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新型大环多西他赛类似物的合成。其大环环大小对微管蛋白活性的影响。

Synthesis of novel macrocyclic docetaxel analogues. Influence of their macrocyclic ring size on tubulin activity.

作者信息

Querolle Olivier, Dubois Joëlle, Thoret Sylviane, Roussi Fanny, Montiel-Smith Sara, Guéritte Françoise, Guénard Daniel

机构信息

Institut de Chimie des Substances Naturelles, CNRS, Avenue de la Terrasse, 91198 Gif sur Yvette Cedex, France.

出版信息

J Med Chem. 2003 Aug 14;46(17):3623-30. doi: 10.1021/jm030770w.

Abstract

This work describes the synthesis of a series of novel macrocyclic taxoids 3 and 3(H) designed to mimic the docetaxel solid-state ("nonpolar") conformation. These compounds, bearing 18-, 20-, 21-, and 22-membered rings connecting the C-2 OH and C-3' NH moieties, were constructed by ring-closing olefin metathesis of the taxoid-omega,omega'-dienes 4. Biological evaluation of these new taxoids showed that activity is dependent on the ring size, and only the 22-membered ring taxoid 3d exhibits significant tubulin binding. Synthesis of the open-chain analogues 7 and 7(H) and comparison of their biological activities with macrocyclic taxoids show that the carbon tether between C-2 OH and C-3' NH does not hamper tubulin binding. Computational studies of the conformational behavior of the macrocyclic taxoids 3 indicate that the 18-, 20-, and 21-membered-ring 3a-c adopt mainly conformations that are not recognized by tubulin. The most active taxoid 3d appears to adopt a conformation that is between the "nonpolar" and T-shaped forms.

摘要

这项工作描述了一系列新型大环紫杉烷类化合物3和3(H)的合成,这些化合物旨在模拟多西他赛的固态(“非极性”)构象。这些化合物带有连接C-2羟基和C-3'氨基部分的18、20、21和22元环,通过紫杉烷-ω,ω'-二烯4的闭环烯烃复分解反应构建而成。对这些新型紫杉烷类化合物的生物学评估表明,活性取决于环的大小,只有22元环紫杉烷类化合物3d表现出显著的微管蛋白结合能力。开链类似物7和7(H)的合成以及它们与大环紫杉烷类化合物的生物活性比较表明,C-2羟基和C-3'氨基之间的碳链并不妨碍微管蛋白结合。对大环紫杉烷类化合物3的构象行为的计算研究表明,18、20和21元环的3a - c主要采取微管蛋白无法识别的构象。活性最高的紫杉烷类化合物3d似乎采取了一种介于“非极性”和T形之间的构象。

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