Hütz Katharina, Zeiler Julian, Sachs Lena, Ormanns Steffen, Spindler Volker
Department I, Institute of Anatomy and Cell Biology, Ludwig-Maximilians-Universität Munich, Munich, Germany.
Institute of Pathology, Ludwig-Maximilians-Universität Munich, Munich, Germany.
Mol Carcinog. 2017 Aug;56(8):1884-1895. doi: 10.1002/mc.22644. Epub 2017 Mar 30.
The ability to maintain cell-cell adhesion is crucial for tissue integrity and organization. Accordingly, loss of cohesiveness plays a critical role in cancer invasion and metastasis. Desmosomes are cell junctions providing strong intercellular adhesive strength and dysregulation of desmosomal constituents contributes to cancer progression through altered cell signaling pathways. Here, we focused on the desmosomal adhesion molecules Desmoglein 2 (Dsg2) and Desmocollin 2 (Dsc2), and their contribution to migration and invasion in pancreatic cancer cells. Silencing of Dsg2 but not Dsc2 resulted in loss of cell cohesion and enhanced migration, and invasion of pancreatic adenocarcinoma cells. To identify potential pathways regulated by Dsg2, we performed kinase arrays and detected the activity of ERK and growth factor receptors to be significantly enhanced in Dsg2-deficient cells. Consequently, inhibition of ERK phosphorylation in Dsg2 knockdown cells normalized migration. Loss of Dsg2 resulted in reduced levels of the desmosomal adapter protein and transcriptional regulator Plakoglobin (PG) in an ERK-dependent manner, whereas other desmosomal molecules were not altered. Overexpression of PG rescued enhanced migration induced by silencing of Dsg2. These results identify a novel pro-migratory pathway of pancreatic cancer cells in which loss of Dsg2 reduces the levels of PG via deregulated MAPK signaling.
维持细胞间黏附的能力对于组织完整性和组织结构至关重要。因此,黏附性丧失在癌症侵袭和转移中起着关键作用。桥粒是提供强大细胞间黏附力的细胞连接,桥粒成分的失调通过改变细胞信号通路促进癌症进展。在此,我们聚焦于桥粒黏附分子桥粒芯糖蛋白2(Dsg2)和桥粒胶蛋白2(Dsc2),以及它们对胰腺癌细胞迁移和侵袭的作用。沉默Dsg2而非Dsc2导致胰腺腺癌细胞的细胞黏附丧失以及迁移和侵袭增强。为了确定由Dsg2调控的潜在通路,我们进行了激酶阵列分析,并检测到在Dsg2缺陷细胞中ERK和生长因子受体的活性显著增强。因此,抑制Dsg2敲低细胞中的ERK磷酸化可使迁移恢复正常。Dsg2的缺失以ERK依赖的方式导致桥粒衔接蛋白和转录调节因子桥粒斑珠蛋白(PG)水平降低,而其他桥粒分子未发生改变。PG的过表达挽救了因Dsg2沉默诱导的增强迁移。这些结果确定了一种胰腺癌细胞的新型促迁移通路,其中Dsg2的缺失通过失调的MAPK信号降低PG水平。