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Structural Basis for Reaction Mechanism and Drug Delivery System of Chromoprotein Antitumor Antibiotic C-1027 (BIOORGANIC CHEMISTRY-Bioactive Chemistry)

机译:色蛋白抗肿瘤抗生素C-1027(生物有机化学-生物活性化学)的反应机理和药物递送系统的结构基础

摘要

Antitumor antibiotic C-1027 that is regarded as a natural model of drug delivery system, consists of a carrier apoprotein (Apo) and an enediyne chromophore (Chr). We have compared three solution structures of the DNA-Chr complex, Apo-Chr complex, and free Chr determined by high-resolution NMR experiments. The guest molecule, C-1027 chromophore, showed two distinct binding modes fitted to binding sites of the hosts (target DNA and carrier Apo). The novel Chr interacts with DNA through its benzoxazolinate and aminosugar moieties, and also with Apo through the benzoxazolinate and macrocyclic moieties. The superposition of Chrs in these three states clearly revealed conformational deviation of the 16-membered macrocyclic moiety containing intra-chlorophenol ring. Ab initio calculations supported good correlation between the reactivity and the conformational alteration of Chr induced in hosts. The present results provide molecular basis and implication for the host-recognition mode, the reaction mechanism, and drug delivery system of chromoprotein C-1027.
机译:抗肿瘤抗生素C-1027被认为是药物递送系统的自然模型,由载脂蛋白(Apo)和烯二酮生色团(Chr)组成。我们比较了通过高分辨率NMR实验确定的DNA-Chr复合物,Apo-Chr复合物和游离Chr的三种溶液结构。客体分子C-1027生色团显示出两种适合宿主宿主结合位点的结合模式(靶DNA和载体Apo)。新型Chr通过其苯并恶唑啉酸酯和氨基糖部分与DNA相互作用,并且还通过苯并恶唑啉酸酯和大环部分与Apo相互作用。在这三种状态下,Chrs的叠加清楚地揭示了含有内氯酚环的16元大环部分的构象偏差。从头算计算支持在宿主中诱导的Chr的反应性与构象变化之间的良好相关性。本研究结果为色蛋白C-1027的宿主识别模式,反应机理和药物传递系统提供了分子基础和意义。

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