FOXM1 facilitates breast cancer cell stemness and migration in YAP1-dependent manner

Breast cancer has the highest incidence and mortality in the female population. Forkhead box M1 (FOXM1) known as a transcription factor is upregulated and associated with poor prognosis in a variety of cancers. However, the molecular mechanisms of FOXM1 on breast cancer progression are poorly unders...

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Veröffentlicht in:Archives of biochemistry and biophysics 2020-05, Vol.685, p.108349-108349, Article 108349
Hauptverfasser: Sun, Hong-Liang, Men, Jing-Rui, Liu, Hui-Yun, Liu, Min-Yao, Zhang, Hong-Sheng
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Sprache:eng
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Zusammenfassung:Breast cancer has the highest incidence and mortality in the female population. Forkhead box M1 (FOXM1) known as a transcription factor is upregulated and associated with poor prognosis in a variety of cancers. However, the molecular mechanisms of FOXM1 on breast cancer progression are poorly understood. In this study, we found that FOXM1 was up-regulated in breast cancer. FOXM1 promoted cell proliferation, clonal formation, and migration capacity in triple negative breast cancer by increasing transcriptional activity of YAP1. FOXM1 also maintained cell stemness via the Hippo pathway. The YAP1-TEAD binding inhibitor Verteporfin reduced the transcription level of OCT4 and NANOG but the Hippo pathway activator XMU-MP-1 could increase the transcription level of OCT4 and NANOG. In summary, our findings indicated that FOXM1 promoted breast cancer progression through the Hippo pathway, and it was suggested a new strategy to treat breast cancer. •FOXM1 up-regulated in breast cancer cells.•Knockdown of FOXM1 inhibited breast cancer cell proliferation and migration.•FOXM1 induced breast cancer cell stemness via YAP1 pathway.
ISSN:0003-9861
1096-0384
DOI:10.1016/j.abb.2020.108349