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使用生物正交功能化儿茶酚胺对多巴胺代谢物修饰的细胞靶标进行蛋白质组范围的分析。

Proteome-Wide Profiling of Cellular Targets Modified by Dopamine Metabolites Using a Bio-Orthogonally Functionalized Catecholamine.

机构信息

Department of Medicinal Chemistry, University of Minnesota, Minneapolis, Minnesota 55455, United States.

Masonic Cancer Center, University of Minnesota, Minneapolis, Minnesota 55455, United States.

出版信息

ACS Chem Biol. 2021 Nov 19;16(11):2581-2594. doi: 10.1021/acschembio.1c00629. Epub 2021 Nov 2.

Abstract

Selective death of midbrain dopaminergic neurons is a hallmark pathology of Parkinson's disease (PD), but the molecular mechanisms that initiate the cascade of events resulting in neurodegeneration in PD remain unclear. Compelling evidence suggests that dysregulation of dopamine (DA) induces neuronal stress and damage responses that are operative processes in striatal degeneration preceding PD-like symptoms. Improper DA sequestration to vesicles raises cytosolic DA levels, which is rapidly converted into electrophilic dopaquinone species (DQs) that react readily with protein nucleophiles forming covalent modifications that alter the native structure and function of proteins. These so-called DA-protein adducts (DPAs) have been reported to play a role in neurotoxicity, and their abundance with respect to neurodegeneration has been linked to clinical and pathological features of PD that suggest that they play a causal role in PD pathogenesis. Therefore, characterizing DPAs is a critical first step in understanding the susceptibility of midbrain dopaminergic neurons during PD. To help achieve this goal, we report here a novel DA-mimetic (DA) containing a biorthogonal alkyne handle that exhibits a reactivity profile similar to DA in aqueous buffers. By linking DPAs formed with DA to a fluorescent reporter molecule, DPAs were visualized in fixed cells and within lysates. DA enabled global mapping of cellular proteins affected by DQ modification and their bioactive pathways through enrichment. Our proteomic profiling of DPAs in neuronal SH-SY5Y cells indicates that proteins susceptible to DPA formation are extant throughout the proteome, potentially influencing several diverse biological pathways involved in PD such as endoplasmic reticulum (ER) stress, cytoskeletal instability, proteotoxicity, and clathrin function. We validated that a protein involved in the ER stress pathway, protein disulfide isomerase 3 (PDIA3), which was enriched in our chemoproteomic analysis, is functionally inhibited by DA, providing evidence that dysregulated cellular DA may induce or exacerbate ER stress. Thus, DA provided new mechanistic insights into DA toxicity that may be observed during PD by enabling characterization of DPAs generated reproducibly at physiologically relevant quinone exposures. We anticipate our design and application of this reactivity-based probe will be generally applicable for clarifying mechanisms of metabolic quinone toxicity.

摘要

中脑多巴胺能神经元的选择性死亡是帕金森病 (PD) 的标志病理学特征,但导致 PD 神经退行性变的级联事件的分子机制仍不清楚。有强有力的证据表明,多巴胺 (DA) 的失调会诱导神经元应激和损伤反应,这些反应是 PD 样症状前纹状体变性的操作过程。囊泡中 DA 的不当隔离会提高细胞溶质 DA 水平,而 DA 会迅速转化为亲电多巴醌 (DQ) 物质,这些物质很容易与蛋白亲核物反应,形成改变蛋白天然结构和功能的共价修饰。这些所谓的 DA-蛋白加合物 (DPA) 已被报道在神经毒性中起作用,其与神经退行性变的丰度与 PD 的临床和病理特征有关,表明它们在 PD 发病机制中起因果作用。因此,表征 DPA 是理解 PD 期间中脑多巴胺能神经元易感性的关键第一步。为了帮助实现这一目标,我们在这里报告了一种新型的含有生物正交炔烃手柄的 DA 类似物 (DA),它在水性缓冲液中表现出与 DA 相似的反应性。通过将与 DA 形成的 DPA 与荧光报告分子连接起来,可以在固定细胞和裂解物中观察到 DPA。DA 使通过 DQ 修饰影响的细胞蛋白及其生物活性途径通过富集进行全局映射。我们对神经元 SH-SY5Y 细胞中 DPA 的蛋白质组学分析表明,易受 DPA 形成影响的蛋白质存在于整个蛋白质组中,可能会影响 PD 中涉及的几种不同的生物途径,如内质网 (ER) 应激、细胞骨架不稳定、蛋白毒性和网格蛋白功能。我们验证了我们的化学蛋白质组学分析中富集的 ER 应激途径中的一种蛋白质,即蛋白质二硫键异构酶 3 (PDIA3),被 DA 功能性抑制,这提供了证据表明,细胞内 DA 的失调可能会诱导或加剧 ER 应激。因此,DA 通过使在生理相关醌暴露下可重复性产生的 DPA 得到表征,为 DA 毒性提供了新的机制见解,这些机制可能在 PD 中观察到。我们预计,我们对这种基于反应性的探针的设计和应用将普遍适用于阐明代谢性醌毒性的机制。

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