Targeting MEK/COX-2 axis improve immunotherapy efficacy in dMMR colorectal cancer with PIK3CA overexpression
Kunwei Peng1,2,3, Yongxiang Liu1, Shousheng Liu1,2
1State Key Laboratory of Oncology in South China, Guangdong Provincial Clinical Research Center for Cancer, Sun Yat-sen University Cancer Center, 651 Dongfeng East Road, Guangzhou, Guangdong, 510060, China.
Purpose:
PIK3CA mutation or overexpression is associated with immunotherapy resistance in multiple cancer types, but is also paradoxically associated with benefit of COX-2 inhibition on patient survival of colorectal cancer (CRC) with mismatch repair deficiency (dMMR). This study examined whether and how PIK3CA status affected COX-2-mediated tumor inflammation and immunotherapy response of dMMR CRC.
Methods:
Murine colon cancer cells MC38, CT26, and CT26-Mlh1-KO were used to construct PIK3CA knockdown and overexpression models to mimic dMMR CRC with PIK3CA dysregulation, and xenograft models were used to evaluate how PIK3CA regulate COX-2 expression, CD8+ T cells infiltration, tumor growth, and therapy response to anti-PD-L1 treatment using immunocompetent mice. Western blot was carried out to delineate the signaling pathways in human and mouse cancer cells, and immunohistochemical analysis together with bioinformatics analysis using human patient samples.
Results:
PIK3CA upregulates COX-2 expression through MEK/ERK signaling pathway independent of AKT signaling to promote tumor inflammation and immunosuppression. PIK3CA knockdown profoundly reduced CT26 tumor growth in a CD8+ T cell-dependent manner, while PIK3CA overexpression significantly inhibited CD8+ T cells infiltration and promoted tumor growth. Furthermore, MEK or COX-2 inhibition augmented the anti-tumor activity of anti-PD-L1 immunotherapy on dMMR CRC mouse models, accompanied with increased CD8+ T cells infiltration and activated tumor microenvironment.
Conclusion:
Our results identified that the PIK3CA hyperactivation in dMMR CRC upregulated COX-2 through MEK signaling, which inhibited CD8+ T cells infiltration and promoted tumor growth, together led to immunotherapy resistance. COX-2 or MEK inhibition may relieve therapy resistance and promote therapy efficacy of anti-PD-1/PD-L1 immunotherapy for treating dMMR CRC with PIK3CA overexpression or activating mutation.
Insights
PIK3CA activation in mismatch repair deficient colorectal cancer promotes tumor growth and immunotherapy resistance by upregulating COX-2. Inhibiting COX-2 or MEK can overcome this resistance, enhancing anti-PD-L1 therapy efficacy.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- PIK3CA alterations are linked to immunotherapy resistance.
- Paradoxically, PIK3CA status influences COX-2 inhibition benefits in mismatch repair deficient colorectal cancer (dMMR CRC).
Purpose of the Study:
- To investigate how PIK3CA status affects COX-2-mediated inflammation and immunotherapy response in dMMR CRC.
- To elucidate the role of PIK3CA in regulating tumor microenvironment and response to anti-PD-L1 therapy.
Main Methods:
- Utilized PIK3CA knockdown and overexpression models in murine colon cancer cell lines (MC38, CT26, CT26-Mlh1-KO).
- Evaluated PIK3CA's effect on COX-2 expression, CD8+ T cell infiltration, tumor growth, and anti-PD-L1 therapy response in xenograft models.
- Employed Western blot, immunohistochemistry, and bioinformatics analysis on human samples.
Main Results:
- PIK3CA upregulates COX-2 via the MEK/ERK pathway, promoting inflammation and immunosuppression.
- PIK3CA knockdown reduced tumor growth dependently on CD8+ T cells; overexpression inhibited T cell infiltration and increased tumor growth.
- MEK or COX-2 inhibition enhanced anti-PD-L1 efficacy, increasing CD8+ T cell infiltration and activating the tumor microenvironment.
Conclusions:
- PIK3CA hyperactivation in dMMR CRC drives immunotherapy resistance by upregulating COX-2 through MEK signaling, impairing CD8+ T cell infiltration.
- Targeting COX-2 or MEK may overcome resistance and improve anti-PD-1/PD-L1 immunotherapy outcomes in dMMR CRC with PIK3CA alterations.
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