Department of Pharmacy, University of Salerno, Via Giovanni Paolo II 132, 84084 Fisciano, Italy.
Molecules. 2022 Jan 20;27(3):665. doi: 10.3390/molecules27030665.
The multidomain BAG3 protein is a member of the BAG (Bcl-2-associated athanogene) family of co-chaperones, involved in a wide range of protein-protein interactions crucial for many key cellular pathways, including autophagy, cytoskeletal dynamics, and apoptosis. Basal expression of BAG3 is elevated in several tumor cell lines, where it promotes cell survival signaling and apoptosis resistance through the interaction with many protein partners. In addition, its role as a key player of several hallmarks of cancer, such as metastasis, angiogenesis, autophagy activation, and apoptosis inhibition, has been established. Due to its involvement in malignant transformation, BAG3 has emerged as a potential and effective biological target to control multiple cancer-related signaling pathways. Recently, by using a multidisciplinary approach we reported the first synthetic BAG3 modulator interfering with its BAG domain (BD), based on a 2,4-thiazolidinedione scaffold and endowed with significant anti-proliferative activity. Here, a further in silico-driven selection of a 2,4-thiazolidinedione-based compound was performed. Thanks to a straightforward synthesis, relevant binding affinity for the BAG3BD domain, and attractive biological activities, this novel generation of compounds is of great interest for the development of further BAG3 binders, as well as for the elucidation of the biological roles of this protein in tumors. Specifically, we found compound as a new BAG3 modulator with a relevant antiproliferative effect on two different cancer cell lines (IC: A375 = 19.36 μM; HeLa = 18.67 μM).
多结构域 BAG3 蛋白是 BAG(Bcl-2 相关抗凋亡蛋白)家族的共伴侣成员,参与多种关键细胞通路的广泛蛋白-蛋白相互作用,包括自噬、细胞骨架动态和细胞凋亡。几种肿瘤细胞系中 BAG3 的基础表达水平升高,通过与许多蛋白伴侣相互作用,促进细胞存活信号和抗细胞凋亡。此外,它作为癌症的几个标志性特征的关键参与者,如转移、血管生成、自噬激活和凋亡抑制,其作用已得到确立。由于其参与恶性转化,BAG3 已成为控制多种与癌症相关信号通路的潜在有效生物靶标。最近,我们采用多学科方法报告了第一种基于 2,4-噻唑烷二酮支架并具有显著抗增殖活性的合成 BAG3 调节剂,该调节剂干扰其 BAG 结构域(BD)。在这里,进一步基于计算机的 2,4-噻唑烷二酮基化合物的选择。由于具有简单的合成、对 BAG3BD 结构域的相关结合亲和力和有吸引力的生物学活性,这些新型化合物对于进一步的 BAG3 结合物的开发以及对该蛋白在肿瘤中的生物学作用的阐明具有重要意义。具体而言,我们发现化合物 是一种新的 BAG3 调节剂,对两种不同的癌细胞系(IC:A375 = 19.36 μM;HeLa = 18.67 μM)具有显著的抗增殖作用。