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Natural products triptolide, celastrol, and withaferin A inhibit the chaperone activity of peroxiredoxin i

机译:天然产物雷公藤内酯醇,celastrol和withaferin a抑制peroxiredoxin的分子伴侣活性

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摘要

Peroxiredoxin I (Prx I) plays an important role in cancer development and inflammation. It is a dual-functional protein which acts as both an antioxidant enzyme and a molecular chaperone. While there have been intensive studies on its peroxidase activity, Prx I's chaperone activity remains elusive, likely due to the lack of chaperone inhibitors. Here we report that natural product triptolide selectively inhibits the chaperone activity of Prx I, but not its peroxidase activity. Through direct interaction with corresponding cysteines, triptolide triggers dissociation of high-molecular-weight oligomers of Prx I, and thereby inhibits its chaperone activity in a dose-dependent manner. We have also identified celastrol and withaferin A as novel Prx I chaperone inhibitors that are even more potent than triptolide in the chaperone activity assay. By revealing the exact molecular mechanisms of interaction and inhibition, the current study provides the first Prx I chaperone inhibitors as promising pharmacological tools for modulating and dissecting the chaperone function of Prx I.
机译:Peroxiredoxin I(Prx I)在癌症发展和炎症中起重要作用。它是一种双重功能的蛋白质,既可以充当抗氧化酶,又可以充当分子伴侣。尽管已经对其过氧化物酶活性进行了深入研究,但由于缺乏伴侣抑制剂,Prx I的伴侣活性仍然难以捉摸。在这里我们报告天然产物雷公藤甲素选择性地抑制Prx I的伴侣活性,但不抑制其过氧化物酶活性。通过与相应的半胱氨酸直接相互作用,雷公藤内酯醇可引发Prx I的高分子量低聚物解离,从而以剂量依赖的方式抑制其伴侣分子活性。我们还确定了Celastrol和Withaferin A是新型的Prx I伴侣抑制剂,在伴侣活性测定中比雷公藤内酯醇更有效。通过揭示相互作用和抑制的确切分子机制,当前的研究提供了第一个Prx I伴侣抑制剂,作为有希望的药理学工具,用于调节和解剖Prx I的伴侣功能。

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