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首页> 外文期刊>Chemistry: A European journal >Zr~IV-tetraphenylporphyrinates as Nuclease Mimics: Structural, Kinetic and Mechanistic Studies on Phosphate Diester Transesterification
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Zr~IV-tetraphenylporphyrinates as Nuclease Mimics: Structural, Kinetic and Mechanistic Studies on Phosphate Diester Transesterification

机译:Zr〜IV-四苯基卟啉作为核酸酶模拟物:磷酸酯双酯交换的结构,动力学和机理研究

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摘要

The Zr~IV-tetraphenylporphyrinates Zr(TPP)(X,Xft), (X,Xft=-OAc, -OMe, Cl-) 4-6, 8 were prepared and their complexing properties as well as catalytic properties towards solvolysis of the phosphate diesters hpp (2), dmp (3) and pmp (16) characterised. The diesters 2 and 16, representing model phosphates for RNA and DNA, were substrates for the catalyst Zr(TPP)Cl_2 (4), and rate accelerations over background by 6-9 orders of magnitude were measured. These accelerations are comparable to those of dinuclear transition metal catralysts and lanthanide ions. Catalytic turnover was observed. Kinetic studies revealed that the catalytically active species of 4 in the solvolysis of 2 and 16 in methanolcontaining solvents are dinuclear complexes containing either one or two phosphate esters depending upon the phosphate ocncentration. Besides the usual solvolysis pathway of the RNA model hpp (2), which proceeds via the cyclophosphate 20, a second, unusual pathway via direct substitution of the hydroxypropyl substituent was found. X-ray analysis of the Zr(TPP)(dmp) complex 19 revealed a dinuclear structure with two bridging dmp ligands and one monomethyl phosphate unit. In 19 one of the two dmp residues occurs in a very unusual high energy ac, ap conformation. Based on this structure and on the kinetic data, mechanistic models for the two solvolysis reaction pathways were developed. From an extensive CSD search on phosphodiester structures no correlation between P-O ester bond lengths and diester conformations could be found. However, P-O ester bonds decrease in length with increasing formal charge of the complexing metal ions. This underlines the higher importance of electrostatic activation relative to stereoelectronic effects in phosphodiester hydrolysis.
机译:制备了Zr〜IV-四苯基卟啉Zr(TPP)(X,Xft),(X,Xft = -OAc,-OMe,Cl-)4-6、8,它们的络合性能以及对溶剂的溶剂分解催化性能表征了磷酸二酯hpp(2),dmp(3)和pmp(16)。代表RNA和DNA的模型磷酸盐的二酯2和16是催化剂Zr(TPP)Cl_2(4)的底物,并测量了在背景上的速率加速6-9个数量级。这些加速度与双核过渡金属催化剂和镧系元素离子的加速度相当。观察到催化转换。动力学研究表明,在含甲醇的溶剂中2和16的溶剂分解中4的催化活性物质是双核配合物,取决于磷酸盐的浓度,其中含有一种或两种磷酸酯。除了通过环磷酸酯20进行的RNA模型hpp(2)的常规溶剂分解途径外,还发现了通过羟丙基取代基的直接取代产生的第二种异常途径。 Zr(TPP)(dmp)配合物19的X射线分析显示具有两个桥接dmp配体和一个单甲基磷酸酯单元的双核结构。在19中,两个dmp残基之一以非常不寻常的高能量ac,ap构象出现。基于这种结构和动力学数据,建立了两种溶剂分解反应途径的机理模型。通过对磷酸二酯结构的广泛CSD研究,未发现P-O酯键长度与二酯构象之间的相关性。然而,P-O酯键的长度随着络合金属离子形式电荷的增加而减小。这强调了相对于磷酸二酯水解中的立体电子效应,静电活化具有更高的重要性。

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