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.

Cancers
|June 10, 2022
PubMed

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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