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1.
J Clin Invest ; 124(9): 3807-24, 2014 Sep.
Article in English | MEDLINE | ID: mdl-25083991

ABSTRACT

Despite advancement in breast cancer treatment, 30% of patients with early breast cancers experience relapse with distant metastasis. It is a challenge to identify patients at risk for relapse; therefore, the identification of markers and therapeutic targets for metastatic breast cancers is imperative. Here, we identified DP103 as a biomarker and metastasis-driving oncogene in human breast cancers and determined that DP103 elevates matrix metallopeptidase 9 (MMP9) levels, which are associated with metastasis and invasion through activation of NF-κB. In turn, NF-κB signaling positively activated DP103 expression. Furthermore, DP103 enhanced TGF-ß-activated kinase-1 (TAK1) phosphorylation of NF-κB-activating IκB kinase 2 (IKK2), leading to increased NF-κB activity. Reduction of DP103 expression in invasive breast cancer cells reduced phosphorylation of IKK2, abrogated NF-κB-mediated MMP9 expression, and impeded metastasis in a murine xenograft model. In breast cancer patient tissues, elevated levels of DP103 correlated with enhanced MMP9, reduced overall survival, and reduced survival after relapse. Together, these data indicate that a positive DP103/NF-κB feedback loop promotes constitutive NF-κB activation in invasive breast cancers and activation of this pathway is linked to cancer progression and the acquisition of chemotherapy resistance. Furthermore, our results suggest that DP103 has potential as a therapeutic target for breast cancer treatment.


Subject(s)
Breast Neoplasms/pathology , DEAD Box Protein 20/physiology , Breast Neoplasms/mortality , Cell Line, Tumor , Cell Movement , DEAD Box Protein 20/analysis , DEAD Box Protein 20/genetics , Female , Humans , I-kappa B Kinase/metabolism , MAP Kinase Kinase Kinases/physiology , Matrix Metalloproteinase 9/analysis , Matrix Metalloproteinase 9/genetics , NF-kappa B/physiology , Neoplasm Invasiveness , Neoplasm Metastasis
2.
Cancer Prev Res (Phila) ; 5(4): 631-43, 2012 Apr.
Article in English | MEDLINE | ID: mdl-22369852

ABSTRACT

Cumulative evidences(s) have established that the constitutive activation of STAT3 plays a pivotal role in the proliferation, survival, metastasis, and angiogenesis and thus can contribute directly to the pathogenesis of hepatocellular carcinoma (HCC). Thus, novel agents that can inhibit STAT3 activation have potential for both prevention and treatment of HCCs. The effect of celastrol on STAT3 activation, associated protein kinases, STAT3-regulated gene products, cellular proliferation, and apoptosis was investigated. The in vivo effect of celastrol on the growth of human HCC xenograft tumors in athymic nu/nu mice was also examined. We observed that celastrol inhibited both constitutive and inducible STAT3 activation, and the suppression was mediated through the inhibition of activation of upstream kinases c-Src, as well as Janus-activated kinase-1 and -2. Vanadate treatment reversed the celastrol-induced modulation of STAT3, suggesting the involvement of a tyrosine phosphatase. The inhibition of STAT3 activation by celastrol led to the suppression of various gene products involved in proliferation, survival, and angiogenesis. Celastrol also inhibited the proliferation and induced apoptosis in HCC cells. Finally, when administered intraperitoneally, celastrol inhibited STAT3 activation in tumor tissues and the growth of human HCC xenograft tumors in athymic nu/nu mice without any side effects. Overall, our results suggest for the first time that celastrol exerts its antiproliferative and proapoptotic effects through suppression of STAT3 signaling in HCC both in vitro and in vivo.


Subject(s)
Apoptosis , Carcinoma, Hepatocellular/pathology , Janus Kinase 2/metabolism , Liver Neoplasms/pathology , STAT3 Transcription Factor/metabolism , Triterpenes/pharmacology , Animals , Female , Gene Expression Regulation , Humans , In Vitro Techniques , Mice , Mice, Nude , Neoplasm Transplantation , Pentacyclic Triterpenes , Signal Transduction , Tetrazolium Salts/pharmacology , Thiazoles/pharmacology , Vanadates/pharmacology
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