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Gambogic acid and gambogenic acid induce a thiol-dependent heat shock response and disrupt the interaction between HSP90 and HSF1 or HSF2

机译:甘伐酸和冈比特酸诱导硫醇依赖性热休克响应并破坏HSP90和HSF1或HSF2之间的相互作用

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Cancer cells rely on heat shock proteins (HSPs) for growth and survival. Especially HSP90 has multiple client proteins and plays a critical role in malignant transformation, and therefore different types of HSP90 inhibitors are being developed. The bioactive natural compound gambogic acid (GB) is a prenylated xanthone with antitumor activity, and it has been proposed to function as an HSP90 inhibitor. However, there are contradicting reports whether GB induces a heat shock response (HSR), which is cytoprotective for cancer cells and therefore a potentially problematic feature for an anticancer drug. In this study, we show that GB and a structurally related compound, called gambogenic acid (GBA), induce a robust HSR, in a thiol-dependent manner. Using heat shock factor 1 ( HSF1 ) or HSF2 knockout cells, we show that the GB or GBA-induced HSR is HSF1-dependent. Intriguingly, using closed form ATP-bound HSP90 mutants that can be co-precipitated with HSF1, a known facilitator of cancer, we show that also endogenous HSF2 co-precipitates with HSP90. GB and GBA treatment disrupt the interaction between HSP90 and HSF1 and HSP90 and HSF2. Our study implies that these compounds should be used cautiously if developed for cancer therapies, since GB and its derivative GBA are strong inducers of the HSR, in multiple cell types, by involving the dissociation of a HSP90-HSF1/HSF2 complex.
机译:癌细胞依赖于热休克蛋白(HSP)的生长和存活。特别是HSP90具有多种客户蛋白质,并在恶性转化中发挥关键作用,因此正在开发不同类型的HSP90抑制剂。生物活性天然化合物甘胺酸(GB)是具有抗肿瘤活性的戊酰化的X吨酮,并且已经提出用作HSP90抑制剂。然而,存在矛盾的报告GB是否诱导热休克响应(HSR),这是癌细胞的细胞保护,因此是抗癌药物的潜在问题特征。在该研究中,我们表明GB和一种结构相关的化合物,称为冈比亚酸(GBA),以硫醇依赖性方式诱导稳健的HSR。使用热休克因子1(HSF1)或HSF2敲除细胞,我们表明GB或GBA诱导的HSR是HSF1依赖性的。有趣的是,使用封闭形式的ATP结合的HSP90突变体,可以共沉淀用HSF1,已知的癌症促进剂,我们表明同性也与HSP90共析出。 GB和GBA治疗破坏了HSP90和HSF1和HSP90和HSF2之间的相互作用。我们的研究意味着,如果对于癌症疗法而开发,这些化合物应致致意,因为GB及其衍生物GBA是通过涉及HSP90-HSF1 / HSF2复合物的解离方法的多种细胞类型的HSR的强诱导剂。

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