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Strategies for the Syntheses of Pactamycin and Jogyamycin

机译:帕豆霉素和Jogyamycin合成的策略

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摘要

Pactamycin and jogyamycin are aminocyclopentitol natural products, where each core carbon bears a stereodefined alcohol or amine moiety. Their structural complexity, coupled with the diversity of functional groups coexisting in a condensed space, make them fascinating synthetic targets in their own right. Pactamycin and its derivatives bind to the 30S ribosomal subunit and display activity against parasites responsible for drug-resistant malaria and African sleeping sickness; however, efforts to develop their therapeutic potential have been hampered by their cellular toxicity. Interestingly, bioengineered analogues display differences in selectivity and toxicity towards mammalian cells, spurring efforts to develop flexible strategies to thoroughly probe structure-activity relationships (SAR), particularly in analogues lacking the C7 hydroxyl group of pactamycin. This review compares and contrasts approaches towards pactamycin and jogyamycin, including two successful total syntheses of the former. The implications of each route for preparing analogues to inform SAR and lead to compounds with increased selectivity for binding malarial over human ribosomes are briefly discussed.
机译:帕塔霉素和乔亚霉素是氨基环戊醇的天然产物,其中每个核心碳都含有一个立体定义的醇或胺部分。它们的结构复杂,再加上在一个浓缩空间中共存的官能团多样性,使它们本身成为迷人的合成目标。帕塔霉素及其衍生物与30S核糖体亚单位结合,并对引起耐药性疟疾和非洲昏睡病的寄生虫表现出活性;然而,它们的细胞毒性阻碍了开发其治疗潜力的努力。有趣的是,生物工程类似物在对哺乳动物细胞的选择性和毒性方面表现出差异,促使人们努力开发灵活的策略来彻底探索结构-活性关系(SAR),尤其是在缺乏帕塔霉素C7羟基的类似物中。本综述比较了帕塔霉素和乔亚霉素的合成方法,包括两种成功的全合成方法。简要讨论了每一种制备类似物的方法对合成孔径雷达的影响,以及导致化合物选择性增加,从而与人类核糖体结合的问题。

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