Department of Medicine, Surgery and Dentistry Schola Medica Salernitana, University of Salerno, Baronissi, SA 84081, Italy.
Biochim Biophys Acta Gen Subj. 2020 Aug;1864(8):129628. doi: 10.1016/j.bbagen.2020.129628. Epub 2020 Apr 28.
BAG3 was identified as a co-chaperone of the heat shock protein (Hsp) 70, which helps, through the binding to the ATPase domain, the ADP release from the chaperone and the nucleotide cycling. By interacting with Hsp70, BAG3 modulates the activities of this chaperone, including the delivery of client proteins to proteasome. BAG3 can also carry out Hsp70- independent functions, through its interactions with other proteins involved in apoptosis, cytoskeleton dynamics and other pathways.
Here we provide a summary of the main mechanisms which encompass BAG3 as an intracellular factor involved in different pathways which regulate and modulate the physiological cell response. Furthermore, it has been shown that BAG3 can be secreted by some cell types and is able to activate the monocytes through the binding on a membrane cell receptor, indicating that the protein can act like an alarmin with different functions inside and outside the cell.
Whereas intracellularly BAG3 sustains the levels of anti-apoptotic factors and other molecules, participates in protein quality control, drives the cytoskeleton dynamics, exerts structural and functional roles in myocytes, the discovery of a secreted BAG3 opened a new field of investigation in tumor development and progression, revealing its role in a new signaling pathway, mediated by the BAG3/BAG3R axis, which also includes monocytes and other stromal cells.
BAG3 is a multifunctional protein that is involved cell stress response through its participation in several regulatory pathways which control cell homeostatic response in physiological and pathological conditions.
BAG3 被鉴定为热休克蛋白 (Hsp) 70 的共伴侣,通过与 ATP 酶结构域结合,帮助伴侣蛋白从 ADP 释放并进行核苷酸循环。通过与 Hsp70 相互作用,BAG3 调节该伴侣蛋白的活性,包括将客户蛋白递送至蛋白酶体。BAG3 还可以通过与参与细胞凋亡、细胞骨架动力学和其他途径的其他蛋白质相互作用,发挥 Hsp70 独立的功能。
本文总结了 BAG3 作为一种参与不同途径的细胞内因子的主要机制,这些途径调节和调节生理细胞反应。此外,已经表明一些细胞类型可以分泌 BAG3,并能够通过与细胞膜受体结合激活单核细胞,表明该蛋白可以像细胞内和细胞外具有不同功能的警报素一样发挥作用。
BAG3 在内质网中维持抗凋亡因子和其他分子的水平,参与蛋白质质量控制,驱动细胞骨架动力学,在心肌细胞中发挥结构和功能作用,分泌型 BAG3 的发现开辟了肿瘤发展和进展研究的新领域,揭示了其在 BAG3/BAG3R 轴介导的新信号通路中的作用,该通路还包括单核细胞和其他基质细胞。
BAG3 是一种多功能蛋白,通过参与几个调节通路,在生理和病理条件下控制细胞内稳态反应,参与细胞应激反应。