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Suppression of AGR2 in a TGF-β-induced Smad regulatory pathway mediates epithelial-mesenchymal transition

机译:TGF-β诱导的Smad调控途径中AGR2的抑制介导上皮-间质转化

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Background During cancer progression, epithelial cancer cells can be reprogrammed into mesenchymal-like cells with increased migratory potential through the process of epithelial-mesenchymal transition (EMT), representing an essential step of tumor progression towards metastatic state. AGR2 protein was shown to regulate several cancer-associated processes including cellular proliferation, survival and drug resistance. Methods The expression of AGR2 was analyzed in cancer cell lines exposed to TGF-β alone or to combined treatment with TGF-β and the Erk1/2 inhibitor PD98059 or the TGF-β receptor specific inhibitor SB431542. The impact of AGR2 silencing by specific siRNAs or CRISPR/Cas9 technology on EMT was investigated by western blot analysis, quantitative PCR, immunofluorescence analysis, real-time invasion assay and adhesion assay. Results Induction of EMT was associated with decreased AGR2 along with changes in cellular morphology, actin reorganization, inhibition of E-cadherin and induction of the mesenchymal markers vimentin and N-cadherin in various cancer cell lines. Conversely, induction of AGR2 caused reversion of the mesenchymal phenotype back to the epithelial phenotype and re-acquisition of epithelial markers. Activated Smad and Erk signaling cascades were identified as mutually complementary pathways responsible for TGF-β-mediated inhibition of AGR2. Conclusion Taken together our results highlight a crucial role for AGR2 in maintaining the epithelial phenotype by preventing the activation of key factors involved in the process of EMT.
机译:背景技术在癌症进展期间,可以通过上皮-间质转化(EMT)过程将上皮癌细胞重编程为具有增加的迁移潜能的间充质样细胞,这代表了肿瘤向转移状态发展的关键步骤。研究表明,AGR2蛋白可调节几种与癌症相关的过程,包括细胞增殖,存活和耐药性。方法分析AGR2在单独暴露于TGF-β或与TGF-β和Erk1 / 2抑制剂PD98059或TGF-β受体特异性抑制剂SB431542联合治疗的癌细胞系中的表达。通过蛋白质印迹分析,定量PCR,免疫荧光分析,实时侵袭测定和粘附测定,研究了通过特异性siRNA或CRISPR / Cas9技术使AGR2沉默对EMT的影响。结果在多种癌细胞系中,EMT的诱导与AGR2的降低,细胞形态的变化,肌动蛋白重组,E-钙粘蛋白的抑制以及间充质标记波形蛋白和N-钙粘蛋白的诱导有关。相反,AGR2的诱导导致间充质表型逆转回到上皮表型并重新获得上皮标记。活化的Smad和Erk信号级联反应被确定为负责TGF-β介导的AGR2抑制的相互补充的途径。结论综上所述,我们的结果强调了AGR2通过阻止EMT过程中涉及的关键因子的激活在维持上皮表型中的关键作用。

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