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Relationships between the structures of taxol and baccatine III derivatives and their in vitro action on the disassembly of mammalian brain and Physarum amoebal microtubules.

机译:紫杉醇和baccatine III衍生物的结构之间的关系及其对哺乳动物脑和Physarum变形虫微管的拆卸的体外作用。

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摘要

The in vitro disassembly of microtubules from mammalian brain and Physarum is inhibited by various derivatives of taxol and baccatine III. Structure-activity relationships of the taxol derivatives were identical for both mammalian brain and Physarum microtubules. This observation suggests that the site of action of taxol has been preserved during the evolution of these two different eukaryotic lines. The substituent at C-13 of taxol was required to prevent disassembly of brain microtubules with or without microtubule-associated proteins. In contrast, both taxol and baccatine III prevented the disassembly of Physarum microtubules to the same extent, showing that the substituent at C-13 was not required in the interaction with Physarum tubulin. The different effects of baccatine III and taxol derivatives indicate that measuring the disassembly of microtubules from different organisms could be a useful parameter in the search for derivatives exhibiting antiparasitic activity.
机译:紫杉醇和baccatine III的各种衍生物抑制了体外从哺乳动物脑和Physarum拆卸微管。紫杉醇衍生物的结构-活性关系对于哺乳动物脑和Physarum微管是相同的。该观察结果表明,在这两种不同的真核细胞系的进化过程中,紫杉醇的作用部位得以保留。需要紫杉醇的C-13处的取代基来防止具有或不具有微管相关蛋白的脑微管的分解。相反,紫杉醇和baccatine III都在相同程度上阻止了a微管的分解,这表明与with微管蛋白的相互作用不需要C-13处的取代基。 baccatine III和紫杉醇衍生物的不同作用表明,测量来自不同生物体的微管的分解可能是寻找具有抗寄生虫活性的衍生物的有用参数。

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