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WNT5A modulates cell cycle progression and contributes to the chemoresistance in pancreatic cancer cells

机译:WNT5A调节细胞周期进程并促进胰腺癌细胞的化学耐药性

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BACKGROUND: Although there are many studies on the mechanism of chemoresistance in cancers, studies on the relations between WNT5A and chemoresistance in pancreatic cancer are rare. The present study was to examine the role of WNT5A in the regulation of cell cycle progression and in chemoresistance in pancreatic cancer tissues and cell lines. METHODS: Fresh pancreatic cancer and paracarcinoma tissues were obtained from 32 patients. The expressions of WNT5A, AKT/p-AKT and Cyclin D1 were detected by immunohistochemistry, and the correlation between WNT5A expression and clinicopathological characteristics was analyzed. The relationship between WNT5A expression and gemcitabine resistance was studied in PANC-1 and MIAPaCa2 cell lines. The effect of WNT5A on the regulation of cell cycle and gemcitabine cytotoxicity were investigated. The associations among the expressions of p-AKT, Cyclin D1 and WNT5A were also analyzed in cell lines and the effect of WNT5A on restriction-point (R-point) progression was evaluated. RESULTS: WNT5A, p-AKT and Cyclin D1 were highly expressed in pancreatic cancer tissues, and the WNT5A expression was correlated with the TNM stages. In vitro, WNT5A expression was associated with gemcitabine chemoresistance. The percentage of cells was increased in G0/G1 phase and decreased in S phase after knockdown of WNT5A in PANC-1. WNT5A promoted Cyclin D1 expression through phosphorylation of AKT which consequently enhanced G1-S transition and gemcitabine resistance. Furthermore, WNT5A enhanced the cell cycle progression toward R-point through regulation of retinoblastoma protein (pRb) and pRb-E2F complex formation. CONCLUSIONS: WNT5A induced chemoresistance by regulation of G1-S transition in pancreatic cancer cells. WNT5A might serve as a predictor of gemcitabine response and as a potential target for tumor chemotherapy.
机译:背景:尽管关于癌症化学抗性机制的研究很多,但关于胰腺癌中WNT5A与化学抗性之间关系的研究却很少。本研究旨在检查WNT5A在胰腺癌组织和细胞系中调控细胞周期进程和化学耐药性中的作用。 方法:从32例患者中获得新鲜的胰腺癌和癌旁组织。通过免疫组织化学检测WNT5A,AKT / p-AKT和Cyclin D1的表达,并分析WNT5A表达与临床病理特征的相关性。在PANC-1和MIAPaCa2细胞系中研究了WNT5A表达与吉西他滨耐药之间的关系。研究了WNT5A对细胞周期和吉西他滨细胞毒性的调节作用。还分析了细胞系中p-AKT,Cyclin D1和WNT5A表达之间的关联,并评估了WNT5A对限制点(R点)进程的影响。 结果:WNT5A,p-AKT和细胞周期蛋白D1在胰腺癌组织中高表达,且WNT5A的表达与TNM分期相关。在体外,WNT5A表达与吉西他滨化学耐药性相关。在敲除PANC-1中的WNT5A后,细胞百分比在G0 / G1期增加而在S期减少。 WNT5A通过AKT磷酸化促进Cyclin D1表达,从而增强G1-S过渡和吉西他滨耐药性。此外,WNT5A通过调节成视网膜细胞瘤蛋白(pRb)和pRb-E2F复合物的形成,增强了细胞周期向R点发展。 结论:WNT5A通过调节胰腺癌细胞中的G1-S过渡诱导化学抗性。 WNT5A可能是吉西他滨反应的预测指标,并可能成为肿瘤化疗的潜在靶标。

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