Related Experiment Video
Updated: Mar 29, 2026

Comparative Lesions Analysis Through a Targeted Sequencing Approach
Published on: November 5, 2019
Real-World Prevalence and Structural Validation of the Canonical 9p21 MTAP-CDKN2A/B Deletion in Non-NSCLC Solid
Miran Han1, Eunbyeol Lee2,3, Ji Eun Shin1
1Division of Hematology-Oncology, Department of Medicine, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul 06351, Republic of Korea.
Abstract:
Background: Deletion of the MTAP gene at chromosome 9p21.3 defines a therapeutically actionable molecular subset of cancers due to synthetic lethal vulnerability to PRMT5 and MAT2A inhibition. The real-world prevalence and genomic context of MTAP deletion in diverse solid tumors remain incompletely characterized. Methods: We retrospectively analyzed 579 solid tumor specimens subjected to next-generation sequencing-based copy-number profiling. The prevalence of MTAP deletion and its co-occurrence with CDKN2A and CDKN2B were evaluated, and genomic deletion patterns across chromosome 9 were systematically assessed. Results: MTAP deletion was detected in 14 cases (2.4%, 95% confidence interval [CI], 1.45-4.02%), with enrichment in sarcoma, pancreatic cancer, and urothelial carcinoma. Concurrent CDKN2A loss was observed in 92.9% of MTAP-deleted tumors, and 64.3% showed additional CDKN2B loss, indicating a coordinated focal deletion event at 9p21.3. Statistical analyses confirmed strong genomic associations between MTAP and neighboring tumor suppressor genes. Across the full cohort, deletion frequency peaked at the 9p21 locus, and among MTAP-deleted tumors, co-deletion frequency decreased with increasing genomic distance. All MTAP-deleted tumors were microsatellite stable and low tumor mutational burden (TMB-low). Conclusions: Our findings demonstrate that MTAP deletion is an infrequent but genomically coherent event in solid tumors, characterized by a canonical 9p21 co-deletion pattern. This real-world analysis underscores the importance of comprehensive genomic profiling to identify patients who may benefit from emerging MTAP-directed therapies.
Insights
Methylthioadenosine phosphatase (MTAP) deletion occurs in 2.4% of solid tumors, often with co-deletion of CDKN2A/B. This genomic event identifies patients for MTAP-targeted therapies.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Deletion of the methylthioadenosine phosphatase (MTAP) gene at 9p21.3 creates a synthetic lethal vulnerability to PRMT5 and MAT2A inhibition, defining an actionable cancer subset.
- The real-world frequency and genomic context of MTAP deletion across diverse solid tumors are not fully understood.
Purpose of the Study:
- To determine the prevalence and genomic co-occurrence patterns of MTAP deletion in a large cohort of solid tumors.
- To assess the clinical implications of MTAP deletion for targeted therapy identification.
Main Methods:
- Retrospective analysis of 579 solid tumor specimens.
- Next-generation sequencing-based copy-number profiling was used to evaluate MTAP deletion and co-occurrence with CDKN2A and CDKN2B.
- Systematic assessment of genomic deletion patterns across chromosome 9.
Main Results:
- MTAP deletion was identified in 2.4% of solid tumors, notably enriched in sarcoma, pancreatic cancer, and urothelial carcinoma.
- A high frequency of concurrent CDKN2A (92.9%) and CDKN2B (64.3%) loss was observed in MTAP-deleted tumors, indicating a focal deletion event at 9p21.3.
- All MTAP-deleted tumors were microsatellite stable and had low tumor mutational burden (TMB-low).
Conclusions:
- MTAP deletion is an infrequent but genomically consistent event in solid tumors, characterized by a canonical 9p21 co-deletion pattern.
- Comprehensive genomic profiling is crucial for identifying patients with MTAP deletions who could benefit from emerging MTAP-directed therapies.
More Related Videos
11:15Next Generation Sequencing for the Detection of Actionable Mutations in Solid and Liquid Tumors
Published on: September 20, 2016
09:33Author Spotlight: Finding New Therapeutic Targets for Malignant Peripheral Nerve Sheath Tumor Through Genome-Scale shRNA Screens
Published on: August 25, 2023