E-cadherin directly contributes to PI3K/AKT activation by engaging the PI3K-p85 regulatory subunit to adherens junctions of ovarian carcinoma cells

被引:79
作者
De Santis, G. [1 ]
Miotti, S. [1 ]
Mazzi, M. [1 ]
Canevari, S. [1 ]
Tomassetti, A. [1 ]
机构
[1] Fdn IRCCS Ist Nazl Tumori, Dept Expt Oncol, Unit Mol Therapies, I-20133 Milan, Italy
关键词
E-cadherin; PI3K; cell/cell adhesion; ovarian carcinoma; BETA-CATENIN; PHOSPHOINOSITIDE; 3-KINASE; PIK3CA GENE; PHOSPHATIDYLINOSITOL; SURFACE EPITHELIUM; PROTEIN-KINASE; ALPHA-CATENIN; ADHESION; CANCER; EXPRESSION;
D O I
10.1038/onc.2008.470
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
E-cadherin (cadh), a member of a family of integral membrane glycoproteins that represent the major component of adherens junctions (AJs), mediates cell-cell adhesion through the calcium-dependent homophilic interaction of its extracellular domain. Metastatic human carcinomas frequently lose E-cadh expression, whereas epithelial ovarian cancer (EOCs) maintain properties characteristic of Mullerian epithelium during tumor progression, including E-cadh expression. Here, we examined the potential role of cell-cell contacts in EOCs through E-cadh homophilic interactions in PI3K/AKT activation whose altered signaling has been implicated in EOC pathogenesis. We show that E-cadh is predominantly expressed at cell-cell contacts and its functionality is necessary and sufficient for the activation of the PI3K/AKT pathway. E-cadh knockdown and phosphoinositide-3-kinase (PI3K) inhibition complement each other in impairing cell-cycle progression and proliferation of ovarian carcinoma cells. E-cadh is stably bound to the PI3K complex, and the de novo formation of E-cadh/beta-catenin complexes following calcium deprivation and subsequent calcium restoration recruits the PI3K p85 subunit to the site of the cell-cell contacts. The finding that E-cadh-mediated AJ formation contributes to PI3K/AKT activation in EOC cells by a mechanism that appears to be restricted to these cells provides the underpinning for therapeutic strategies that exploit PI3K inhibition to halt EOCs.
引用
收藏
页码:1206 / 1217
页数:12
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