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Mutations in KMT2C, BCOR and KDM5C Predict Response to Immune Checkpoint Blockade Therapy in Non-Small Cell Lung
Dingxie Liu1, Jonathan Benzaquen2, Luc G T Morris3
1Bluewater Biotech LLC, New Providence, NJ 07974, USA.
Abstract:
Efficient predictive biomarkers are urgently needed to identify non-small cell lung cancer (NSCLC) patients who could benefit from immune checkpoint blockade (ICB) therapy. Since chromatin remodeling is required for DNA repair process, we asked whether mutations in chromatin remodeling genes could increase tumor mutational burden (TMB) and predict response to ICB therapy in NSCLC. Analysis of seven ICB-treated NSCLC cohorts revealed that mutations of three chromatin remodeling-related genes, including KMT2C, BCOR and KDM5C, were significantly associated with ICB response, and combined mutations of these three genes further enhance this association. NSCLC patients with KMT2C/BCOR/KDM5C mutations had comparable clinical outcomes to TMB-high patients in terms of objective response rate, durable clinical benefit and overall survival. Although KMT2C/BCOR/KDM5C mutations were positively correlated with TMB levels in NSCLC, the association of this mutation with better ICB response was independent of tumor TMB and programmed death-ligand 1 (PD-L1) level, and combination of KMT2C/BCOR/KDM5C mutations with TMB or PD-L1 further improve the prediction of ICB response in NSCLC patients. Cancer Genome Atlas (TCGA) pan-cancer analysis suggested that the association of KMT2C/BCOR/KDM5C mutations with ICB response observed here might not result from DNA repair defects. In conclusion, our data indicate that KMT2C/BCOR/KDM5C mutation has the potential to serve as a predictive biomarker, alone or combined with PD-L1 expression or TMB, for ICB therapy in NSCLC.
Insights
Mutations in three chromatin remodeling genes (KMT2C, BCOR, KDM5C) predict immune checkpoint blockade (ICB) therapy response in non-small cell lung cancer (NSCLC). These mutations offer a predictive biomarker, alone or combined with PD-L1 or tumor mutational burden (TMB).
Area of Science:
- Oncology
- Genetics
- Immunotherapy
Background:
- Predictive biomarkers are crucial for identifying non-small cell lung cancer (NSCLC) patients who will benefit from immune checkpoint blockade (ICB) therapy.
- Chromatin remodeling is essential for DNA repair, prompting investigation into its role in ICB response.
Purpose of the Study:
- To determine if mutations in chromatin remodeling genes can increase tumor mutational burden (TMB) and predict ICB therapy response in NSCLC.
- To evaluate the potential of specific chromatin remodeling gene mutations as predictive biomarkers for ICB therapy.
Main Methods:
- Analysis of seven ICB-treated NSCLC cohorts.
- Pan-cancer analysis of The Cancer Genome Atlas (TCGA) data.
Main Results:
- Mutations in KMT2C, BCOR, and KDM5C were significantly associated with ICB response in NSCLC.
- Combined mutations in KMT2C/BCOR/KDM5C enhanced the association with ICB response and clinical outcomes, comparable to TMB-high patients.
- The predictive value of KMT2C/BCOR/KDM5C mutations for ICB response was independent of TMB and PD-L1 levels.
- Combining KMT2C/BCOR/KDM5C mutations with TMB or PD-L1 improved prediction of ICB response.
Conclusions:
- KMT2C/BCOR/KDM5C mutations show potential as predictive biomarkers for ICB therapy in NSCLC.
- These mutations can be used alone or in combination with PD-L1 expression or TMB for improved prediction.
- The association of these mutations with ICB response may not be solely due to DNA repair defects.
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