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Alteration in TET1 as potential biomarker for immune checkpoint blockade in multiple cancers
Hao-Xiang Wu1, Yan-Xing Chen1, Zi-Xian Wang1
1Department of Medical Oncology, State Key Laboratory of Oncology in South China, Collaborative Innovation Center for Cancer Medicine, Sun Yat-sen University Cancer Center, Guangzhou, 510060, China.
Background:
Immune checkpoint inhibitors (ICIs) have achieved impressive success in different cancer types, yet responses vary and predictive biomarkers are urgently needed. Growing evidence points to a link between DNA methylation and anti-tumor immunity, while clinical data on the association of genomic alterations in DNA methylation-related genes and ICI response are lacking.
Methods:
Clinical cohorts with annotated response and survival data and matched mutational data from published studies were collected and consolidated. The predictive function of specific mutated genes was first tested in the discovery cohort and later validated in the validation cohort. The association between specific mutated genes and tumor immunogenicity and anti-tumor immunity was further investigated in the Cancer Genome Altas (TCGA) dataset.
Results:
Among twenty-one key genes involving in the regulation of DNA methylation, TET1-mutant (TET1-MUT) was enriched in patients responding to ICI treatment in the discovery cohort (p=0.003). TET1 was recurrently mutated across multiple cancers and more frequently seen in skin, lung, gastrointestinal, and urogenital cancers. In the discovery cohort (n = 519), significant differences were observed between TET1-MUT and TET1-wildtype (TET1-WT) patients regarding objective response rate (ORR, 60.9% versus 22.8%, P < 0.001), durable clinical benefit (DCB, 71.4% versus 31.6%, P < 0.001), and progression-free survival (PFS, hazard ratio = 0.46 [95% confidence interval, 0.25 to 0.82], P = 0.008). In the validation cohort (n = 1395), significant overall survival (OS) benefit was detected in the TET1-MUT patients compared to TET1-WT patients (hazard ratio = 0.47 [95% confidence interval, 0.25 to 0.88], P = 0.019), which was, importantly, independent of tumor mutational burden and high microsatellite instability; as well as not attributed to the prognostic impact of TET1-MUT (P > 0.05 in both two non-ICI-treated cohorts). In TCGA dataset, TET1-MUT was strongly associated with higher tumor mutational burden and neoantigen load, and inflamed pattern of tumor-infiltrating T lymphocytes, immune signatures and immune-related gene expressions.
Conclusions:
TET1-MUT was strongly associated with higher ORR, better DCB, longer PFS, and improved OS in patients receiving ICI treatment, suggesting that TET1-MUT is a novel predictive biomarker for immune checkpoint blockade across multiple cancer types.
Insights
Mutations in the TET1 gene (TET1-MUT) predict a better response to immune checkpoint inhibitors (ICIs) across various cancers. This finding identifies TET1-MUT as a promising biomarker for enhancing ICI therapy effectiveness.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Immune checkpoint inhibitors (ICIs) show promise in cancer treatment, but response variability necessitates predictive biomarkers.
- The link between DNA methylation and anti-tumor immunity is recognized, yet clinical data on DNA methylation gene alterations and ICI response are limited.
Purpose of the Study:
- To investigate the association between genomic alterations in DNA methylation-related genes and patient response to immune checkpoint inhibitors.
- To identify novel predictive biomarkers for immune checkpoint blockade therapy.
Main Methods:
- Consolidated clinical cohorts with response, survival, and mutational data from published studies.
- Tested predictive function of mutated genes in discovery and validation cohorts.
- Analyzed association with tumor immunogenicity and anti-tumor immunity using TCGA dataset.
Main Results:
- TET1-mutant (TET1-MUT) patients showed significantly higher objective response rates (ORR), durable clinical benefit (DCB), and progression-free survival (PFS) compared to TET1-wildtype (TET1-WT).
- TET1-MUT was associated with improved overall survival (OS) independent of tumor mutational burden and microsatellite instability.
- TET1-MUT correlated with increased tumor mutational burden, neoantigen load, and an inflamed immune microenvironment in TCGA data.
Conclusions:
- TET1-MUT is a novel predictive biomarker for immune checkpoint blockade across multiple cancer types.
- TET1-MUT is strongly associated with enhanced treatment efficacy, including higher ORR, better DCB, longer PFS, and improved OS.

