
AbstractAccumulating evidence has shown that dysregulation of tight junctions (TJs) is involved in tumor development and progression. In this study, we investigated the expression and subcellular distribution of tricellulin, which constitutes tricellular TJs, using human pancreatic adenocarcinomas. In well-differentiated pancreatic adenocarcinoma tissues, tricellulin immunostaining was prominent in the cytoplasm and the plasma membrane. In contrast, in poorly differentiated tissues, its immunostaining was predominantly observed in the nuclei and was almost absent in the plasma membrane. The distinct immunostaining of tricellulin successfully distinguished poorly differentiated adenocarcinoma from moderately and well-differentiated adenocarcinomas with high levels of sensitivity and specificity. Nuclear tricellulin expression significantly correlated with lymph node metastasis, lymphatic invasion and poor survival. In pancreatic cancer cell lines, tricellulin localization shifted from the membrane to nucleus with decreasing differentiation status. Nuclear localization of tricellulin promoted cell proliferation and invasiveness possibly in association with MAPK and PKC pathways in pancreatic cancers. Our results provide new insights into the function of tricellulin, and its nuclear localization may become a new prognostic factor for pancreatic cancers.
Active Transport, Cell Nucleus, Kaplan-Meier Estimate, Adenocarcinoma, Immunohistochemistry, Article, Cell Line, Pancreatic Neoplasms, Protein Transport, Cell Transformation, Neoplastic, MARVEL Domain Containing 2 Protein, Humans, Neoplasm Grading, Cell Proliferation, Signal Transduction
Active Transport, Cell Nucleus, Kaplan-Meier Estimate, Adenocarcinoma, Immunohistochemistry, Article, Cell Line, Pancreatic Neoplasms, Protein Transport, Cell Transformation, Neoplastic, MARVEL Domain Containing 2 Protein, Humans, Neoplasm Grading, Cell Proliferation, Signal Transduction
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