Department of Brain-Cognitive Science, Daegu-Gyeongbuk Institute of Science and Technology (DGIST), Daegu, Republic of Korea.
Research Institute, National Cancer Center, Goyang, Republic of Korea.
Exp Mol Med. 2017 Jul 7;49(7):e351. doi: 10.1038/emm.2017.88.
NHERF1/EBP50 (Na/H exchanger regulating factor 1; Ezrin-binding phosphoprotein of 50 kDa) organizes stable protein complexes beneath the apical membrane of polar epithelial cells. By contrast, in cancer cells without any fixed polarity, NHERF1 often localizes in the cytoplasm. The regulation of cytoplasmic NHERF1 and its role in cancer progression remain unclear. In this study, we found that, upon lysophosphatidic acid (LPA) stimulation, cytoplasmic NHERF1 rapidly translocated to the plasma membrane, and subsequently to cortical protrusion structures, of ovarian cancer cells. This movement depended on direct binding of NHERF1 to C-terminally phosphorylated ERM proteins (cpERMs). Moreover, NHERF1 depletion downregulated cpERMs and further impaired cpERM-dependent remodeling of the cell cortex, suggesting reciprocal regulation between these proteins. The LPA-induced protein complex was highly enriched in migratory pseudopodia, whose formation was impaired by overexpression of NHERF1 truncation mutants. Consistent with this, NHERF1 depletion in various types of cancer cells abolished chemotactic cell migration toward a LPA gradient. Taken together, our findings suggest that the high dynamics of cytosolic NHERF1 provide cancer cells with a means of controlling chemotactic migration. This capacity is likely to be essential for ovarian cancer progression in tumor microenvironments containing LPA.
NHERF1/EBP50(Na/H 交换体调节因子 1;Ezrin 结合磷蛋白 50kDa)在极性上皮细胞的顶膜下组织稳定的蛋白质复合物。相比之下,在没有任何固定极性的癌细胞中,NHERF1 通常位于细胞质中。细胞质 NHERF1 的调节及其在癌症进展中的作用仍不清楚。在这项研究中,我们发现,在溶血磷脂酸 (LPA) 刺激下,细胞质 NHERF1 迅速易位到卵巢癌细胞的质膜,随后到皮质突起结构。这种运动依赖于 NHERF1 与 C 末端磷酸化 ERM 蛋白(cpERM)的直接结合。此外,NHERF1 耗竭下调 cpERMs 并进一步损害 cpERM 依赖的细胞皮层重塑,表明这些蛋白质之间存在相互调节。LPA 诱导的蛋白质复合物在迁移伪足中高度富集,而过表达 NHERF1 截断突变体则损害了伪足的形成。与此一致的是,各种类型的癌细胞中 NHERF1 的耗竭消除了向 LPA 梯度的趋化性细胞迁移。总之,我们的研究结果表明,细胞质 NHERF1 的高动态为癌细胞提供了一种控制趋化性迁移的手段。这种能力对于含有 LPA 的肿瘤微环境中的卵巢癌进展可能是必不可少的。