FoxM1 promotes breast tumorigenesis by activating PDGF-A and forming a positive feedback loop with the PDGF/AKT signaling pathway

  • Yu G.; 
  • Zhou A.; 
  • Xue J.; 
  • Huang C.; 
  • Zhang X.; 
  • ... Kang S.-H.; 
  • 외 5명
Citations

SCOPUS

57

초록

The autocrine platelet-derived growth factor (PDGF)/PDGF receptor (PDGFR) signaling pathway promotes breast cancer tumorigenesis, but the mechanisms for its dysregulation in breast cancer are largely unknown. In the study, we identified PDGF-A as a novel transcriptional target of FoxM1. FoxM1 directly binds to two sites in the promoter of PDGF-A and activates its transcription. Mutation of these FoxM1- binding sites diminished PDGF-A promoter activity. Increased FoxM1 resulted in the upregulation of PDGF-A, which led to activation of the AKT pathway and increased breast cancer cell proliferation and tumorigenesis, whereas knockdown of FoxM1 does the opposite. Blocking AKT activation with a phosphoinositide 3-kinase/AKT inhibitor decreased FoxM1-induced cell proliferation. Moreover, PDGF/AKT pathway upregulates the expression of FoxM1 in breast cancer cells. Knockdown of PDGF-A or blockade of AKT activation inhibited the expression of FoxM1 in breast cancer cells. Furthermore, expression of FoxM1 significantly correlated with the expression of PDGF-A and the activated AKT signaling pathway in human breast cancer specimens. Our study demonstrates a novel positive regulatory feedback loop between FoxM1 and the PDGF/AKT signaling pathway; this loop contributes to breast cancer cell growth and tumorigenesis.

키워드

AKT; Breast cancer; FoxM1; PDGF-A; Tumorigenesis; 2 morpholino 8 phenylchromone; forkhead transcription factor; platelet derived growth factor A; protein FoxM1; protein kinase B; unclassified drug; forkhead box protein M1; forkhead transcription factor; FOXM1 protein, human; platelet derived growth factor; platelet-derived growth factor A; protein kinase B; protein kinase inhibitor; adult; aged; animal cell; Article; binding site; breast cancer; breast carcinogenesis; cancer growth; controlled study; enzyme activation; female; gene mutation; human; human cell; major clinical study; mouse; nonhuman; promoter region; protein binding; protein expression; protein function; protein phosphorylation; protein targeting; signal transduction; transcription initiation; transcription regulation; tumor growth; upregulation; animal; antagonists and inhibitors; autocrine effect; Bagg albino mouse; Breast Neoplasms; cell proliferation; drug effects; drug screening; enzymology; feedback system; gene expression regulation; genetic transfection; genetics; metabolism; middle aged; mutation; nude mouse; pathology; RNA interference; signal transduction; time factor; tumor cell line; tumor volume; young adult; Adult; Aged; Animals; Autocrine Communication; Binding Sites; Breast Neoplasms; Cell Line, Tumor; Cell Proliferation; Feedback, Physiological; Female; Forkhead Box Protein M1; Forkhead Transcription Factors; Gene Expression Regulation, Neoplastic; Humans; Mice, Inbred BALB C; Mice, Nude; Middle Aged; Mutation; Platelet-Derived Growth Factor; Promoter Regions, Genetic; Protein Kinase Inhibitors; Proto-Oncogene Proteins c-akt; RNA Interference; Signal Transduction; Time Factors; Transcriptional Activation; Transfection; Tumor Burden; Xenograft Model Antitumor Assays; Young Adult
제목
FoxM1 promotes breast tumorigenesis by activating PDGF-A and forming a positive feedback loop with the PDGF/AKT signaling pathway
저자
Yu G.; Zhou A.; Xue J.; Huang C.; Zhang X.; Kang S.-H.; Chiu W.-T.; Tan C.; Xie K.; Wang J.; Huang S.
DOI
10.18632/oncotarget.3596
발행일
2015
유형
Article
저널명
Oncotarget
권
6
호
13
페이지
11281 ~ 11294