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Design of Disruptors of the Hsp90–Cdc37 Interface

机译:Hsp90–Cdc37接口的干扰器设计

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摘要

The molecular chaperone Hsp90 is a ubiquitous ATPase-directed protein responsible for the activation and structural stabilization of a large clientele of proteins. As such, Hsp90 has emerged as a suitable candidate for the treatment of a diverse set of diseases, such as cancer and neurodegeneration. The inhibition of the chaperone through ATP-competitive inhibitors, however, was shown to lead to undesirable side effects. One strategy to alleviate this problem is the development of molecules that are able to disrupt specific protein–protein interactions, thus modulating the activity of Hsp90 only in the particular cellular pathway that needs to be targeted. Here, we exploit novel computational and theoretical approaches to design a set of peptides that are able to bind Hsp90 and compete for its interaction with the co-chaperone Cdc37, which is found to be responsible for the promotion of cancer cell proliferation. In spite of their capability to disrupt the Hsp90–Cdc37 interaction, no important cytotoxicity was observed in human cancer cells exposed to designed compounds. These findings imply the need for further optimization of the compounds, which may lead to new ways of interfering with the Hsp90 mechanisms that are important for tumour growth.
机译:分子伴侣蛋白Hsp90是一种普遍存在的ATPase定向蛋白,负责大分子蛋白质的活化和结构稳定。因此,Hsp90已成为治疗多种疾病(例如癌症和神经退行性疾病)的合适候选药物。然而,显示出通过ATP竞争性抑制剂抑制伴侣蛋白会导致不良的副作用。缓解此问题的一种策略是开发能够破坏特定蛋白质间相互作用的分子,从而仅在需要靶向的特定细胞途径中调节Hsp90的活性。在这里,我们利用新颖的计算和理论方法设计了一组肽,这些肽能够结合Hsp90并竞争其与伴侣蛋白Cdc37的相互作用,而后者被发现负责促进癌细胞的增殖。尽管它们具有破坏Hsp90-Cdc37相互作用的能力,但在暴露于设计化合物的人类癌细胞中未观察到重要的细胞毒性。这些发现暗示需要进一步优化化合物,这可能导致干扰对肿瘤生长重要的Hsp90机制的新方法。

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