Klaile Esther, Müller Mario M, Kannicht Christoph, Singer Bernhard B, Lucka Lothar
Institut für Biochemie und Molekularbiologie, Charité, Universitätsmedizin Berlin, Campus Benjamin Franklin, 14195 Berlin, Germany.
J Cell Sci. 2005 Dec 1;118(Pt 23):5513-24. doi: 10.1242/jcs.02660. Epub 2005 Nov 15.
The carcinoembryonic antigen-related cell adhesion molecule CEACAM1 (CD66a) and the scaffolding protein filamin A have both been implicated in tumor cell migration. In the present study we identified filamin A as a novel binding partner for the CEACAM1-L cytoplasmic domain in a yeast two-hybrid screen. Direct binding was shown by surface plasmon resonance analysis and by affinity precipitation assays. The association was shown for human and rodent CEACAM1-L in endogenous CEACAM1-L expressing cells. To address functional aspects of the interaction, we used a well-established melanoma cell system. We found in different migration studies that the interaction of CEACAM1-L and filamin A drastically reduced migration and cell scattering, whereas each of these proteins when expressed alone, acted promigratory. CEACAM1-L binding to filamin A reduced the interaction of the latter with RalA, a member of the Ras-family of GTPases. Furthermore, co-expression of CEACAM1-L and filamin A led to a reduced focal adhesion turnover. Independent of the presence of filamin A, the expression of CEACAM1-L led to an increased phosphorylation of focal adhesions and to altered cytoskeletal rearrangements during monolayer wound healing assays. Together, our data demonstrate a novel mechanism for how CEACAM1-L regulates cell migration via its interaction with filamin A.
癌胚抗原相关细胞黏附分子CEACAM1(CD66a)和支架蛋白细丝蛋白A均与肿瘤细胞迁移有关。在本研究中,我们通过酵母双杂交筛选鉴定出细丝蛋白A是CEACAM1-L细胞质结构域的新型结合伴侣。表面等离子体共振分析和亲和沉淀试验证实了两者的直接结合。在表达内源性CEACAM1-L的细胞中,人和啮齿动物的CEACAM1-L均显示出这种关联。为了研究这种相互作用的功能方面,我们使用了一个成熟的黑色素瘤细胞系统。在不同的迁移研究中,我们发现CEACAM1-L与细丝蛋白A的相互作用显著降低了迁移和细胞散射,而这两种蛋白单独表达时均具有促进迁移的作用。CEACAM1-L与细丝蛋白A的结合减少了后者与RalA(一种Ras家族GTP酶成员)的相互作用。此外,CEACAM1-L和细丝蛋白A的共表达导致粘着斑周转减少。在单层伤口愈合试验中,无论细丝蛋白A是否存在,CEACAM1-L的表达都会导致粘着斑磷酸化增加,并导致细胞骨架重排改变。总之,我们的数据证明了CEACAM1-L通过与细丝蛋白A相互作用调节细胞迁移的新机制。