Somatic mutation detection and KRAS amplification in testicular germ cell tumors

Eduardo R M Cabral1, Marilia F Pacanhella2, Andre V H Lengert1

  • 1Molecular Oncology Research Center, Barretos Cancer Hospital, Barretos, Brazil.

Frontiers in Oncology
|April 3, 2023
PubMed
Abstract

Insights

Testicular germ cell tumors (TGCT) show frequent KRAS copy number gains, associated with poorer prognosis. TP53 mutations were most common, highlighting potential targets for therapy in this common male cancer.

Area of Science:

  • Oncology
  • Genetics
  • Genomics

Background:

  • Testicular germ cell tumors (TGCT) are the most prevalent cancer in young adult men.
  • The diverse histopathology of TGCT necessitates further exploration of genomic alterations and their prognostic significance.
  • This study investigates the mutation profile of 15 driver genes and KRAS copy number variation in a large TGCT cohort.

Purpose of the Study:

  • To evaluate the mutation profile of a 15-driver gene panel in TGCT.
  • To assess the copy number variation (CNV) of the KRAS gene in TGCT.
  • To explore the prognostic role of genomic alterations in TGCT.

Main Methods:

  • Analysis of 97 TGCT patient samples from Barretos Cancer Hospital.
  • Real-time PCR for KRAS copy number variation (CNV) in 51 cases.
  • Mutation analysis using the TruSight Tumor 15 (Illumina) panel in 65 patients.

Main Results:

  • KRAS copy number gain was frequent (80.4%) and associated with worse prognosis (10-year overall survival: 90% vs. 81.5%, p=0.048).
  • TP53 was the most recurrently mutated driver gene (27.7%) among 65 TGCT cases.
  • Variants were identified in 11 of 15 genes, including KIT, KRAS, PDGFRA, EGFR, BRAF, RET, NRAS, PIK3CA, MET, and ERBB2, with some potentially targetable.

Conclusions:

  • Genomic alterations, including KRAS CNV and TP53 mutations, are prevalent in TGCT.
  • Actionable variants present potential for targeted therapies in TGCT clinical management.
  • Further collaborative studies are needed to fully elucidate the molecular landscape of TGCT.