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Clinical and Biologic Correlates of ADORA2A Transcriptomic Expression in Cancer
Aditya Shreenivas1, Daisuke Nishizaki2, Suzanna Lee2
1Department of Oncology, Medical College of Wisconsin Cancer Center, Milwaukee, WI 53226, USA.
Abstract:
ADORA2A (adenosine A2a receptor) and ADORA2B propagate immunoregulatory signals, including restricting both innate and adaptive immunity, though recent data also suggest a tumor suppressor effect in certain settings. We evaluated the RNA expression from 514 tumors in a clinical-grade laboratory; 489 patients with advanced/metastatic disease had clinical outcome correlates. Transcript expression was standardized to internal housekeeping genes and ranked (0-100 scale) relative to 735 specimens from 35 different cancer types. Transcript abundance rank values were defined as "low/moderate" (0-74) or "high" (75-100) percentile RNA expression ranks. Overall, 20.8% of tumors had high ADORA2A (≥75 percentile RNA rank). The greatest proportion of high ADORA2A expressors was found in neuroendocrine and breast cancers and sarcomas, whereas the lowest was found in colorectal and ovarian cancers, albeit with patient-to-patient variability. In multivariable logistic regression analysis, there was a significant positive correlation between high ADORA2A RNA expression and a high expression of the immune checkpoint-related molecules PD-1 (p = 0.015), VISTA (p ≤ 0.001), CD38 (p = 0.031), and CD39 (p ≤ 0.001). In 217 immunotherapy-treated patients, high ADORA2A did not correlate significantly with progression-free (p = 0.51) or overall survival (OS) (p = 0.09) from the initiation of the checkpoint blockade. However, high versus not-high ADORA2A transcript expression correlated with longer OS from the time of advanced/metastatic disease (N = 489 patients; (HR 0.69 (95% CI 0.51-0.95) (p = 0.02)). Therefore, high ADORA2A transcript levels may be a favorable prognostic factor, unrelated to immunotherapy. Importantly, ascertaining co-expression patterns of ADORA2A with PD-1 and VISTA in individual tumors as a basis for the precision co-targeting of ADORA2A and these other checkpoint-related molecules warrants investigation in clinical trials.
Insights
High adenosine A2a receptor (ADORA2A) RNA expression is linked to longer overall survival in advanced cancer patients, independent of immunotherapy. This suggests ADORA2A may serve as a favorable prognostic factor, warranting further investigation for targeted therapies.
Area of Science:
- Immunology and Cancer Biology
- Molecular Oncology
- Translational Research
Background:
- Adenosine A2a receptor (ADORA2A) and ADORA2B receptors modulate immune responses and may have tumor suppressor roles.
- Understanding ADORA2A expression patterns in various cancer types is crucial for evaluating its clinical significance.
Purpose of the Study:
- To investigate the RNA expression levels of ADORA2A across diverse cancer types.
- To correlate ADORA2A expression with clinical outcomes in patients with advanced/metastatic disease.
- To examine the relationship between ADORA2A expression and immune checkpoint molecules.
Main Methods:
- RNA expression analysis of ADORA2A in 514 tumors using clinical-grade laboratory methods.
- Standardization of transcript expression and ranking relative to 735 specimens across 35 cancer types.
- Multivariable logistic regression to assess correlations between ADORA2A expression, immune checkpoint molecules (PD-1, VISTA, CD38, CD39), and clinical outcomes in 489 patients.
Main Results:
- High ADORA2A RNA expression (≥75 percentile) was observed in 20.8% of tumors, with notable prevalence in neuroendocrine cancers, breast cancers, and sarcomas.
- High ADORA2A expression positively correlated with high expression of immune checkpoint molecules PD-1, VISTA, CD38, and CD39.
- High ADORA2A transcript levels were associated with longer overall survival in patients with advanced/metastatic disease (HR 0.69, p=0.02), independent of immunotherapy response.
Conclusions:
- Elevated ADORA2A transcript levels appear to be a favorable prognostic factor in advanced/metastatic cancer, irrespective of immunotherapy.
- The co-expression of ADORA2A with PD-1 and VISTA suggests potential for precision co-targeting strategies.
- Further clinical trials are warranted to explore the therapeutic potential of targeting ADORA2A in combination with other immune checkpoint inhibitors.
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