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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.
Abstract:
Purpose: Aberrations in genetic sequences encoding the tyrosine kinase receptor RET lead to oncogenic signaling that is targetable with anti-RET multikinase inhibitors. Understanding the comprehensive genomic landscape of RET aberrations across multiple cancers may facilitate clinical trial development targeting RETExperimental Design: We interrogated the molecular portfolio of 4,871 patients with diverse malignancies for the presence of RET aberrations using Clinical Laboratory Improvement Amendments-certified targeted next-generation sequencing of 182 or 236 gene panels.Results: Among diverse cancers, RET aberrations were identified in 88 cases [1.8% (88/4, 871)], with mutations being the most common alteration [38.6% (34/88)], followed by fusions [30.7% (27/88), including a novel SQSTM1-RET] and amplifications [25% (22/88)]. Most patients had coexisting aberrations in addition to RET anomalies [81.8% (72/88)], with the most common being in TP53-associated genes [59.1% (52/88)], cell cycle-associated genes [39.8% (35/88)], the PI3K signaling pathway [30.7% (27/88)], MAPK effectors [22.7% (20/88)], or other tyrosine kinase families [21.6% (19/88)]. RET fusions were mutually exclusive with MAPK signaling pathway alterations. All 72 patients harboring coaberrations had distinct genomic portfolios, and most [98.6% (71/72)] had potentially targetable coaberrations with either an FDA-approved or an investigational agent. Two cases with lung (KIF5B-RET) and medullary thyroid carcinoma (RET M918T) that responded to a vandetanib (multikinase RET inhibitor)-containing regimen are shown.Conclusions:RET aberrations were seen in 1.8% of diverse cancers, with most cases harboring actionable, albeit distinct, coexisting alterations. The current report suggests that optimal targeting of patients with RET anomalies will require customized combination strategies. Clin Cancer Res; 23(8); 1988-97. ©2016 AACR.
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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