Department of Pharmaceutical and Biomedical Sciences (FARMABIOMED), University of Salerno, Fisciano, Italy.
Cell Death Dis. 2011 Apr 7;2(4):e141. doi: 10.1038/cddis.2011.24.
Bcl2-associated athanogene 3 (BAG3) protein is a member of BAG family of co-chaperones that interacts with the ATPase domain of the heat shock protein (Hsp) 70 through BAG domain (110-124 amino acids). BAG3 is the only member of the family to be induced by stressful stimuli, mainly through the activity of heat shock factor 1 on bag3 gene promoter. In addition to the BAG domain, BAG3 contains also a WW domain and a proline-rich (PXXP) repeat, that mediate binding to partners different from Hsp70. These multifaceted interactions underlie BAG3 ability to modulate major biological processes, that is, apoptosis, development, cytoskeleton organization and autophagy, thereby mediating cell adaptive responses to stressful stimuli. In normal cells, BAG3 is constitutively present in a very few cell types, including cardiomyocytes and skeletal muscle cells, in which the protein appears to contribute to cell resistance to mechanical stress. A growing body of evidence indicate that BAG3 is instead expressed in several tumor types. In different tumor contexts, BAG3 protein was reported to sustain cell survival, resistance to therapy, and/or motility and metastatization. In some tumor types, down-modulation of BAG3 levels was shown, as a proof-of-principle, to inhibit neoplastic cell growth in animal models. This review attempts to outline the emerging mechanisms that can underlie some of the biological activities of the protein, focusing on implications in tumor progression.
Bcl2 相关抗凋亡基因 3(BAG3)蛋白是 BAG 家族伴侣蛋白的成员之一,通过 BAG 结构域(110-124 个氨基酸)与热休克蛋白(Hsp)70 的 ATP 酶结构域相互作用。BAG3 是该家族中唯一受应激刺激诱导的成员,主要通过热休克因子 1 对 bag3 基因启动子的活性诱导。除了 BAG 结构域外,BAG3 还包含一个 WW 结构域和一个富含脯氨酸(PXXP)的重复序列,介导与不同于 Hsp70 的伴侣蛋白的结合。这些多方面的相互作用是 BAG3 调节主要生物学过程(如细胞凋亡、发育、细胞骨架组织和自噬)的基础,从而介导细胞对应激刺激的适应性反应。在正常细胞中,BAG3 以很低的水平存在于少数几种细胞类型中,包括心肌细胞和骨骼肌细胞,在这些细胞中,该蛋白似乎有助于细胞抵抗机械应激。越来越多的证据表明 BAG3 在几种肿瘤类型中表达。在不同的肿瘤环境中,报道 BAG3 蛋白可维持细胞存活、抵抗治疗以及运动和转移。在一些肿瘤类型中,下调 BAG3 水平已被证明可抑制动物模型中肿瘤细胞的生长。本文综述了一些新兴的机制,这些机制可能是该蛋白部分生物学活性的基础,重点探讨了其在肿瘤进展中的作用。