首页> 外文期刊>Journal of the American Chemical Society >Probing General Acid Catalysis In The Hammerhead Ribozyme
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Probing General Acid Catalysis In The Hammerhead Ribozyme

机译:在锤头状核酶中探测一般的酸催化

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Recent crystallographic and computational studies have provided fresh insights into the catalytic mechanism of the RNA-cleaving hammerhead ribozyme. Based on these findings, specific ribozyme functional groups have been hypothesized to act directly as the general acid and base catalysts, although the catalytic role of divalent metal cations (M~(2+)) remains uncertain. We now report a functional characterization of the general acid catalysis mechanism and the role of an M~(2+) cofactor therein, for the S. mansonihammerhead (an "extended" hammerhead ribozyme). We have compared hammerhead cleavage of substrates with natural (ribo-phosphodiester) versus bridging-5'-phosphorothioate scissile linkages, in the contexts of active site mutations and M~(2+) substitution. Cleavage of the natural substrate is inhibited by modification of the G8 2'-OH ribozyme residue and depends strongly upon the presence and identity of an M~(2+) cofactor; in contrast, cleavage of the bridging-phosphorothioate substrate is conspicuously insensitive to any of these factors. These results imply that (1) both an M~(2+) cofactor and the G8 2'-OH play crucial roles in hammerhead general acid catalysis and (2) the M~(2+) cofactor does not contribute to general acid catalysis via Lewis acid stabilization of the leaving group. General acid pK_a perturbation was also demonstrated for both M~(2+) substitution and G8 2'-OH modification, which suggests transition state M~(2+) coordination of the G8 2'-OH, to lower its pK_a and improve its ability to transfer a proton to the leaving group. We also report a simple method for synthesizing radiolabeled bridging-5'-phosphorothioate substrates.
机译:最近的晶体学和计算研究为RNA切割锤头状核酶的催化机理提供了新的见识。基于这些发现,尽管二价金属阳离子(M〜(2+))的催化作用仍然不确定,但特定的核酶官能团被认为可以直接充当一般的酸和碱催化剂。现在,我们为曼氏沙门氏菌(一种“扩展的”锤头状核酶)报道了一般酸催化机理的功能表征以及其中的M〜(2+)辅助因子的作用。在活性位点突变和M〜(2+)取代的情况下,我们比较了天然(核糖二酯)与桥联5'-硫代磷酸酯可裂键的底物的锤头切割。天然底物的裂解受到G8 2'-OH核酶残基修饰的抑制,并且强烈依赖于M〜(2+)辅因子的存在和特性。相反,桥接-硫代磷酸酯底物的裂解对这些因素中的任何一个明显不敏感。这些结果表明,(1)M〜(2+)辅助因子和G8 2'-OH在锤头一般的酸催化中均起关键作用,(2)M〜(2+)辅助因子对一般的酸催化不起作用通过路易斯酸使离去基团稳定。还证明了一般的酸pK_a扰动M〜(2+)取代和G8 2'-OH修饰,这表明G8 2'-OH的过渡态M〜(2+)配位,以降低其pK_a并改善其质子转移到离去基团的能力。我们还报告了一种简单的方法,用于合成放射性标记的5'-硫代磷酸酯底物。

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