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Enzyme Inhibition by Hydroamination: Design and Mechanism of a Hybrid Carmaphycin-Syringolin Enone Proteasome Inhibitor

机译:通过水胺化抑制酶:卡马霉素-紫丁香酚烯酮的混合蛋白酶体抑制剂的设计与机理

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摘要

Hydroamination reactions involving the addition of an amine to an inactivated alkene are entropically prohibited and require strong chemical catalysts. While this synthetic process is efficient at generating substituted amines, there is no equivalent in small molecule-mediated enzyme inhibition. We report an unusual mechanism of proteasome inhibition that involves a hydroamination reaction of alkene derivatives of the epoxyketone natural product carmaphycin. We show that the carmaphycin enone first forms a hemiketal intermediate with the catalytic Thr1 residue of the proteasome before cyclization by an unanticipated intramolecular alkene hydroamination reaction, resulting in a stable six-memberedmorpholine ring. The carmaphycin enone electrophile, which does not undergo a 1,4-Michael addition as previously observed with vinyl sulfone and a,b-unsaturated amide-based inhibitors, is partially reversible and gives insight into the design of proteasome inhibitors for cancer chemotherapy.
机译:熵地禁止涉及将胺加成至灭活的烯烃的加氢胺化反应,并且需要强的化学催化剂。尽管该合成方法可有效生成取代的胺,但在小分子介导的酶抑制方面没有等效的方法。我们报告了蛋白酶体抑制的不寻常的机制,涉及环氧酮天然产物卡麦霉素的烯烃衍生物的氢化胺化反应。我们表明,卡马霉素烯酮首先与蛋白酶体的催化Thr1残基形成半缩酮中间体,然后通过意外的分子内烯烃加氢胺化反应而环化,形成稳定的六元吗啉环。卡玛霉素烯酮亲电子试剂不像以前在乙烯基砜和基于a,b-不饱和酰胺的抑制剂中观察到的1,4-Michael加成反应,部分可逆,可以深入了解用于癌症化疗的蛋白酶体抑制剂的设计。

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