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Facile Orthoester Formation In a Model Compound of the Taxol Oxetane:Are Biologically Active Epoxy Esters,Orthoesters,and Oxetanyl Esters Latent Electrophiles?

机译:紫杉醇氧杂环丁烷模型化合物中的简便原酸酯形成:生物活性环氧酯,原酸酯和氧杂环丁烷基酯是否具有潜在的亲电试剂?

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摘要

A steroidal oxetanyl ester was synthesized in eight steps as biomimetic model of taxol oxetane.The model compound was surprisingly reactive under acidic conditions,rearranging in the absence of H_2O to a [2.2.1]-bicylic orthoseter.Both the oxetanyl ester and the orthoseter readily hydrolyze to produce the same triol monoacetate.On the basis of the oxctanyl ester/orthoester rearrangement,a novel biochemical function is suggested for the epoxy esters and oxetanyl csters found in taxoids whereby dioxonium ions,generated from these functional groups,teact with cellular proteins to form mixed orthoesters or ethers.A similar process could be involved in the mechanism of action of natural orthosesters such as resiniferatoxin.
机译:作为紫杉醇氧杂环丁烷的仿生模型,通过八个步骤合成了甾体氧杂环丁烷酸酯。该模型化合物在酸性条件下具有令人惊讶的反应活性,在不存在H_2O的情况下重新排列为[2.2.1]-二元邻苯二甲酸酯。氧杂环丁烷酸酯和邻苯二甲酸酯容易水解产生相同的三醇单乙酸酯。基于氧辛酸酯/原酸酯的重排,提出了一种新的生化功能,用于紫杉醇中的环氧酯和氧杂环丁烷基酯,从而由这些官能团生成的二氧di离子与细胞蛋白相互作用形成混合的原酸酯或醚。类似的过程可能涉及天然原酸酯(例如树脂毒素)的作用机理。

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