Related Experiment Video
Updated: May 30, 2025

A Protocol for Explant Cultures of IDH1-mutant Diffuse Low-grade Gliomas
Published on: May 9, 2025
Immune checkpoint expression and therapeutic implications in IDH1-mutant and wild-type glioblastomas
Avaniyapuram Kannan Murugan1, Siddarth Kannan2, Ali S Alzahrani3
1Department of Molecular Oncology, King Faisal Specialist Hospital and Research Centre, Riyadh 11211 Saudi Arabia.
Abstract:
Programmed cell death protein 1 (PDCD1) and cluster of differentiation 274 (CD274) expression is implicated in escaping tumors from immune surveillance. Immune checkpoint inhibitors show promise in cancer therapy, yet their efficacy in glioblastomas, particularly with IDH1 mutations, remains unclear. This study analyzed two independent NGS datasets (n = 577 and n = 153) from TCGA to investigate the expression of PDCD1 and CD274 in glioblastomas and their relationship with IDH1 mutations. We used cBioPortal for mutation analysis, RNA seq for expression analysis, miRDB and miRabel for differential expression of miRNAs, and Kaplan-Meier for survival prediction. We found that 5.4% of glioblastomas harbored IDH1 mutations, correlating with improved overall survival (OS) (p = 2.196e-3). Different glioblastoma cohorts showed a diverse IDH1 mutational prevalence (4-31%). Despite this, IDH1Mu was consistently associated with better OS (p = 8.235e-5). Notably, PDCD1 and CD274 were statistically significantly highly expressed in both IDH1Wt (p < 0.0001) and IDH1Mu tumors (p < 0.0001), with higher expression linked to poorer survival outcomes (PDCD1: p = 0.009; CD274: p = 0.02). Differential co-expression analyses revealed distinct gene and miRNA profiles for IDH1Wt and IDH1Mu glioblastomas, with specific upregulation of PTEN and downregulation of MUC16 in IDH1Wt, and upregulation of PIK3R1 in IDH1Mu. Additionally, PIK3R1 and ITGB2 emerged as critical druggable targets. Our findings indicate that PDCD1 and CD274 are highly expressed irrespective of IDH1 mutation statuses, suggesting that glioblastomas could benefit from immunotherapy. Moreover, IDH1Mu glioblastomas may require a combination of PI3K/AKT/mTOR inhibitors and immunotherapy due to PIK3R1 overexpression.
Insights
Programmed cell death protein 1 (PDCD1) and cluster of differentiation 274 (CD274) are highly expressed in glioblastomas, regardless of IDH1 mutation status. This suggests potential benefits from immunotherapy for glioblastoma patients.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Programmed cell death protein 1 (PDCD1) and cluster of differentiation 274 (CD274) are key regulators of tumor immune evasion.
- Immune checkpoint inhibitors offer therapeutic potential, but their effectiveness in glioblastomas, especially IDH1-mutated ones, is not well understood.
Purpose of the Study:
- To investigate the expression of PDCD1 and CD274 in glioblastomas.
- To analyze the relationship between PDCD1/CD274 expression and IDH1 mutation status.
- To explore the impact of these factors on patient survival and identify potential therapeutic targets.
Main Methods:
- Analysis of two independent TCGA next-generation sequencing (NGS) datasets (n=577 and n=153).
- Utilized cBioPortal for mutation analysis, RNA sequencing for expression profiling, and miRDB/miRabel for miRNA analysis.
- Kaplan-Meier survival analysis was performed to predict overall survival.
Main Results:
- IDH1 mutations were found in 5.4% of glioblastomas and correlated with improved overall survival (OS).
- PDCD1 and CD274 were significantly overexpressed in both IDH1-wildtype and IDH1-mutant glioblastomas, with higher expression linked to poorer OS.
- Distinct gene and miRNA profiles were identified for IDH1-wildtype and IDH1-mutant tumors, highlighting PIK3R1 and ITGB2 as potential druggable targets.
Conclusions:
- PDCD1 and CD274 are highly expressed in glioblastomas irrespective of IDH1 mutation status, indicating potential for immunotherapy.
- IDH1-mutant glioblastomas may benefit from a combination therapy including PI3K/AKT/mTOR inhibitors due to PIK3R1 overexpression.

