Identification of the first-in-class dual inhibitor targeting BAG3 and HSP70 proteins to disrupt multiple chaperone pathways

IF 5.9 2区 医学 Q1 CHEMISTRY, MEDICINAL European Journal of Medicinal Chemistry Pub Date : 2025-02-06 DOI:10.1016/j.ejmech.2025.117358
Dafne Ruggiero , Emis Ingenito , Eleonora Boccia , Vincenzo Vestuto , Gilda D'Urso , Alessandra Capuano , Agostino Casapullo , Stefania Terracciano , Giuseppe Bifulco , Gianluigi Lauro , Ines Bruno
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Abstract

In the complex network of cellular physiology, the maintenance of cellular proteostasis emerges as a critical factor for cell survival, particularly under stress conditions. This homeostasis is largely governed by a sophisticated network of molecular chaperones and co-chaperones, among which Bcl-2-associated athanogene 3 (BAG3), able to interact with the ATPase domain of Heat Shock Protein 70 (HSP70), plays a pivotal role. The BAG3-HSP70 functional module is not only essential for cellular homeostasis but is also involved in the pathogenesis of various diseases, including cancer, neurodegenerative disorders, and cardiac dysfunction, making it an attractive target for therapeutic intervention. Inspired by our continuous interest in the development of new chemical platforms able to interfere with BAG3 protein, herein we report the discovery of compound 16, the first-in-class BAG3/HSP70 dual modulator, obtained by combining the multicomponent Ugi reaction with the alkyne-azide Huisgen procedure in a sequential tandem reaction approach. Through a combination of biophysical analysis, biochemical assays, and cell-based studies, we elucidated the mechanism of action of this inhibitor and assessed its potential as a therapeutic agent. Hence, this study can open new avenues for the development of novel anticancer strategies that leverage the simultaneous disruption of multiple chaperone pathways.

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鉴定了首个针对BAG3和HSP70蛋白的双抑制剂,以破坏多种伴侣通路
在复杂的细胞生理网络中,维持细胞蛋白酶平衡是细胞存活的关键因素,尤其是在应激条件下。这种内稳态在很大程度上是由一个复杂的分子伴侣和共伴侣网络控制的,其中bcl -2相关的无thanogene 3 (BAG3)能够与热休克蛋白70 (HSP70)的atp酶结构域相互作用,起着关键作用。BAG3-HSP70功能模块不仅对细胞稳态至关重要,而且还参与多种疾病的发病机制,包括癌症、神经退行性疾病和心功能障碍,使其成为治疗干预的一个有吸引力的靶点。受我们对开发能够干扰BAG3蛋白的新化学平台的持续兴趣的启发,我们在这里报告了化合物16的发现,这是首个BAG3/HSP70双调节剂,通过将多组分Ugi反应与炔-叠氮化物Huisgen程序结合在顺序串联反应方法中获得的。通过结合生物物理分析、生化分析和基于细胞的研究,我们阐明了这种抑制剂的作用机制,并评估了它作为治疗剂的潜力。因此,这项研究可以为开发利用同时破坏多种伴侣通路的新型抗癌策略开辟新的途径。
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来源期刊
CiteScore
11.70
自引率
9.00%
发文量
863
审稿时长
29 days
期刊介绍: The European Journal of Medicinal Chemistry is a global journal that publishes studies on all aspects of medicinal chemistry. It provides a medium for publication of original papers and also welcomes critical review papers. A typical paper would report on the organic synthesis, characterization and pharmacological evaluation of compounds. Other topics of interest are drug design, QSAR, molecular modeling, drug-receptor interactions, molecular aspects of drug metabolism, prodrug synthesis and drug targeting. The journal expects manuscripts to present the rational for a study, provide insight into the design of compounds or understanding of mechanism, or clarify the targets.
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