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Total Synthesis and Evaluation of Vinblastine Analogues Containing Systematic Deep-Seated Modifications in the Vindoline Subunit Ring System: Core Redesign

机译:全合成和长春花碱类似物包含在一级侧枝亚基环系统系统深层次的改变进行评价:核心重新设计

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摘要

The total synthesis of a systematic series of vinblastine analogues that contain deep-seated structural modifications to the core ring system of the lower vindoline subunit is described. Complementary to the vindoline 6,5 DE ring system, compounds with 5,5, 6,6 and the reversed 5,6 membered DE ring systems were prepared. Both the natural cis and unnatural trans 6,6-membered ring systems proved accessible, with the latter representing a surprisingly effective class for analogue design. Following Fe(III)-promoted coupling with catharanthine and in situ oxidation to provide the corresponding vinblastine analogues, their evaluation provided unanticipated insights into how the structure of the vindoline subunit contributes to activity. Two potent analogues (>81 and >44) possessing two different unprecedented modifications to the vindoline subunit core architecture were discovered that matched the potency of the comparison natural products and both lack the 6,7-double bond whose removal in vinblastine leads to a 100-fold drop in activity.
机译:描述了系统化的长春碱类似物系列的全合成,其中包含对下长春藤碱亚基核心环系统的深层次结构修饰。与长春花碱6,5 DE环系统互补,制备了具有5,5,6,6和反向5,6元DE环系统的化合物。天然的顺式和非天然的反式6,6-元环系统都证明是可及的,后者代表了令人惊讶的有效类比设计。在Fe(III)促进与catharanthine偶联并原位氧化以提供相应的长春碱类似物之后,他们的评估为长春藤碱亚基的结构如何促进活性提供了意想不到的见识。发现了两种对长春花碱亚单位核心结构具有两个不同的,前所未有的修饰的强效类似物(> 81 和> 44 ),它们与比较天然产物的效力相匹配,并且都缺乏6, 7-双键,在长春碱中的去除导致活性降低100倍。

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