Role of the Na~+/K~+/2Cl~- cotransporter NKCC1 in cell cycle progression in human esophageal squamou

来源 :World Journal of Gastroenterology | 被引量 : 0次 | 上传用户:junlintianxiap
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AIM:To investigate the role of Na+/K+/2Cl-cotransporter 1(NKCC1)in the regulation of genes involved in cell cycle progression and the clinicopathological significance of its expression in esophageal squamous cell carcinoma(ESCC).METHODS:An immunohistochemical analysis was performed on 68 primary tumor samples obtained from ESCC patients that underwent esophagectomy.NKCC1expression in human ESCC cell lines was analyzed by Western blotting.Knockdown experiments were conducted using NKCC1 small interfering RNA,and the effects on cell cycle progression were analyzed.The gene expression profiles of cells were analyzed by microarray analysis.RESULTS:Immunohistochemical staining showed that NKCC1 was primarily found in the cytoplasm of carcinoma cells and that its expression was related to the histological degree of differentiation of SCC.NKCC1 was highly expressed in KYSE170 cells.Depletion of NKCC1in these cells inhibited cell proliferation via G2/M phase arrest.Microarray analysis identified 2527 genes with altered expression levels in NKCC1depleted KYSE170.Pathway analysis showed that the top-ranked canonical pathway was the G2/M DNA damage checkpoint regulation pathway,which involves MAD2L1,DTL,BLM,CDC20,BRCA1,and E2F5.CONCLUSION:These results suggest that the expression of NKCC1 in ESCC may affect the G2/M checkpoint and may be related to the degree of histological differentiation of SCCs.We have provided a deeper understanding of the role of NKCC1 as a mediator and/or a biomarker in ESCC. AIM: To investigate the role of Na + / K + / 2Cl-cotransporter 1 (NKCC1) in the regulation of genes involved in cell cycle progression and the clinicopathological significance of its expression in esophageal squamous cell carcinoma (ESCC). METHODS: An immunohistochemical analysis was Perform on 68 primary tumor samples obtained from ESCC patients that underwent esophagectomy. NKCC1 expression in human ESCC cell lines was analyzed by Western blotting. Knockdown experiments were conducted using NKCC1 small interfering RNA, and the effects on cell cycle progression were analyzed. The gene expression profiles of cells were analyzed by microarray analysis .RESULTS: Immunohistochemical staining showed that NKCC1 was was found in the cytoplasm of carcinoma cells and that its expression was related to the histological degree of differentiation of SCC. NKCC1 was highly expressed in KYSE170 cells. Part of NKCC1 in these cells inhibited cell proliferation via G2 / M phase arrest. Microarray analysis identifi ed 2527 genes with altered expression levels in NKCC1 deleted KYSE170. Pathway analysis showed that the top-ranked canonical pathway was the G2 / M DNA damage checkpoint regulation pathway, which involves MAD2L1, DTL, BLM, CDC20, BRCA1, and E2F5.CONCLUSION: These results suggest that the expression of NKCC1 in ESCC may affect the G2 / M checkpoint and may be related to the degree of histological differentiation of SCCs.We have provided a deeper understanding of the role of NKCC1 as a mediator and / or a biomarker in ESCC .
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