RET Aberrations in Diverse Cancers: Next-Generation Sequencing of 4,871 Patients

Shumei Kato1, Vivek Subbiah2, Erica Marchlik3

  • 1Department of Medicine, Center for Personalized Cancer Therapy and Division of Hematology and Oncology, University of California, San Diego, Moores Cancer Center, San Diego, California. smkato@ucsd.edu.

Insights

RET aberrations occur in 1.8% of diverse cancers and often coexist with other actionable genetic alterations. Customized combination therapies are crucial for effectively targeting these RET-driven cancers.

Area of Science:

  • Oncology
  • Genomics
  • Molecular Biology

Background:

  • Genetic aberrations in the tyrosine kinase receptor RET gene drive oncogenic signaling.
  • Anti-RET multikinase inhibitors represent a targeted therapeutic strategy.
  • Understanding the genomic landscape of RET aberrations is key for clinical trial development.

Purpose of the Study:

  • To comprehensively analyze the genomic landscape of RET aberrations across diverse cancer types.
  • To identify the frequency and types of RET alterations, including mutations, fusions, and amplifications.
  • To investigate coexisting genetic aberrations and their potential as therapeutic targets.

Main Methods:

  • Targeted next-generation sequencing of 182 or 236 gene panels was performed on 4,871 patients with diverse malignancies.
  • Clinical Laboratory Improvement Amendments-certified assays were utilized.
  • Genomic portfolios were interrogated for RET aberrations and coexisting alterations.

Main Results:

  • RET aberrations were identified in 1.8% (88/4,871) of patients, with mutations (38.6%), fusions (30.7%), and amplifications (25%) being the most common.
  • Most patients (81.8%) with RET aberrations had coexisting genetic anomalies, frequently involving TP53-associated genes, cell cycle genes, PI3K, or MAPK pathways.
  • A novel SQSTM1-RET fusion was identified, and most coaberrations (98.6%) were potentially targetable with existing or investigational agents.

Conclusions:

  • RET aberrations are present in a small but significant fraction of diverse cancers and are frequently accompanied by actionable coexisting alterations.
  • The distinct genomic profiles of coaberrations suggest that personalized combination strategies are necessary for optimal targeting of RET-driven cancers.
  • Clinical responses observed in lung and medullary thyroid carcinoma cases treated with RET inhibitor-containing regimens support the potential of targeted therapies.

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