TY - JOUR
T1 - EpCAM in carcinogenesis
T2 - the good, the bad or the ugly
AU - van der Gun, Bernardina T. F.
AU - Melchers, Lieuwe J.
AU - Ruiters, Marcel H. J.
AU - de Leij, Lou F. M. H.
AU - McLaughlin, Pamela M. J.
AU - Rots, Marianne G.
PY - 2010/11
Y1 - 2010/11
N2 - The epithelial cell adhesion molecule (EpCAM) is a membrane glycoprotein that is highly expressed on most carcinomas and therefore of potential use as a diagnostic and prognostic marker for a variety of carcinomas. Interestingly, EpCAM is explored as target in antibody-based therapies. Recently, EpCAM has been identified as an additional marker of cancer-initiating cells. In this review, we describe the controversial biological role of EpCAM with the focus on carcinogenesis: as an adhesion molecule, EpCAM mediates homophilic adhesion interactions, which in turn might prevent metastasis. On the other hand, EpCAM abrogates E-cadherin mediated cell-cell adhesion thereby promoting metastasis. Also, upon cleavage of EpCAM, the intracellular domain functions as a part of a transcriptional complex inducing c-myc and cyclin A and E. In line with these seemingly controversial roles, EpCAM overexpression has been associated with both decreased and increased survival of patients. Similarly, either induction or downregulation of EpCAM expression lowers the oncogenic potential depending on the cell type. As epigenetic dysregulation underlies aberrant EpCAM expression, we propose epigenetic editing as a novel approach to investigate the biological role of EpCAM, expanding the options for EpCAM as a therapeutic target in cancer.
AB - The epithelial cell adhesion molecule (EpCAM) is a membrane glycoprotein that is highly expressed on most carcinomas and therefore of potential use as a diagnostic and prognostic marker for a variety of carcinomas. Interestingly, EpCAM is explored as target in antibody-based therapies. Recently, EpCAM has been identified as an additional marker of cancer-initiating cells. In this review, we describe the controversial biological role of EpCAM with the focus on carcinogenesis: as an adhesion molecule, EpCAM mediates homophilic adhesion interactions, which in turn might prevent metastasis. On the other hand, EpCAM abrogates E-cadherin mediated cell-cell adhesion thereby promoting metastasis. Also, upon cleavage of EpCAM, the intracellular domain functions as a part of a transcriptional complex inducing c-myc and cyclin A and E. In line with these seemingly controversial roles, EpCAM overexpression has been associated with both decreased and increased survival of patients. Similarly, either induction or downregulation of EpCAM expression lowers the oncogenic potential depending on the cell type. As epigenetic dysregulation underlies aberrant EpCAM expression, we propose epigenetic editing as a novel approach to investigate the biological role of EpCAM, expanding the options for EpCAM as a therapeutic target in cancer.
KW - CELL-ADHESION-MOLECULE
KW - CANCER STEM-CELLS
KW - DISSEMINATED TUMOR-CELLS
KW - EP-CAM EXPRESSION
KW - EPITHELIAL GLYCOPROTEIN-2 PROMOTER
KW - CONGENITAL TUFTING ENTEROPATHY
KW - BREAST-CANCER
KW - LYMPH-NODES
KW - DNA METHYLATION
KW - OVARIAN-CANCER
U2 - 10.1093/carcin/bgq187
DO - 10.1093/carcin/bgq187
M3 - Review article
SN - 0143-3334
VL - 31
SP - 1913
EP - 1921
JO - CARCINOGENESIS
JF - CARCINOGENESIS
IS - 11
ER -