首页> 外文期刊>The Journal of Organic Chemistry >Ribonuclease Activity of an Artificial Catalyst That Combines a Ligated Cu-II Ion and a Guanidinium Group at the Upper Rim of a cone-Calix[4]arene Platform
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Ribonuclease Activity of an Artificial Catalyst That Combines a Ligated Cu-II Ion and a Guanidinium Group at the Upper Rim of a cone-Calix[4]arene Platform

机译:锥Calix [4]芳烃平台上缘结合有Cu-II离子和胍鎓基团的人工催化剂的核糖核酸酶活性

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摘要

A cone-calix[4]arene derivative, featuring a guanidinium group and a Cu-II ion ligated to a I,4,7-triazacyclononane (TACN) ligand at the 1,3-distal positions of the upper rim, effectively catalyzes the cleavage of 2-hydroxypropyl p-nitrophenyl phosphate (HPNP) and a number of diriboimdeoside 3',5'-monophosphates (NpN'). Kinetic and potentiometric measurements support the operation of a general-base/general-acid mechanism and demonstrate that the hydroxo form of the ligated Cu-II ion is the sole catalytically active species. Rate enhancements relative to the background hydrolysis reaction at 1 mM catalyst concentration are 6 x 10(5)-fold for HPNP and cluster around 10(7)-fold with the most favorable catalyst-NpN' combinations.
机译:一个圆锥杯[4]芳烃衍生物,具有一个胍基基团和一个Cu-II离子,该离子与上缘的1,3-远端位置的I,4,7-三氮杂环壬烷(TACN)配体连接,可有效催化裂解2-羟丙基对硝基苯基磷酸酯(HPNP)和许多双核糖亚苷3',5'-单磷酸酯(NpN')。动力学和电位测量结果支持通用碱/通用酸机理的运行,并证明了连接的Cu-II离子的羟基形式是唯一的催化活性物质。相对于背景水解反应,在1 mM催化剂浓度下,HPNP的速率增强为6 x 10(5)倍,在最有利的催化剂-NpN'组合下,其簇集约为10(7)倍。

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