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PMID: 23466707 已发表 · ppublish 英语

The enforced expression of c-Myc in pig fibroblasts triggers mesenchymal-epithelial transition (MET) via F-actin reorganization and RhoA/Rock pathway inactivation.

Cell cycle (Georgetown, Tex.) ·第 12 卷 ·第 7 期 ·2013-10-21

Shi Jun-Wen, Liu Wei, Zhang Ting-Ting, Wang Sheng-Chun, Lin Xiao-Lin, Li Jing, Jia Jun-Shuang, Sheng Hong-Fen, Yao Zhi-Fang, Zhao Wen-Tao, Zhao Zun-Lan, Xie Rao-Ying, Yang Sheng, Gao Fei, Fan Quan-Rong, Zhang Meng-Ya, Yue Min, Yuan Jin, Gu Wei-Wang, Yao Kai-Tai, Xiao Dong

摘要

In previous studies from other labs it has been well demonstrated that the ectopic expression of c-Myc in mammary epithelial cells can induce epithelial-mesenchymal transition (EMT), whereas in our pilot experiment, epithelial-like morphological changes were unexpectedly observed in c-Myc-expressing pig fibroblasts [i.e., porcine embryonic fibroblasts (PEFs) and porcine dermal fibroblasts (PDFs)] and pig mesenchymal stem cells, suggesting that the same c-Myc gene is entitled to trigger EMT in epithelial cells and mesenchymal-epithelial transition (MET) in fibroblasts. This prompted us to characterize the existence of a MET in c-Myc-expressing PEFs and PDFs at the molecular level. qRT-PCR, immunofluorescence and western blot analysis illustrated that epithelial-like morphological changes were accompanied by the increased expression of epithelial markers [such as cell adhesion proteins (E-cadherin, α-catenin and Bves), tight junction protein occludin and cytokeratins (Krt8 and Krt18)], the reduced expression of mesenchymal markers [vimentin, fibronectin 1 (FN1), snail1, collagen family of proteins (COL1A1, COL5A2) and matrix metalloproteinase (MMP) family (MMP12 and MMP14)] and the decreased cell motility and increased cell adhesion in c-Myc-expressing PEFs and PDFs. Furthermore, the ectopic expression of c-Myc in pig fibroblasts disrupted the stress fiber network, suppressed the formation of filopodia and lamellipodia, and resulted in RhoA/Rock pathway inactivation, which finally participates in epithelial-like morphological conversion. Taken together, these findings demonstrate, for the first time, that the enforced expression of c-Myc in fibroblasts can trigger MET, to which cytoskeleton depolymerization and RhoA/Rock pathway inactivation contribute.

关键词
RhoA/Rock pathway Tibetan miniature pigs c-Myc cytoskeleton reorganization dermal fibroblasts embryonic fibroblasts mesenchymal stem cells mesenchymal-epithelial transition (MET)
文献信息
期刊
Cell cycle (Georgetown, Tex.)
期刊简称
Cell Cycle
发表日期
2013-10-21
收录日期
2013-04-10
更新日期
2015-02-18
语言
英语
国家/地区
United States
NLM ID
101137841
分析服务
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