首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >The effect of celastrol, a triterpene with antitumorigenic activity, on conformational and functional aspects of the human 90 kDa heat shock protein Hsp90α, a chaperone implicated in the stabilization of the tumor phenotype
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The effect of celastrol, a triterpene with antitumorigenic activity, on conformational and functional aspects of the human 90 kDa heat shock protein Hsp90α, a chaperone implicated in the stabilization of the tumor phenotype

机译:celastrol,一种具有抗致瘤活性的三萜,对人类90 kDa热休克蛋白Hsp90α的构象和功能方面的影响,该蛋白与肿瘤表型的稳定有关。

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Background Hsp90 is a molecular chaperone essential for cell viability in eukaryotes that is associated with the maturation of proteins involved in important cell functions and implicated in the stabilization of the tumor phenotype of various cancers, making this chaperone a notably interesting therapeutic target. Celastrol is a plant-derived pentacyclic triterpenoid compound with potent antioxidant, anti-inflammatory and anticancer activities; however, celastrol's action mode is still elusive. Results In this work, we investigated the effect of celastrol on the conformational and functional aspects of Hsp90α. Interestingly, celastrol appeared to target Hsp90α directly as the compound induced the oligomerization of the chaperone via the C-terminal domain as demonstrated by experiments using a deletion mutant. The nature of the oligomers was investigated by biophysical tools demonstrating that a two-fold excess of celastrol induced the formation of a decameric Hsp90α bound throughout the C-terminal domain. When bound, celastrol destabilized the C-terminal domain. Surprisingly, standard chaperone functional investigations demonstrated that neither the in vitro chaperone activity of protecting against aggregation nor the ability to bind a TPR co-chaperone, which binds to the C-terminus of Hsp90α, were affected by celastrol. Conclusion Celastrol interferes with specific biological functions of Hsp90α. Our results suggest a model in which celastrol binds directly to the C-terminal domain of Hsp90α causing oligomerization. However, the ability to protect against protein aggregation (supported by our results) and to bind to TPR co-chaperones are not affected by celastrol. Therefore celastrol may act primarily by inducing specific oligomerization that affects some, but not all, of the functions of Hsp90α. General significance To the best of our knowledge, this study is the first work to use multiple probes to investigate the effect that celastrol has on the stability and oligomerization of Hsp90α and on the binding of this chaperone to Tom70. This work provides a novel mechanism by which celastrol binds Hsp90α.
机译:背景技术Hsp90是真核生物中细胞生存能力必不可少的分子伴侣,与重要细胞功能所涉及的蛋白质成熟有关,并涉及多种癌症的肿瘤表型的稳定化,使该伴侣成为令人关注的治疗靶标。 Celastrol是一种植物来源的五环三萜类化合物,具有有效的抗氧化剂,抗炎和抗癌活性;但是,celastrol的动作模式仍然难以捉摸。结果在这项工作中,我们研究了Celastrol对Hsp90α构象和功能方面的影响。有趣的是,Celastrol似乎直接靶向Hsp90α,因为该化合物通过C末端结构域诱导了伴侣分子的寡聚,如使用缺失突变体的实验所证明的。通过生物物理工具研究了寡聚物的性质,证明了两倍过量的Celastrol诱导了在整个C末端域结合的十聚Hsp90α的形成。当结合时,Celastrol使C末端结构域不稳定。出乎意料的是,标准的伴侣功能研究表明,体外伴侣的抗聚集活性和结合TPR伴侣伴侣的能力(与Hsp90α的C末端结合)均不受celastrol影响。结论Celastrol会干扰Hsp90α的特定生物学功能。我们的结果提出了一种模型,其中Celastrol直接与Hsp90α的C末端结构域结合,从而引起寡聚。但是,防止蛋白质聚集的能力(得到我们的结果支持)和与TPR伴侣分子结合的能力不受Celastrol的影响。因此,Celastrol可能主要是通过诱导特定的寡聚来发挥作用,该寡聚会影响Hsp90α的某些(但不是全部)功能。一般意义据我们所知,这项研究是首次使用多种探针来研究Celastrol对Hsp90α的稳定性和寡聚以及此伴侣与Tom70的结合的影响。这项工作提供了一种新的机制,celastrol通过该机制结合Hsp90α。

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