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PMID: 24691442 已发表 · ppublish 英语

Excess PLAC8 promotes an unconventional ERK2-dependent EMT in colon cancer.

The Journal of clinical investigation ·第 124 卷 ·第 5 期 ·2014-06-16

Li Cunxi, Ma Haiting, Wang Yang, Cao Zheng, Graves-Deal Ramona, Powell Anne E, Starchenko Alina, Ayers Gregory D, Washington Mary Kay, Kamath Vidya, Desai Keyur, Gerdes Michael J, Solnica-Krezel Lila, Coffey Robert J

摘要

The epithelial-to-mesenchymal transition (EMT) transcriptional program is characterized by repression of E-cadherin (CDH1) and induction of N-cadherin (CDH2), and mesenchymal genes like vimentin (VIM). Placenta-specific 8 (PLAC8) has been implicated in colon cancer; however, how PLAC8 contributes to disease is unknown, and endogenous PLAC8 protein has not been studied. We analyzed zebrafish and human tissues and found that endogenous PLAC8 localizes to the apical domain of differentiated intestinal epithelium. Colon cancer cells with elevated PLAC8 levels exhibited EMT features, including increased expression of VIM and zinc finger E-box binding homeobox 1 (ZEB1), aberrant cell motility, and increased invasiveness. In contrast to classical EMT, PLAC8 overexpression reduced cell surface CDH1 and upregulated P-cadherin (CDH3) without affecting CDH2 expression. PLAC8-induced EMT was linked to increased phosphorylated ERK2 (p-ERK2), and ERK2 knockdown restored cell surface CDH1 and suppressed CDH3, VIM, and ZEB1 upregulation. In vitro, PLAC8 directly bound and inactivated the ERK2 phosphatase DUSP6, thereby increasing p-ERK2. In a murine xenograft model, knockdown of endogenous PLAC8 in colon cancer cells resulted in smaller tumors, reduced local invasion, and decreased p-ERK2. Using MultiOmyx, a multiplex immunofluorescence-based methodology, we observed coexpression of cytosolic PLAC8, CDH3, and VIM at the leading edge of a human colorectal tumor, supporting a role for PLAC8 in cancer invasion in vivo.

文献信息
期刊
The Journal of clinical investigation
期刊简称
J Clin Invest
发表日期
2014-06-16
收录日期
2014-06-06
更新日期
2016-10-19
语言
英语
国家/地区
United States
NLM ID
7802877
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