Classifying cGAS-STING Activity Links Chromosomal Instability with Immunotherapy Response in Metastatic Bladder
Mateo Sokač1,2,3, Johanne Ahrenfeldt1,2,3, Kevin Litchfield4
1Department of Molecular Medicine, Aarhus University Hospital, Aarhus, Denmark.
Abstract:
The cGAS-STING pathway serves a critical role in anticancer therapy. Particularly, response to immunotherapy is likely driven by both active cGAS-STING signaling that attracts immune cells, and by the presence of cancer neoantigens that presents as targets for cytotoxic T cells. Chromosomal instability (CIN) is a hallmark of cancer, but also leads to an accumulation of cytosolic DNA that in turn results in increased cGAS-STING signaling. To avoid triggering the cGAS-STING pathway, it is commonly disrupted by cancer cells, either through mutations in the pathway or through transcriptional silencing. Given its effect on the immune system, determining the cGAS-STING activation status prior to treatment initiation is likely of clinical relevance. Here, we used combined expression data from 2,307 tumors from five cancer types from The Cancer Genome Atlas to define a novel cGAS-STING activity score based on eight genes with a known role in the pathway. Using unsupervised clustering, four distinct categories of cGAS-STING activation were identified. In multivariate models, the cGAS-STING active tumors show improved prognosis. Importantly, in an independent bladder cancer immunotherapy-treated cohort, patients with low cGAS-STING expression showed limited response to treatment, while patients with high expression showed improved response and prognosis, particularly among patients with high CIN and more neoantigens. In a multivariate model, a significant interaction was observed between CIN, neoantigens, and cGAS-STING activation. Together, this suggests a potential role of cGAS-STING activity as a predictive biomarker for the application of immunotherapy.
Significance:
The cGAS-STING pathway is induced by CIN, triggers inflammation and is often deficient in cancer. We provide a tool to evaluate cGAS-STING activity and demonstrate clinical significance in immunotherapy response.
Insights
The cyclic GMP-AMP synthase (cGAS)-stimulator of interferon genes (STING) pathway is crucial for anticancer therapy. High cGAS-STING activity predicts better immunotherapy response, especially in cancers with high chromosomal instability and neoantigens.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- The cGAS-STING pathway is vital for anticancer therapy, linking cancer neoantigens and immune cell attraction.
- Chromosomal instability (CIN) in cancer increases cytosolic DNA, activating the cGAS-STING pathway, which cancer cells often disrupt.
- Assessing cGAS-STING activation status before treatment is clinically relevant due to its immune system effects.
Purpose of the Study:
- To develop a novel cGAS-STING activity score using gene expression data.
- To identify distinct categories of cGAS-STING activation in tumors.
- To evaluate the clinical significance of cGAS-STING activity as a predictive biomarker for immunotherapy response.
Main Methods:
- Combined gene expression data from 2,307 tumors across five cancer types from The Cancer Genome Atlas.
- Unsupervised clustering to define four categories of cGAS-STING activation based on eight pathway-related genes.
- Multivariate analysis to assess the relationship between cGAS-STING activity, CIN, neoantigens, and patient prognosis and immunotherapy response in an independent bladder cancer cohort.
Main Results:
- Identified four distinct categories of cGAS-STING activation.
- Found that tumors with higher cGAS-STING activity are associated with improved prognosis.
- Demonstrated that low cGAS-STING expression correlated with limited immunotherapy response in bladder cancer patients, while high expression predicted better response, particularly in patients with high CIN and neoantigens.
Conclusions:
- The developed cGAS-STING activity score effectively categorizes tumors based on pathway activation.
- cGAS-STING activity is a significant prognostic factor and a potential predictive biomarker for immunotherapy.
- A significant interaction between CIN, neoantigens, and cGAS-STING activation highlights their combined role in predicting immunotherapy outcomes.


