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Catalytic photooxygenation degrades brain Aβ in vivo

机译:催化光氧基在体内降解脑Aβ

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Protein degradation induced by small molecules by recruiting endogenous protein degradation systems, such as ubiquitin-proteasome systems, to disease-related proteins is an emerging concept to inhibit the function of undruggable proteins. Protein targets without reliable ligands and/or existing outside the cells where ubiquitin-proteasome systems do not exist, however, are beyond the scope of currently available protein degradation strategies. Here, we disclose photooxygenation catalyst 7 that permeates the blood-brain barrier and selectively and directly degrades an extracellular Alzheimer’s disease–related undruggable protein, amyloid-β protein (Aβ). Key was the identification of a compact but orange color visible light–activatable chemical catalyst whose activity can be switched on/off according to its molecular mobility, thereby ensuring high selectivity for aggregated Aβ. Chemical catalyst–promoted protein degradation can be applied universally for attenuating extracellular amyloids and various pathogenic proteins and is thus a new entry to induced protein degradation strategies.
机译:通过募集与患有泛素 - 蛋白酶体系的内源蛋白质降解系统(例如泛素 - 蛋白酶体系)诱导的小分子诱导的蛋白质降解是疾病相关的蛋白质是抑制不可驾湿蛋白的功能的新兴概念。然而,不具有可靠配体的蛋白质靶标和/或存在于泛素 - 蛋白酶体系的细胞外,不存在于目前可用蛋白质降解策略的范围之外。在此,我们公开了光氧基催化剂7,其渗透血脑屏障并选择性地直接降解细胞外阿尔茨海默病有关的不可驾驶的不可审蛋白淀粉样蛋白-β蛋白(Aβ)。键是鉴定紧凑而且橙色可见光可见的化学催化剂,其活性可以根据其分子迁移率接通/断开,从而确保聚集Aβ的高选择性。化学催化剂促进的蛋白质降解可以普遍应用用于衰减细胞外淀粉样蛋白和各种致病蛋白,因此是诱导蛋白质降解策略的新进入。

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