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Quantitative Modeling of Bis(pyridine)silver (I) Permanganate Oxidation of Hydantoin Derivatives: Guidelines for Predicting the Site of Oxidation in Complex Substrates

机译:乙内酰脲衍生物的双(吡啶)银(I)高锰酸盐氧化的定量建模:预测复杂基质中氧化部位的指南

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摘要

The bis(pyridine)silver (I) permanganate promoted hydroxylation of diketopiperazines has served as a pivotal transformation in the synthesis of complex epipolythiodiketopiperazine alkaloids. This late-stage C–H oxidation chemistry is strategically critical to access N-acyl iminium ion intermediates necessary for nucleophilic thiolation of advanced diketopiperazines en route to potent epipolythiodiketopiperazine anticancer compounds. In this study, we develop an informative mathematical model using hydantoin derivatives as a training set of substrates by relating the relative rates of oxidation to various calculated molecular descriptors. The model prioritizes Hammett values and percent buried volume as key contributing factors in the hydantoin series while correctly predicting the experimentally observed oxidation sites in various complex diketopiperazine case studies. Thus, a method is presented by which to use simplified training molecules and resulting correlations to explain and predict reaction behavior for more complex substrates.
机译:双(吡啶)银(I)高锰酸盐促进的二酮哌嗪的羟基化作用已成为复杂表聚硫代二酮哌嗪生物碱的合成中的关键转化。这种后期的C–H氧化化学对获取高级二酮哌嗪类药物进行亲核硫醇化反应所必需的N-酰基亚氨酸离子中间体具有重要的战略意义。在这项研究中,我们通过将相对氧化速率与各种计算出的分子描述符相关联,使用乙内酰脲衍生物作为底物的训练集,开发了一种信息丰富的数学模型。该模型优先考虑哈米特值和掩埋体积百分比作为乙内酰脲系列中的关键因素,同时正确预测各种复杂的二酮哌嗪案例研究中实验观察到的氧化位点。因此,提出了一种方法,通过该方法可以使用简化的训练分子及其相关性来解释和预测更复杂底物的反应行为。

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