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Published on: July 21, 2018
DUSP22 inhibits lung tumorigenesis by suppression of EGFR/c-Met signaling
Hsiao-Han Lin1, Cheng-Wei Chang1, Yu-Ting Liao1
1Immunology Research Center, National Health Research Institutes, Miaoli County, 35053, Taiwan.
Abstract:
DUSP22, an atypical dual-specificity phosphatase enzyme, plays a significant role in regulating multiple kinase signaling pathways by dephosphorylation. Our study demonstrated that decreased DUSP22 expression is associated with shorter disease-free survival, advanced TNM (tumor, lymph nodes, and metastasis), cancer stage, and higher tumor grade in lung adenocarcinoma (LUAD) patients. Exogenous DUSP22 expression reduces the colony-forming capacity of lung cancer cells and inhibits xenograft tumor growth primarily by targeting EGFR and suppressing its activity through dephosphorylation. Knockdown of DUSP22 using shRNA enhances EGFR dependency in HCC827 lung cancer cells and increases sensitivity to gefitinib, an EGFR inhibitor. Consistently, genetic deletion of DUSP22 enhances EGFRdel (exon 19 deletion)-driven lung tumorigenesis and elevates EGFR activity. Pharmacological inhibition of DUSP22 activates EGFR, ERK1/2, and upregulates downstream PD-L1 expression. Additionally, lentiviral deletion of DUSP22 by shRNA enhances lung cancer cell migration through EGFR/c-Met and PD-L1-dependent pathways. Gefitinib, an EGFR inhibitor, mechanistically suppresses migration induced by DUSP22 deletion and inhibits c-Met activity. Furthermore, cabozantinib, a c-Met inhibitor, reduces migration and attenuates EGFR activation caused by DUSP22 deletion. Collectively, our findings support the hypothesis that loss of DUSP22 function in lung cancer cells confers a survival advantage by augmenting EGFR signaling, leading to increased activation of downstream c-Met, ERK1/2, and PD-L1 axis, ultimately contributing to the progression of advanced lung cancer.
Insights
Loss of DUSP22 in lung cancer cells promotes tumor growth and metastasis by activating EGFR signaling. Restoring DUSP22 function may offer a therapeutic strategy for advanced lung adenocarcinoma.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- DUSP22 is a dual-specificity phosphatase regulating kinase pathways.
- Reduced DUSP22 expression correlates with poor prognosis in lung adenocarcinoma (LUAD).
Purpose of the Study:
- To investigate the role of DUSP22 in LUAD progression.
- To elucidate the molecular mechanisms by which DUSP22 loss affects cancer growth and signaling.
Main Methods:
- In vitro studies using lung cancer cell lines (e.g., HCC827).
- In vivo xenograft models.
- Gene manipulation techniques (shRNA, genetic deletion).
- Pharmacological inhibition of key signaling molecules (EGFR, c-Met).
Main Results:
- DUSP22 loss enhances EGFR activity, promoting lung cancer cell proliferation and xenograft tumor growth.
- DUSP22 knockdown increases EGFR dependency and gefitinib sensitivity.
- DUSP22 deletion activates EGFR/c-Met/ERK1/2/PD-L1 axis, driving cell migration.
- EGFR and c-Met inhibitors counteract migration induced by DUSP22 loss.
Conclusions:
- DUSP22 loss confers a survival advantage in LUAD by upregulating EGFR signaling.
- The EGFR/c-Met/ERK1/2/PD-L1 pathway is crucial for DUSP22-deficient lung cancer progression.
- Targeting EGFR or c-Met may be effective in treating DUSP22-loss associated lung cancer.
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