miR-892b Silencing Activates NF-κB and Promotes Aggressiveness in Breast Cancer

The strength and duration of NF-κB signaling is tightly controlled at multiple levels under physiologic conditions, but the mechanism underlying constitutive activation of the NF-κB pathway in cancer remains unclear. In this study, we investigated miRNA-mediated regulation of the NF-κB cascade in br...

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Veröffentlicht in:Cancer research (Chicago, Ill.) Ill.), 2016-03, Vol.76 (5), p.1101-1111
Hauptverfasser: Jiang, Lili, Yu, Liang, Zhang, Xin, Lei, Fangyong, Wang, Lan, Liu, Xiangxia, Wu, Shu, Zhu, Jinrong, Wu, Geyan, Cao, Lixue, Liu, Aibin, Song, Libing, Li, Jun
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Sprache:eng
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Zusammenfassung:The strength and duration of NF-κB signaling is tightly controlled at multiple levels under physiologic conditions, but the mechanism underlying constitutive activation of the NF-κB pathway in cancer remains unclear. In this study, we investigated miRNA-mediated regulation of the NF-κB cascade in breast cancer. We report that miR-892b expression was significantly downregulated in human breast cancer specimens and correlated with poor patient survival. Overexpression of miR-892b in breast cancer cells significantly decreased tumor growth, metastatic capacity, and the ability to induce angiogenesis, whereas miR-892b depletion enhanced these properties, in vitro and in vivo. Furthermore, we demonstrate that miR-892b attenuated NF-κB signaling by directly targeting and suppressing multiple mediators of NF-κB, including TRAF2, TAK1, and TAB3, and thus, miR-892b silencing in breast cancer cells sustains NF-κB activity. Moreover, miR-892b downregulation was attributed to aberrant hypermethylation of its promoter. Taken together, our results provide insight into a new mechanism by which NF-κB signaling becomes constitutively activated in breast cancer and suggest a tumor-suppressive role for miR-829b, prompting further investigation into miRNA mimics for cancer therapy.
ISSN:0008-5472
1538-7445
DOI:10.1158/0008-5472.CAN-15-1770