首页> 外文期刊>The Journal of Organic Chemistry >Upper Rim Bifunctional cone-Calix[4]arenes Based on a Ligated Metal Ion and a Guanidinium Unit as DNAase and RNAase Mimics
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Upper Rim Bifunctional cone-Calix[4]arenes Based on a Ligated Metal Ion and a Guanidinium Unit as DNAase and RNAase Mimics

机译:基于连接金属离子和胍基单元的上缘双功能锥Calix [4]芳烃作为DNAase和RNAase的模拟物。

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The catalytic activity of an artificial phosphodiesterase that combines a ligated metal ion (Cull, Znll) with a guanidinium unit connected by a 1,2-vicinal calix[4]arene spacer was investigated in the transesterification of RNA models HPNP and four diribonucleoside 3',S'-monophosphates. Comparison with previous data related to the 1,3-distal regioisomeric metal complexes confirms the superiority of the Cull complexes over the ZIP analogs and shows that in the reactions of HPNP, GpU, and UpU, the catalytic efficiency depends very little on whether the substitution pattern is 1,2vicinal or 1,3 -distal. On the other hand, CpA turned out to be a good substrate for the Cull complex of the 1,2-vicinal catalyst and a bad substrate for the corresponding 1,3 -distal regioisomer, whereas the opposite holds for GpA. Extension of the investigation to the cleavage of the DNA model BNPP showed that both Znll and Cull complexes exhibit good catalytic efficiency, with a superiority of the 1,2-vicinal catalyst in both cases. The data reported in this work show that rate accelerations over background for the best catalyst substrate combinations at 0.5 mM catalyst concentration are 3.6 x 10(5)-fold for HPNP, 1.1 x 10(6) -fold for BNPP, and range from 1.3 X 106- to 1.3 X 10(7) -fold for diribonucleoside monophosphates.
机译:在RNA模型HPNP和四个双核糖核苷3'的酯基转移反应中,研究了人工磷酸二酯酶的催化活性,该酶结合了连接的金属离子(Cull,Znll)和通过1,2-邻域杯[4]芳烃间隔基连接的胍单元。 ,S'-单磷酸盐。与有关1,3-远程区域异构金属配合物的先前数据进行比较,证实了Cull配合物优于ZIP类似物,并表明在HPNP,GpU和UpU的反应中,催化效率几乎取决于取代度。模式是1,2vicinal或1,3 -distal。另一方面,事实证明,CpA是1,2-邻位催化剂的Cull络合物的良好底物,而对于相应的1,3-远端区域异构体则是不良的底物,而GpA则相反。将研究范围扩展到DNA模型BNPP的裂解表明,ZnII和Cull配合物均显示出良好的催化效率,在两种情况下均具有1,2-邻位催化剂的优越性。这项工作中报告的数据表明,在0.5 mM催化剂浓度下,最佳催化剂底物组合在背景上的速率加速为HPNP的3.6 x 10(5)倍,BNPP的1.1 x 10(6)倍,范围为1.3二核糖核苷单磷酸的X 106-至1.3 X 10(7)-倍。

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