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Total synthesis of griseusins and elucidation of the griseusin mechanism of action

机译:灰黄素的全合成及灰黄素作用机理的阐明

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摘要

A divergent modular strategy for the enantioselective total synthesis of 12 naturally-occurring griseusin type pyranonaphthoquinones and 8 structurally-similar analogues is described. Key synthetic highlights include Cu-catalyzed enantioselective boration–hydroxylation and hydroxyl-directed C–H olefination to afford the central pharmacophore followed by epoxidation–cyclization and maturation via diastereoselective reduction and regioselective acetylation. Structural revision of griseusin D and absolute structural assignment of 2 a ,8 a -epoxy- epi -4′-deacetyl griseusin B are also reported. Subsequent mechanistic studies establish, for the first time, griseusins as potent inhibitors of peroxiredoxin 1 (Prx1) and glutaredoxin 3 (Grx3). Biological evaluation, including comparative cancer cell line cytotoxicity and axolotl embryo tail inhibition studies, highlights the potential of griseusins as potent molecular probes and/or early stage leads in cancer and regenerative biology.
机译:描述了对映选择性全合成12种天然存在的灰黄霉素型吡喃萘甲醌和8种结构相似的类似物的不同模块化策略。关键的合成亮点包括Cu催化的对映选择性硼酸化-羟基化和羟基指导的C H烯化,以提供中心药效团,然后通过非对映选择性还原和区域选择性乙酰化进行环氧化-环化和成熟。还报道了灰绿素D的结构修饰和2 a,8 a-环氧-epi -4'-脱乙酰灰黄素B的绝对结构分配。随后的机理研究首次建立了灰黄素作为过氧化物酶1(Prx1)和谷胱甘肽3(Grx3)的有效抑制剂。生物学评估,包括比较性癌细胞系的细胞毒性和阿索洛特尔胚胎尾巴抑制研究,凸显出灰黄霉素作为潜在的分子探针和/或癌症和再生生物学的早期线索的潜力。

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