Iwasaki Masahiro, Homma Sachiko, Hishiya Akinori, Dolezal Samuel J, Reed John C, Takayama Shinichi
Medical College of Georgia, Augusta, Georgia, USA.
Cancer Res. 2007 Nov 1;67(21):10252-9. doi: 10.1158/0008-5472.CAN-07-0618.
BAG3 protein binds to and regulates Hsp70 chaperone activity. The BAG3 protein contains a WW domain and a proline-rich region with SH3-binding motifs, suggesting that it may interact with proteins relevant to signal transduction, recruiting Hsp70 to signaling complexes and altering cell responses. BAG3 overexpression has been observed in human cancers. We show here that homozygous BAG3-deficient mouse embryonic fibroblasts (MEF) exhibit delayed formation of filopodia and focal adhesion complexes when freshly plated. BAG3-deficient MEFs show reduced cell motility in culture. We observed that endogenous BAG3 protein is highly expressed in many human epithelial cancer cell lines, especially adenocarcinomas. Gene transfer-mediated overexpression of BAG3 increased motility of Cos7 cell and several human cancer cell lines, including breast cancer MCF7 and prostate cancer DU145 and ALVA31 cell lines. Conversely, reduction of BAG3 protein by RNA interference (RNAi) decreased cell motility in four of four epithelial tumor lines tested. We observed an influence of BAG3 on cell adhesion in culture. In Cos7 kidney epithelial cells, BAG3 protein partially colocalizes with actin at the leading edge of migrating cells, wherein active actin polymerization and nucleation occur. RNAi-mediated reductions in BAG3 expression were associated with decreased Rac1 activity, suggesting a role for BAG3 in regulating this small GTPase involved in actin-cytoskeleton dynamics. In mice, RNAi-mediated reductions in BAG3 in a human tumor xenograft suppressed invasion and metastasis in vivo. Thus, the high levels of BAG3 protein seen in some epithelial cancer cell lines may be relevant to mechanisms of tumor invasion and metastasis.
BAG3蛋白与Hsp70伴侣活性结合并对其进行调节。BAG3蛋白包含一个WW结构域和一个富含脯氨酸且带有SH3结合基序的区域,这表明它可能与信号转导相关蛋白相互作用,将Hsp70招募至信号复合物并改变细胞反应。在人类癌症中已观察到BAG3的过表达。我们在此表明,纯合BAG3缺陷型小鼠胚胎成纤维细胞(MEF)刚接种时丝状伪足和粘着斑复合物的形成会延迟。BAG3缺陷型MEF在培养中显示出细胞运动性降低。我们观察到内源性BAG3蛋白在许多人类上皮癌细胞系中高表达,尤其是腺癌。基因转移介导的BAG3过表达增加了Cos7细胞以及包括乳腺癌MCF7、前列腺癌DU145和ALVA31细胞系在内的几种人类癌细胞系的运动性。相反,通过RNA干扰(RNAi)降低BAG3蛋白水平会使所测试的四种上皮肿瘤细胞系中的细胞运动性降低。我们观察到BAG3对培养中的细胞粘附存在影响。在Cos7肾上皮细胞中,BAG3蛋白在迁移细胞的前沿与肌动蛋白部分共定位,而活跃的肌动蛋白聚合和成核作用在此发生。RNAi介导的BAG3表达降低与Rac1活性降低相关,这表明BAG3在调节这种参与肌动蛋白细胞骨架动力学的小GTP酶中发挥作用。在小鼠中,RNAi介导的人类肿瘤异种移植中BAG3的降低抑制了体内的侵袭和转移。因此,在某些上皮癌细胞系中所见的高水平BAG3蛋白可能与肿瘤侵袭和转移机制相关。