首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Hydrolysis of 4-nitrophenyl acetate by a (N2S(thiolate))zinc hydroxide complex: A model of the catalytically active intermediate for the zinc form of peptide deformylase
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Hydrolysis of 4-nitrophenyl acetate by a (N2S(thiolate))zinc hydroxide complex: A model of the catalytically active intermediate for the zinc form of peptide deformylase

机译:(N2S(硫醇盐))氢氧化锌络合物水解乙酸4-硝基苯酯:肽去甲酰基酶锌形式催化活性中间体的模型

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A novel zinc(II) hydroxide complex with a rare alkylthiolate donor in the coordination sphere is formed in aqueous solution from the dissolution of the zinc alkyl precursor complex (PATH)ZnCH3 (PATH = 2-methyl-1-[methyl(2-pyridin-2-ylethyl)amino]propane-2-thiolate) in H2O and protonolysis of the Zn-C bond to give (PATH)ZnOH (1). The (PATH)ZnOH complex has been shown to promote the hydrolysis of 4-nitrophenyl acetate (4-NA) by a detailed kinetic study and is the first functional model for the zinc form of the enzyme peptide deformylase. From a fit of the sigmoidal pH-rate profile a kinetic pK(a) of 8.05(5) and a pH-independent second-order rate constant (k"(max)) of 0.089(3) M-1 s(-1) have been obtained. The kinetic pK(a) is similar to the pK(a) of 7.7(1) determined by a potentiometric study (25 degreesC, I = 0.1 (NaNO3)). Observation of both rate enhancement and turnover shows that 1 acts as a catalyst for the hydrolysis of 4-NA, although the turnovers are modest. Activation parameters have been obtained from a temperature-dependence study of the rate constants (E-a = 54.8 kJ mol(-1), DeltaH(double dagger) = 52.4 kJ mol(-1), and DeltaS(double dagger) = -90.0 J mol(-1) K-1), and support a reaction mechanism which depends on nucleophilic attack of 1 in the rate-determining step. This is the first kinetic and thermodynamic study of a 4-coordinate zinc hydroxide complex containing a thiolate donor. In addition it is only the second time that a complete set of activation parameters have been obtained for the zinc-promoted hydrolysis of a carboxylic ester. This study puts the basicity and nucleophilicity of a (N2S)ZnOH complex in context with those of other LnZnOH complexes and enzymes. [References: 73]
机译:通过溶解烷基锌前体络合物(PATH)ZnCH3(PATH = 2-methyl-1- [methyl(2-pyridin)],在水溶液中形成一种新型的氢氧化锌(II)配合物,该配合物在配位球中具有稀有的烷基硫醇盐供体。 (2-基乙基)氨基]丙烷-2-硫醇盐)中的Zn-C键质子分解,得到(PATH)ZnOH(1)。 (PATH)ZnOH配合物已通过详细的动力学研究显示出可促进乙酸4-硝基苯酯(4-NA)的水解,并且是锌形式的酶肽去甲酰基酶的第一个功能模型。根据S形pH速率曲线的拟合,动力学pK(a)为8.05(5),pH无关的二级速率常数(k“(max))为0.089(3)M-1 s(-1)动力学pK(a)与电位计研究(25摄氏度,I = 0.1(NaNO3))测定的7.7(1)的pK(a)相似。 1可以作为4-NA水解的催化剂,尽管周转率不高,活化参数已从速率常数的温度依赖性研究中获得(Ea = 54.8 kJ mol(-1),DeltaH(双匕首)) = 52.4 kJ mol(-1),而DeltaS(双匕首)= -90.0 J mol(-1)K-1),并在速率确定步骤中支持依赖于1的亲核攻击的反应机理。含硫醇盐供体的四配位氢氧化锌配合物的第一次动力学和热力学研究,此外,这是第二次获得了促进锌促进的完整活化参数的集羧酸酯的水解。这项研究将(N2S)ZnOH配合物的碱性和亲核性与其他LnZnOH配合物和酶的碱性和亲核性结合在一起。 [参考:73]

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