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Highly Selective Activation of Heat Shock Protein 70 by Allosteric Regulation Provides an Insight into Efficient Neuroinflammation Inhibition

机译:通过变构调节对热休克蛋白70的高度选择性激活提供了有效抑制神经炎症的见解

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Heat shock protein 70 (Hsp70) is widely involved in immune disorders, making it as an attractive drug target for inflammation diseases. Nonselective induction of Hsp70 upregulation for inflammation therapy could cause extensive interference in inflammation-unrelated protein functions, potentially resulting in side effects. Nevertheless, direct pharmacological activation of Hsp70 via targeting specific functional amino acid residue may provide an insight into precise Hsp70 function regulation and a more satisfactory treatment effect for inflammation, which has not been extensively focused. Here we show a cysteine residue (Cys306) for selective Hsp70 activation using natural small-molecule handelin. Covalent modification of Cys306 significantly elevates Hsp70 activity and shows more satisfactory anti-neuroinflammation effects. Mechanism study reveals Cys306 modification by handelin induces an allosteric regulation to facilitate adenosine triphosphate hydrolysis capacity of Hsp70, which leads to the effective blockage of subsequent inflammation signaling pathway. Collectively, our study offers some insights into direct pharmacological activation of Hsp70 by specially targeting functional cysteine residue, thus providing a powerful tool for accurately modulating neuroinflammation pathogenesis in human with fewer undesirable adverse effects.
机译:热休克蛋白70(Hsp70)广泛参与免疫疾病,使其成为炎症疾病的诱人药物靶标。非选择性诱导Hsp70上调用于炎症治疗可能会引起与炎症无关的蛋白质功能的广泛干扰,从而可能产生副作用。然而,通过靶向特定的功能性氨基酸残基对Hsp70的直接药理活化可能提供对精确的Hsp70功能调节的了解以及对炎症的更令人满意的治疗效果,这尚未得到广泛关注。在这里,我们显示了使用天然小分子handelin选择性激活Hsp70的半胱氨酸残基(Cys306)。 Cys306的共价修饰可显着提高Hsp70活性,并显示出更令人满意的抗神经炎症作用。机制研究表明,Handelin对Cys306的修饰可诱导变构调节,从而促进Hsp70的三磷酸腺苷水解能力,从而有效阻断随后的炎症信号通路。总体而言,我们的研究通过专门针对功能性半胱氨酸残基为Hsp70的直接药理激活提供了一些见识,从而为准确调节人的神经炎症发病机理提供了强大的工具,而不良不良反应更少。

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