Claudin-6 increases SNAI1 , NANOG and SOX2 gene expression in human gastric adenocarcinoma AGS cells

Priscila Anhel Medrano-Gonzálezl, Franklin Cruz-Villegas, Alejandro Alarcón del Carmen,Luis Felipe Montaño,Erika Patricia Rendón-Huerta

Molecular biology reports(2022)

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Abstract
Background Gastric cancer is a heterogeneous disease associated to deregulated gastric epithelia tight junction barrier function and di novo expression of claudin-6; these changes are associated with epithelial-mesenchymal transition, enhanced invasiveness, metastatic progression, resistance to chemotherapy, and poor prognosis. Gastric cancer stem cells represent a rare population of cells within the tumor implicated in tumor growth and higher tumorigenic capacity. The possible relation between claudin-6 expression and the expression of some markers associated to epithelial mesenchymal transition and cancer stem cells in gastric cancer cells have never been explored. Methods and results CD44, CD24, Twist, Villin, DCLK1, claudin-6, NANOG , E-Cadherin, SOX2 , and SNAI1 expression was evaluated by immunofluorescence and cytofluorometry in wild type and Claudin-6 transfected AGS cells. Cell migration assays were also performed. Differentially expressed genes and biological processes analysis was performed to determine gene preponderance. The results showed that claudin-6 overexpression enriched the CD44 + /CD24- subpopulation with an overall increase in the expression and the number of CD44 + cells. A significant increase in NANOG, SOX2 and SNAI1 expression and enhanced cell migration was observed in claudin-6 transfected cells. Transcriptome analysis revealed 271 genes involved in enhanced biological processes with only 31 with a significantly p value; thirteen of those genes are closely associated to epithelial mesenchymal transition processes and folding and unfolding processes of proteins in the endoplasmic reticulum. Conclusions The pro-tumorigenic effect of claudin-6 in gastric cancer could be associated to dedifferentiation of epithelial cells and an increase in di novo cancer stem cell genesis.
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Key words
CD44,Cancer stem cell,Claudin 6,Gastric cancer,Tight junctions
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