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Ab initio conformational study of the phenylisoserine side chain of paclitaxel.

机译:紫杉醇苯异丝氨酸侧链的从头构象研究。

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摘要

Paclitaxel (Taxol) and related compounds are important antitumor drugs, currently used for the treatment of several types of cancer. The flexible amino acidic C13 side chain is a key element of the taxoid pharmacophore, and the identification of the bioactive conformation is a top priority for a better understanding of the mode of action of these anticancer agents. The conformational features of the side chain have been investigated by Hartree-Fock ab initio and semiempirical PM3 calculations. To gain a better understanding of solvent effects, different molecular models of paclitaxel were used in the calculations. The gas-phase calculations confirm that only one conformation, named ch1 (very similar to the one found in the crystal structure of docetaxel), is present in apolar environments. The preference for this conformer has been rationalized in terms of its L shape, which minimizes steric and Coulombic interactions, and of a favorable arrangement of the glycolate moiety. When a polar solvent was simulated by different methods, a greater conformational variability was found, with different conformations differing by less than 1.5 kcal/mol. Among these conformations, only one (ch5', similar to molecule B of the crystal structure of paclitaxel) is particularly apt to interact with solvent molecules. In light of these data, it seems reasonable to assume that, when the drug is bound to the lipophilic pocket of the tubuline receptor, the C13 amino acidic side chain assumes a conformation close to ch1.
机译:紫杉醇(Taxol)和相关化合物是重要的抗肿瘤药物,目前用于治疗多种类型的癌症。柔性氨基酸C13侧链是紫杉类药效团的关键要素,生物活性构象的鉴定是更好地了解这些抗癌剂作用方式的重中之重。 Hartree-Fock从头算和半经验PM3计算研究了侧链的构象特征。为了更好地理解溶剂效应,在计算中使用了不同的紫杉醇分子模型。气相计算证实,在非极性环境中仅存在一种命名为ch1的构型(非常类似于多西他赛晶体结构中发现的构型)。就其构象异构体而言,就其L形(使空间和库仑相互作用最小化)和乙醇酸部分的有利排列而言,已经成为合理的选择。当通过不同方法模拟极性溶剂时,发现更大的构象变异性,不同的构象相差小于1.5 kcal / mol。在这些构象中,只有一个(ch5',类似于紫杉醇的晶体结构的分子B)特别易于与溶剂分子相互作用。根据这些数据,可以合理地假设,当药物与微管蛋白受体的亲脂性口袋结合时,C13氨基酸侧链的构象接近ch1。

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