Department of Biochemistry and Molecular Biology, University of Miami, Miller School of Medicine, Miami, Florida 33101, USA.
J Cell Physiol. 2010 Sep;224(3):649-57. doi: 10.1002/jcp.22163.
The membrane mucin Muc4 is aberrantly expressed in numerous epithelial carcinomas and is currently used as a cancer diagnostic and prognostic tool. Muc4 can also potentiate signal transduction by modulating differential ErbB2 phosphorylation in the absence and in the presence of the ErbB3 soluble ligand heregulin (HRG-beta1). These features of Muc4 suggest that Muc4 is not merely a cancer marker, but an oncogenic factor with a unique-binding/activation relationship with the receptor ErbB2. In the present study, we examined the signaling mechanisms that are associated with the Muc4-ErbB2 module by analyzing ErbB2 differential signaling in response to Muc4 expression. Our study was carried out in the A375 human melanoma and BT-474 breast cancer cell lines as our model systems. Quantitative and comparative signaling modulations were evaluated by immunoblot using phospho-specific antibodies, and densitometry analysis. Signaling complex components were identified by chemical cross-linking, fractionation by gel filtration, immunoprecipitation, and immunoblotting. Activated downstream signaling pathways were analyzed by an antibody microarray screen and immunoblot analyses. Our results indicate that Muc4 modulates ErbB2 signaling potential significantly by stabilizing and directly interacting with the ErbB2-ErbB3 heterodimer. Further analyses indicate that Muc4 promotes ErbB2 autocatalysis, but it has no effect on ErbB3 phosphorylation, although the chemical cross-linking data indicated that the signaling module is composed of Muc4, ErbB2, and ErbB3. Our microarray analysis indicates that Muc4 expression promotes cell migration by increasing the phosphorylation of the focal adhesion kinase and also through an increase in the levels of beta-catenin.
膜黏蛋白 Muc4 在许多上皮癌中异常表达,目前被用作癌症诊断和预后工具。Muc4 还可以通过调节 ErbB2 磷酸化的差异,在缺乏和存在 ErbB3 可溶性配体 heregulin (HRG-beta1) 的情况下增强信号转导。Muc4 的这些特征表明,Muc4 不仅仅是一个癌症标志物,而是一个具有独特结合/激活关系与受体 ErbB2 的致癌因子。在本研究中,我们通过分析 Muc4 表达对 ErbB2 差异信号的影响,研究了与 Muc4-ErbB2 模块相关的信号转导机制。我们的研究使用 A375 人黑色素瘤和 BT-474 乳腺癌细胞系作为模型系统进行。通过使用磷酸特异性抗体进行免疫印迹和密度计分析,评估了定量和比较信号转导的调节。通过化学交联、凝胶过滤分级、免疫沉淀和免疫印迹鉴定信号复合物成分。通过抗体微阵列筛选和免疫印迹分析分析了激活的下游信号通路。我们的结果表明,Muc4 通过稳定和直接与 ErbB2-ErbB3 异二聚体相互作用,显著调节 ErbB2 信号潜能。进一步的分析表明,Muc4 促进 ErbB2 自身催化,但对 ErbB3 磷酸化没有影响,尽管化学交联数据表明信号模块由 Muc4、ErbB2 和 ErbB3 组成。我们的微阵列分析表明,Muc4 通过增加粘着斑激酶的磷酸化和增加β-连环蛋白的水平来促进细胞迁移。