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Published on: October 2, 2020
WIP1 promotes cancer stem cell properties by inhibiting p38 MAPK in NSCLC
Kaiyuan Deng1,2, Liang Liu3, Xiaoming Tan3,4
1School of Medicine, Nankai University, Tianjin, 30071, China.
Abstract:
Cancer stem cells (CSCs) are a small population of stem cell-like cancer cells that can initiate tumors in vivo, and are the major source of cancer initiation, relapse, and drug resistance. We previously reported that the p38 MAPK, through its downstream effectors MK2 and HSP27, suppressed CSC properties by downregulating the expression of transcription factors that mediate stemness in non-small-cell lung cancer (NSCLC) cells, and that despite unaltered total expression of total p38 proteins, the levels of activated p38 were reduced in NSCLC tissues. However, the mechanism underlying the reduced levels of activated p38 in NSCLC is unknown. In this study, we identified WIP1, a p38 phosphatase frequently overexpressed in cancer, as a suppressor of p38 in a pathway that regulates CSC properties in NSCLC. Increased WIP1 expression correlated with reduced levels of activated p38, and with increased levels of a CSC marker in NSCLC tissues. Further investigation revealed that WIP1 promoted stemness-related protein expression and CSC properties by inhibiting p38 activity in NSCLC cells. WIP1 inhibitors are currently under development as anticancer drugs based on their ability to reactivate p53. We found that a WIP1 inhibitor suppressed stemness-related protein expression and CSC properties by activating p38 in NSCLC cells in vitro and in vivo. These studies have identified the WIP1-p38-MK2-HSP27 cascade as a novel signaling pathway that, when altered, promotes CSC properties in NSCLC development, and have defined novel mechanisms underlying the oncogenic activity of WIP1 and the anticancer efficacy of WIP1 inhibitors.
Insights
WIP1 phosphatase suppresses p38 activity, promoting cancer stem cell properties in non-small-cell lung cancer. WIP1 inhibitors reactivate p38, reducing cancer stem cells and offering a new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Cancer stem cells (CSCs) drive tumor initiation, relapse, and drug resistance in non-small-cell lung cancer (NSCLC).
- Reduced p38 MAPK activation, not total protein levels, is observed in NSCLC tissues, suggesting a regulatory mechanism is impaired.
- The specific pathway causing reduced p38 activation and its role in CSC properties remain unclear.
Purpose of the Study:
- To identify the mechanism responsible for reduced p38 activation in NSCLC.
- To investigate the role of WIP1 phosphatase in regulating CSC properties via the p38 pathway.
- To evaluate the therapeutic potential of WIP1 inhibitors in NSCLC.
Main Methods:
- Correlation analysis of WIP1 expression, p38 activation, and CSC markers in NSCLC tissues.
- In vitro and in vivo experiments assessing the effect of WIP1 modulation on p38 activity and CSC properties.
- Utilizing WIP1 inhibitors to examine their impact on stemness and p38 activation in NSCLC models.
Main Results:
- WIP1 phosphatase is overexpressed in NSCLC and inversely correlates with p38 activation.
- Increased WIP1 expression is associated with elevated CSC markers and enhanced stemness properties.
- WIP1 inhibition reactivates p38, suppresses stemness, and reduces CSC properties both in vitro and in vivo.
Conclusions:
- The WIP1-p38-MK2-HSP27 cascade is a novel pathway regulating CSC properties in NSCLC.
- WIP1 oncogenic activity stems from its inhibition of p38, promoting stemness.
- WIP1 inhibitors demonstrate anticancer efficacy by reactivating p38 and targeting CSCs in NSCLC.
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