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首页> 外文期刊>Molecular & cellular proteomics: MCP >A Quantitative Chemical Proteomics Approach to Profile the Specific Cellular Targets of Andrographolide, a Promising Anticancer Agent That Suppresses Tumor Metastasis
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A Quantitative Chemical Proteomics Approach to Profile the Specific Cellular Targets of Andrographolide, a Promising Anticancer Agent That Suppresses Tumor Metastasis

机译:定量化学蛋白质组学方法可分析穿心莲内酯的特定细胞靶标,穿心莲内酯是一种有希望的抗肿瘤药物,可抑制肿瘤转移。

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摘要

Drug target identification is a critical step toward understanding the mechanism of action of a drug, which can help one improve the drug's current therapeutic regime and expand the drug's therapeutic potential. However, current in vitro affinity-chromatography-based and in vivo activity-based protein profiling approaches generally face difficulties in discriminating specific drug targets from nonspecific ones. Here we describe a novel approach combining isobaric tags for relative and absolute quanti-tation with clickable activity-based protein profiling to specifically and comprehensively identify the protein targets of andrographolide (Andro), a natural product with known anti-inflammation and anti-cancer effects, in live cancer cells. We identified a spectrum of specific targets of Andro, which furthered our understanding of the mechanism of action of the drug. Our findings, validated through cell migration and invasion assays, showed that Andro has a potential novel application as a tumor metastasis inhibitor. Moreover, we have unveiled the target binding mechanism of Andro with a combination of drug analog synthesis, protein engineering, and mass-spec-trometry-based approaches and determined the drug-binding sites of two protein targets, NF-kappaB and actin.
机译:药物靶标识别是迈向了解药物作用机制的关键一步,可以帮助人们改善药物的当前治疗方案并扩大药物的治疗潜力。但是,当前的基于体外亲和层析和基于体内活性的蛋白质谱分析方法通常在区分特定药物靶标和非特定药物靶标方面面临困难。在这里,我们描述了一种新颖的方法,该方法结合了等压变量的相对和绝对定量以及可点击的基于活性的蛋白质谱分析,以特异性和全面地鉴定穿心莲内酯(Andro)的蛋白质靶标,穿心莲内酯(Andro)是一种具有已知抗炎和抗癌作用的天然产物,在活癌细胞中。我们确定了Andro的一系列特定目标,这进一步加深了我们对该药物作用机理的了解。通过细胞迁移和侵袭试验验证了我们的发现,结果表明Andro作为肿瘤转移抑制剂具有潜在的新型应用。此外,我们还结合了药物类似物合成,蛋白质工程和基于质谱的方法,揭示了Andro的靶结合机理,并确定了NF-κB和肌动蛋白这两个蛋白质靶的结合位点。

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