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基于杯[4]芳烃的氮配体的水溶性铜(II)配合物对二磷酸核苷单磷酸酯的催化裂解作用。

Catalysis of diribonucleoside monophosphate cleavage by water soluble copper(II) complexes of calix[4]arene based nitrogen ligands.

作者信息

Cacciapaglia Roberta, Casnati Alessandro, Mandolini Luigi, Reinhoudt David N, Salvio Riccardo, Sartori Andrea, Ungaro Rocco

机构信息

Dipartimento di Chimica and IMC - CNR Sezione Meccanismi di Reazione, Università La Sapienza, Box 34 - Roma 62, 00185 Roma, Italy.

出版信息

J Am Chem Soc. 2006 Sep 20;128(37):12322-30. doi: 10.1021/ja0632106.

Abstract

Calix[4]arenes functionalized at the 1,2-, 1,3-, and 1,2,3-positions of the upper rim with [12]ane-N(3) ligating units were synthesized, and their bi- and trimetallic zinc(II) and copper(II) complexes were investigated as catalysts in the cleavage of phosphodiesters as RNA models. The results of comparative kinetic studies using monometallic controls indicate that the subunits of all of the zinc(II) complexes and of the 1,3-distal bimetallic copper(II) complex 7-Cu(2) act as essentially independent monometallic catalysts. The lack of cooperation between metal ions in the above complexes is in marked contrast with the behavior of the 1,2-vicinal bimetallic copper(II) complex 6-Cu(2), which exhibits high catalytic efficiency and high levels of cooperation between metal ions in the cleavage of HPNP and of diribonucleoside monophosphates NpN'. A third ligated metal ion at the upper rim does not enhance the catalytic efficiency, which excludes the simultaneous cooperation in the catalysis of the three metal ions in 8-Cu(3). Rate accelerations relative to the background brought about by 6-Cu(2) and 8-Cu(3) (1.0 mM catalyst, water solution, pH 7.0, 50 degrees C) are on the order of 10(4)-fold, largely independent of the nucleobase structure, with the exception of the cleavage of diribonucleoside monophosphates in which the nucleobase N is uracil, namely UpU and UpG, for which rate enhancements rise to 10(5)-fold. The rationale for the observed selectivity is discussed in terms of deprotonation of the uracil moiety under the reaction conditions and complexation of the resulting anion with one of the copper(II) centers.

摘要

合成了在上缘的1,2-、1,3-和1,2,3-位用[12]ane-N(3)连接单元官能化的杯[4]芳烃,并研究了它们的双金属和三金属锌(II)及铜(II)配合物作为RNA模型磷酸二酯裂解催化剂的性能。使用单金属对照进行的比较动力学研究结果表明,所有锌(II)配合物的亚基以及1,3-远端双金属铜(II)配合物7-Cu(2)的亚基都起着基本独立的单金属催化剂的作用。上述配合物中金属离子之间缺乏协同作用,这与1,2-邻位双金属铜(II)配合物6-Cu(2)的行为形成鲜明对比,6-Cu(2)在HPNP和二核糖核苷单磷酸NpN'的裂解中表现出高催化效率和金属离子之间的高度协同作用。上缘的第三个配位金属离子不会提高催化效率,这排除了8-Cu(3)中三个金属离子在催化中同时协同作用的可能性。相对于背景而言,由6-Cu(2)和8-Cu(3)(1.0 mM催化剂,水溶液,pH 7.0,50℃)引起的速率加速约为10(4)倍,在很大程度上与核碱基结构无关,但二核糖核苷单磷酸的裂解除外,其中核碱基N为尿嘧啶,即UpU和UpG,其速率增强升至10(5)倍。根据反应条件下尿嘧啶部分的去质子化以及所得阴离子与其中一个铜(II)中心的络合作用,讨论了观察到的选择性的原理。

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