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First-principle studies of intermolecular and intramolecular catalysis of protonated cocaine

机译:质子化可卡因分子间和分子内催化的第一性原理研究

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摘要

We have performed a series of first-principles electronic structure calculations to examine the reaction pathways and the corresponding free energy barriers for the ester hydrolysis of protonated cocaine in its chair and boat conformations. The calculated free energy barriers for the benzoyl ester hydrolysis of protonated chair cocaine are close to the corresponding barriers calculated for the benzoyl ester hydrolysis of neutral cocaine. However, the free energy barrier calculated for the methyl ester hydrolysis of protonated cocaine in its chair conformation is significantly lower than for the methyl ester hydrolysis of neutral cocaine and for the dominant pathway of the benzoyl ester hydrolysis of protonated cocaine. The significant decrease of the free energy barrier, ~ 4 kcal/mol, is attributed to the intramolecular acid catalysis of the methyl ester hydrolysis of protonated cocaine, because the transition state structure is stabilized by the strong hydrogen bond between the carbonyl oxygen of the methyl ester moiety and the protonated tropane N. The relative magnitudes of the free energy barriers calculated for different pathways of the ester hydrolysis of protonated chair cocaine are consistent with the experimental kinetic data for cocaine hydrolysis under physiologic conditions. Similar intramolecular acid catalysis also occurs for the benzoyl ester hydrolysis of (protonated) boat cocaine in the physiologic condition, although the contribution of the intramolecular hydrogen bonding to transition state stabilization is negligible. Nonetheless, the predictability of the intramolecular hydrogen bonding could be useful in generating antibody-based catalysts that recruit cocaine to the boat conformation and an analog that elicited antibodies to approximate the protonated tropane N and the benzoyl O more closely than the natural boat conformer might increase the contribution from hydrogen bonding. Such a stable analog of the transition state for intramolecular catalysis of cocaine benzoyl-ester hydrolysis was synthesized and used to successfully elicit a number of anti-cocaine catalytic antibodies.
机译:我们已经进行了一系列的第一性原理电子结构计算,以检查反应路径和相应的自由能垒,用于质子化可卡因在其椅和船构象中的酯水解。质子化椅子可卡因的苯甲酸酯水解所计算出的自由能势垒与中性可卡因的苯甲酸酯水解所计算出的相应势垒接近。但是,计算的质子化构象的质子化可卡因甲酯水解的自由能垒显着低于中性可卡因的甲酯水解和质子化可卡因的苯甲酸酯水解的主要途径。自由能垒的显着降低(〜4 kcal / mol)归因于质子化可卡因甲酯水解的分子内催化,因为过渡态结构通过甲基的羰基氧之间的强氢键得以稳定质子化椅子可卡因酯水解的不同途径所计算出的自由能垒的相对大小与生理条件下可卡因水解的实验动力学数据一致。在生理条件下,对于(质子化)船用可卡因的苯甲酸酯水解,也发生类似的分子内酸催化,尽管分子内氢键对过渡态稳定的贡献可忽略不计。但是,分子内氢键的可预测性可能有助于产生基于抗体的催化剂,该催化剂将可卡因募集到船的构象中,并且类似物引发的抗体比天然船的构象者可能更接近质子化的托烷N和苯甲酰O。氢键的贡献。用于可卡因苯甲酰基酯水解的分子内催化的过渡态的这种稳定的类似物被合成并用于成功地引发许多抗可卡因催化抗体。

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