Department of Medicine, Boston University School of Medicine and Boston Medical Center, MA, United States.
Cell Signal. 2011 Jun;23(6):1030-40. doi: 10.1016/j.cellsig.2011.01.018. Epub 2011 Jan 22.
BCAR3 binds to the carboxy-terminus of p130Cas, a focal adhesion adapter protein. Both BCAR3 and p130Cas have been linked to resistance to anti-estrogens in breast cancer, Rac activation and cell motility. Using R743A BCAR3, a point mutant that has lost the ability to bind p130Cas, we find that BCAR3-p130Cas complex formation is not required for BCAR3-mediated anti-estrogen resistance, Rac activation or discohesion of epithelial breast cancer cells. Complex formation was also not required for BCAR3-induced lamellipodia formation in BALB/c-3T3 fibroblasts but was required for optimal BCAR3-induced motility. Although both wildtype and R743A BCAR3 induced phosphorylation of p130Cas and the related adapter protein HEF1/NEDD9, chimeric NSP3:BCAR3 experiments demonstrate that such phosphorylation does not correlate with BCAR3-induced anti-estrogen resistance or lamellipodia formation. Wildtype but not R743A BCAR3 induced lamellipodia formation and augmented cell motility in p130Cas(-/-) murine embryonic fibroblasts (MEFs), suggesting that while p130Cas itself is not strictly required for these endpoints, complex formation with other CAS family members is, at least in cells lacking p130Cas. Overall, our work suggests that many, but not all, BCAR3-mediated signaling events in epithelial and mesenchymal cells are independent of p130Cas association. These studies also indicate that disruption of the BCAR3-p130Cas complex is unlikely to reverse BCAR3-mediated anti-estrogen resistance.
BCAR3 与 p130Cas 结合,p130Cas 是一种黏着斑衔接蛋白。BCAR3 和 p130Cas 都与乳腺癌对雌激素拮抗剂的耐药性、Rac 激活和细胞迁移有关。使用 R743A BCAR3(一种丧失与 p130Cas 结合能力的点突变体),我们发现 BCAR3 介导的抗雌激素耐药性、Rac 激活或上皮性乳腺癌细胞解聚并不需要 BCAR3-p130Cas 复合物的形成。复合物的形成也不需要用于 BCAR3 诱导的 BALB/c-3T3 成纤维细胞中的片状伪足形成,但需要最佳的 BCAR3 诱导的迁移。尽管野生型和 R743A BCAR3 均可诱导 p130Cas 和相关衔接蛋白 HEF1/NEDD9 的磷酸化,但嵌合 NSP3:BCAR3 实验表明,这种磷酸化与 BCAR3 诱导的抗雌激素耐药性或片状伪足形成无关。野生型而非 R743A BCAR3 诱导 p130Cas(-/-) 小鼠胚胎成纤维细胞 (MEF) 中的片状伪足形成和增强细胞迁移,表明虽然 p130Cas 本身对于这些终点不是严格必需的,但与其他 CAS 家族成员的复合物形成是必需的,至少在缺乏 p130Cas 的细胞中是这样。总体而言,我们的工作表明,上皮细胞和间充质细胞中许多但不是所有的 BCAR3 介导的信号事件都不依赖于 p130Cas 结合。这些研究还表明,破坏 BCAR3-p130Cas 复合物不太可能逆转 BCAR3 介导的抗雌激素耐药性。