Regulation of PD-L1 expression in K-ras-driven cancers through ROS-mediated FGFR1 signaling
Christophe Glorieux1, Xiaojun Xia1, Yong-Qiao He1
1Sun Yat-sen University Cancer Center, State Key Laboratory of Oncology in South China, Collaborative Innovation Center for Cancer Medicine, Guangzhou, 510060, China.
Abstract:
K-ras mutations are major genetic events that drive cancer development associated with aggressive malignant phenotypes, while expression of the immune checkpoint molecule PD-L1 plays a key role in cancer evasion of the immune surveillance that also profoundly affects the patient outcome. However, the relationship between K-ras oncogenic signal and PD-L1 expressions as an important area that requires further investigation. Using both in vitro and in vivo experimental models of K-ras-driven cancer, we found that oncogenic K-ras significantly enhanced PD-L1 expression through a redox-mediated mechanism. Activation of K-rasG12V promoted ROS generation and induced FGFR1 expression, leading to a significant upregulation of PD-L1. We further showed that exogenous ROS such as hydrogen peroxide alone was sufficient to activate FGFR1 and induce PD-L1, while antioxidants could largely abrogate PD-L1 expression in K-ras mutant cells, indicating a critical role of redox regulation. Importantly, genetic knockout of FGFR1 led to a decrease in PD-L1 expression, and impaired tumor growth in vivo due to a significant increase of T cell infiltration in the tumor tissues and thus enhanced T-cell-mediated tumor suppression. Our study has identified a novel mechanism by which K-ras promotes PD-L1 expression, and suggests that modulation of ROS or inhibition of the FGFR1 pathway could be a novel strategy to abrogate PD-L1-mediated immunosuppression and thus potentially improve the efficacy of immunotherapy in K-ras-driven cancers.
Insights
Oncogenic K-ras boosts PD-L1 expression via ROS and FGFR1, impacting immune evasion in cancers. Targeting this pathway may enhance cancer immunotherapy effectiveness.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- K-ras mutations drive aggressive cancers and PD-L1 expression aids immune evasion.
- The link between K-ras signaling and PD-L1 is not fully understood.
Purpose of the Study:
- Investigate the mechanism connecting K-ras oncogenic signals to PD-L1 expression.
- Explore potential therapeutic strategies targeting this pathway in K-ras-driven cancers.
Main Methods:
- Utilized in vitro and in vivo models of K-ras-driven cancer.
- Assessed the role of reactive oxygen species (ROS) and FGFR1 in PD-L1 regulation.
- Performed genetic knockout of FGFR1 and evaluated tumor growth and immune cell infiltration.
Main Results:
- Oncogenic K-ras significantly increased PD-L1 expression through a redox-mediated pathway.
- ROS activation of FGFR1 was shown to upregulate PD-L1.
- FGFR1 knockout reduced PD-L1, impaired tumor growth, and increased T cell infiltration.
Conclusions:
- Identified a novel K-ras-driven mechanism for PD-L1 upregulation involving ROS and FGFR1.
- Suggests targeting ROS or FGFR1 as a strategy to overcome PD-L1-mediated immunosuppression.
- Highlights potential for improved immunotherapy in K-ras-driven cancers.
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