[HTML][HTML] Direct regulation of FOXK1 by C-jun promotes proliferation, invasion and metastasis in gastric cancer cells

Y Peng, P Zhang, X Huang, Q Yan, M Wu, R Xie… - Cell death & …, 2016 - nature.com
Y Peng, P Zhang, X Huang, Q Yan, M Wu, R Xie, Y Wu, M Zhang, Q Nan, J Zhao, A Li…
Cell death & disease, 2016nature.com
Forkhead box (FOX) K1 is a member of the FOX transcription factor superfamily. High
FOXK1 expression is associated with several cancers. However, whether FOXK1 expression
contributes to gastric cancer (GC) development and progression remains unknown. We
analyzed the FOXK1 promoter using the Promo software and found several binding
sequence transcription factors, including c-jun. However, the molecular mechanism by
which FOXK1 affects the c-jun-mediated malignant phenotype is poorly understood. Here …
Abstract
Forkhead box (FOX) K1 is a member of the FOX transcription factor superfamily. High FOXK1 expression is associated with several cancers. However, whether FOXK1 expression contributes to gastric cancer (GC) development and progression remains unknown. We analyzed the FOXK1 promoter using the Promo software and found several binding sequence transcription factors, including c-jun. However, the molecular mechanism by which FOXK1 affects the c-jun-mediated malignant phenotype is poorly understood. Here, we found that FOXK1 protein expression was higher in 8/10 (80.0%) fresh cancer tissues compared with that in adjacent normal tissues. FOXK1 overexpression enhanced the proliferation, migration and invasion of GC cells. Moreover, FOXK1 expression was stimulated by transforming growth factor-β1 (TGF-β1). FOXK1 acted as a potential epithelial-to-mesenchymal transition (EMT) inducer by stimulating vimentin expression and inducing the loss of E-cadherin in stable FOXK1-transfected cells. The results of promoter reporter and chromatin immunoprecipitation assays demonstrated that c-jun directly binds to and activates the human FOXK1 gene promoter. A positive correlation was observed between the expression patterns of FOXK1 and c-jun in GC cells and tissue. FOXK1 and c-jun expression were correlated with tumor progression and represented significant predictors of overall survival in GC patients. However, the siRNA-mediated repression of c-jun in FOXK1-overexpressing cells reversed EMT, as well as the proliferative and metastatic phenotypes. In vivo, c-jun promoted FOXK1-mediated proliferation and metastasis via orthotopic implantation. The evidence presented here suggests that FOXK1-directed regulation by c-jun promote the development and progression of human GC.
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