Department of Pharmaceutical Sciences, Division of Biomedicine Arturo Leone, University of Salerno, Salerno, Italy.
Int J Biochem Cell Biol. 2010 May;42(5):641-50. doi: 10.1016/j.biocel.2009.12.008. Epub 2009 Dec 16.
It has been recently hypothesized that BAG3 protein, a co-chaperone of Hsp70/Hsc70, is involved in the regulation of several cell processes, such as apoptosis, autophagy and cell motility. Following the identification of Hsc70/Hsp70, further BAG3 molecular partners such as PLC-gamma and HspB8 were likewise identified, thus contributing to the characterization of the mechanisms and the biological roles carried out by this versatile protein. By using a His-tagged BAG3 protein as bait, we fished out and identified the cytosolic chaperonin CCT, a new unreported BAG3 partner. The interaction between BAG3 and CCT was confirmed and characterized by co-immunoprecipitation experiments and surface plasmon resonance techniques. Furthermore, our analyses showed a slower CCT association and a faster dissociation with a truncated form of BAG3 containing the BAG domain, thus indicating that other protein regions are essential for a high-affinity interaction. ATP or ADP does not seem to significantly influence the chaperonin binding to BAG3 protein. On the other hand, our experiments showed that BAG3 silencing by small interfering RNA slowed down cell migration and influence the availability of correctly folded monomeric actin, analyzed by DNAse I binding assays and latrunculin A depolymerization studies. To our knowledge, this is the first report showing a biologically relevant interaction between the chaperonin CCT and BAG3 protein, thus suggesting interesting involvement in the folding processes regulated by CCT.
最近有人假设 BAG3 蛋白是 Hsp70/Hsc70 的共伴侣,参与调节多种细胞过程,如细胞凋亡、自噬和细胞迁移。在鉴定出 Hsc70/Hsp70 之后,同样鉴定出了 BAG3 的其他分子伴侣,如 PLC-γ和 HspB8,从而有助于阐明该多功能蛋白的作用机制和生物学功能。我们使用带有 His 标签的 BAG3 蛋白作为诱饵,钓出并鉴定了细胞质伴侣蛋白 CCT,这是一种新的未报道的 BAG3 伴侣。通过共免疫沉淀实验和表面等离子体共振技术证实并表征了 BAG3 和 CCT 之间的相互作用。此外,我们的分析表明,与含有 BAG 结构域的 BAG3 截断形式相比,CCT 的结合更缓慢,解离更快,这表明其他蛋白区域对于高亲和力相互作用是必需的。ATP 或 ADP 似乎不会显著影响伴侣蛋白与 BAG3 蛋白的结合。另一方面,我们的实验表明,通过小干扰 RNA 沉默 BAG3 会减缓细胞迁移,并影响通过 DNAse I 结合测定和 latrunculin A 解聚研究分析的正确折叠单体肌动蛋白的可用性。据我们所知,这是首次报道 CCT 和 BAG3 蛋白之间存在生物学相关的相互作用,这表明它们可能参与了由 CCT 调节的折叠过程。