Genetic hallmarks of recurrent/metastatic adenoid cystic carcinoma

Allen S Ho1,2, Angelica Ochoa3, Gowtham Jayakumaran4

  • 1Department of Surgery and.

Insights

Recurrent/metastatic adenoid cystic carcinoma (ACC) shows distinct genetic alterations, particularly in Notch and chromatin-remodeling genes. These findings reveal new molecular subgroups and potential therapeutic targets for this rare cancer.

Area of Science:

  • Genomics
  • Oncology
  • Molecular Biology

Background:

  • Adenoid cystic carcinoma (ACC) is a rare cancer with high rates of relapse and metastasis.
  • Recurrent/metastatic (R/M) ACC lacks effective systemic therapies, necessitating a deeper understanding of its genetic landscape.
  • Identifying genetic vulnerabilities in R/M ACC is crucial for improving patient outcomes.

Purpose of the Study:

  • To conduct an integrated genomic analysis of a large cohort of ACC tumors.
  • To identify genetic alterations associated with advanced and metastatic disease.
  • To explore intratumoral genetic heterogeneity, germline mutations, and therapeutic targets in ACC.

Main Methods:

  • Performed integrated genomic analysis on 1,045 ACC samples (177 primary, 868 R/M).
  • Assessed intratumoral genetic heterogeneity, germline mutations, and potential therapeutic targets.
  • Utilized multiregion sequencing to investigate tumor evolution.

Main Results:

  • R/M tumors showed enrichment for alterations in Notch (NOTCH1, NOTCH2, NOTCH3, NOTCH4) and chromatin-remodeling (KDM6A, KMT2C/MLL3, ARID1B) genes compared to primary tumors.
  • TERT promoter mutations were mutually exclusive with NOTCH1 mutations and MYB/MYBL1 fusions, indicating distinct tumorigenesis pathways.
  • Four distinct ACC subgroups were defined based on these alterations: MYB+NOTCH1+, MYB+/other, MYBWTNOTCH1+, and MYBWTTERT+.
  • Significant intratumoral genetic heterogeneity was observed, even in tumors with low overall mutational load.

Conclusions:

  • The study redefines the molecular basis of ACC progression, highlighting key genetic drivers.
  • Identified distinct molecular subgroups within ACC based on genetic alterations.
  • These findings provide a foundation for developing novel precision therapies targeting ACC vulnerabilities.

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