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Targeting Src-Hic-5 Signal Cascade for Preventing Migration of Cholangiocarcinoma Cell HuCCT1
Wen-Sheng Wu1,2, Chin-Hsien Ling1, Ming-Che Lee3,4
1Division of General Surgery, Department of Surgery, Hualien Tzu Chi Hospital, Buddhist Tzu Chi Medical Foundation, Hualien 970, Taiwan.
Abstract:
Cholangiocarcinoma (CCA) is the second most common primary liver cancer with poor prognosis. The deregulation of a lot of oncogenic signaling molecules, such as receptor tyrosine kinases (RTKs), has been found to be associated with CCA progression. However, RTKs-based target therapy showed limited improvement suggesting a need to search for alternative targets for preventing CCA progression. To address this issue, we screened the oncogenic signal molecules upregulated in surgical tissues of CCAs. Interestingly, over-expression of hydrogen peroxide inducible clone-5 (Hic-5) coupled with over-activation of Src, AKT, JNK were observed in 50% of the cholangiocarcinoma with metastatic potential. To investigate whether these molecules may work together to trigger metastatic signaling, their up-and-down relationship was examined in a well-established cholangiocarcinoma cell line, HuCCT1. Src inhibitors PP1 (IC50, 13.4 μM) and dasatinib (IC50, 0.1 μM) significantly decreased both phosphorylated AKT (phosphor-AKT Thr450) and Hic-5 in HuCCT1. In addition, a knockdown of Hic-5 effectively suppressed activation of Src, JNK, and AKT. These implicated a positive cross-talk occurred between Hic-5 and Src for triggering AKT activation. Further, depletion of Hic-5 and inhibition of Src suppressed HuccT1 cell migration in a dose-dependent manner. Remarkably, prior transfection of Hic-5 siRNA for 24 h followed by treatment with PP1 or dasatinib for 24 h resulted in additive suppression of HuCCT1 migration. This suggested that a promising combinatory efficacy can be achieved by depletion of Hic-5 coupled with inhibition of Src. In the future, target therapy against CCA progression by co-targeting Hic-5 and Src may be successfully developed in vivo.
Insights
Targeting hydrogen peroxide inducible clone-5 (Hic-5) and Src may offer new therapies for cholangiocarcinoma (CCA) progression. Co-targeting Hic-5 and Src suppressed CCA cell migration, suggesting a promising combination strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Cholangiocarcinoma (CCA) is a primary liver cancer with poor prognosis.
- Receptor tyrosine kinases (RTKs) are implicated in CCA progression, but RTK-targeted therapies show limited efficacy.
- Alternative therapeutic targets are needed to prevent CCA progression.
Purpose of the Study:
- To identify and investigate novel oncogenic signaling molecules involved in CCA progression.
- To explore the relationship between hydrogen peroxide inducible clone-5 (Hic-5), Src, AKT, and JNK in CCA.
- To evaluate the potential of co-targeting Hic-5 and Src for CCA treatment.
Main Methods:
- Screening of oncogenic signal molecules in surgical CCA tissues.
- Examination of molecular relationships in the HuCCT1 cholangiocarcinoma cell line.
- Utilizing Src inhibitors (PP1, dasatinib) and Hic-5 knockdown (siRNA).
Main Results:
- Over-expression of Hic-5 and activation of Src, AKT, and JNK were observed in metastatic CCA.
- Src inhibition decreased phosphorylated AKT and Hic-5 levels.
- Hic-5 knockdown suppressed Src, JNK, and AKT activation, indicating a positive cross-talk.
- Depletion of Hic-5 and Src inhibition synergistically suppressed CCA cell migration.
Conclusions:
- A positive cross-talk exists between Hic-5 and Src, driving AKT activation and CCA cell migration.
- Co-targeting Hic-5 and Src presents a promising therapeutic strategy for preventing CCA progression.
- Further in vivo studies are warranted to develop combined Hic-5 and Src targeted therapy for CCA.
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