首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Synthetic modeling of zinc thiolates: quantitative assessment of hydrogen bonding in modulating sulfur alkylation rates.
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Synthetic modeling of zinc thiolates: quantitative assessment of hydrogen bonding in modulating sulfur alkylation rates.

机译:硫醇锌的合成模型:调节硫烷基化速率中氢键的定量评估。

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摘要

A series of mononuclear zinc thiolate complexes have been prepared and fully characterized. The reactions of the complexes with alkyl halides, leading to zinc halides and the corresponding thioethers, have been examined by kinetic methods. In toluene, the reactions obey a second-order rate law displaying activation parameters consistent with a S(N)2 attack of the zinc-bound thiolate on the carbon electrophile. Intramolecular hydrogen bonding of an amide NH to the thiolate sulfur reduces the nucleophilicity and consequently, the rate of alkylation more than 30-fold at 25 degrees C. The H-bonding shows an inverse HD isotope effect of 0.33 (60 degrees C) ascribed to differential H-bonding for the two isotopomers due to zero point energy differences. These model studies provide quantitative evaluation of H-bonding on reaction rates relevant to zinc thiol-activating proteins.
机译:已经制备并充分表征了一系列单核硫氰酸锌配合物。已经通过动力学方法检查了配合物与烷基卤化物的反应,导致卤化锌和相应的硫醚。在甲苯中,反应遵循二级速率定律,该定律显示的活化参数与结合锌的硫醇盐对碳亲电试剂的S(N)2攻击一致。酰胺NH与硫醇盐硫的分子内氢键作用降低了亲核性,因此,在25°C时烷基化速率超过30倍。H键显示出0.33(60°C)的逆HD同位素效应由于零点能量差异,两个同位异构体的氢键不同。这些模型研究提供了与锌硫醇激活蛋白相关的反应速率上H键的定量评估。

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