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SIX4 Controls Anti-PD-1 Efficacy by Regulating STING Expression
Beiyuan Liang1, Evan H Zhang1, Zhen Ye1
1Department of Cancer Biology and Genetics, The Ohio State University, Columbus, Ohio.
Abstract:
The cGAS/STING cytosolic DNA-sensing pathway plays a significant role in antitumor immunity. Expression of STING is tightly regulated and commonly reduced or defective in many types of cancer. We have identified SIX4 as a significant regulator of STING expression in colon cancer cells. We showed that knockout of SIX4 decreased STING expression at the mRNA and protein levels while ectopic expression of SIX4 increased STING expression. Depletion of SIX4 led to attenuated STING activation and downstream signaling. Reexpression of SIX4 or ectopic expression of STING in SIX4 knockout cells reversed the effect. Ectopic expression of SIX4 enhanced DMXAA and cGAMP-induced STING activation and downstream signaling. Importantly, decrease of SIX4 expression substantially decreased tumor infiltration of CD8+ T cells and reduced the efficacy of PD-1 antibodies to diminish tumor growth in immune competent mice in vivo. Finally, analysis of The Cancer Genome Atlas colon cancer dataset indicated that tumors with high SIX4 expression were significantly enriched in the Inflammatory Response pathway. SIX4 expression also correlated with expression of multiple IFN-stimulated genes, inflammatory cytokines, and CD8A. Taken together, our results implicate that SIX4 is a principal regulator of STING expression in colon cancer cells, providing an additional mechanism and genetic marker to predict effective immune checkpoint blockade therapy responses.
Significance:
Our studies demonstrate that SIX4 is an important regulator of STING expression, providing a genetic marker or a therapeutic target to predict or enhance immune checkpoint blockade therapy responses in colon cancer.
Insights
SIX4 regulates STING expression in colon cancer, impacting antitumor immunity. This finding offers a potential biomarker for predicting responses to immune checkpoint blockade therapy.
Area of Science:
- Immunology
- Molecular Biology
- Oncology
Background:
- The cyclic GMP-AMP synthase (cGAS)/stimulator of interferon genes (STING) pathway is crucial for antitumor immunity.
- Reduced or defective STING expression is common in various cancers, impairing immune responses.
Purpose of the Study:
- To investigate the role of SIX4 in regulating STING expression in colon cancer.
- To determine if SIX4 impacts the efficacy of immune checkpoint blockade therapy.
Main Methods:
- SIX4 gene knockout and ectopic expression in colon cancer cells.
- Analysis of STING expression, activation, and downstream signaling.
- In vivo studies in immune-competent mice using PD-1 antibodies.
- Bioinformatic analysis of The Cancer Genome Atlas (TCGA) colon cancer dataset.
Main Results:
- SIX4 knockout decreased STING mRNA and protein levels, while SIX4 overexpression increased them.
- SIX4 depletion attenuated STING activation and downstream signaling.
- Reduced SIX4 expression decreased CD8+ T cell infiltration and PD-1 antibody efficacy in vivo.
- High SIX4 expression in colon tumors correlated with inflammatory response pathways and immune markers.
Conclusions:
- SIX4 is a key regulator of STING expression in colon cancer cells.
- SIX4 serves as a potential biomarker for predicting response to immune checkpoint blockade therapy.
- Targeting SIX4 may enhance immunotherapy efficacy in colon cancer.
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