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Updated: Dec 9, 2025

Characterize Disease-related Mutants of RAF Family Kinases by Using a Set of Practical and Feasible Methods
Published on: July 17, 2019
Targetable BRAF and RAF1 Alterations in Advanced Pediatric Cancers
Andrew Rankin1, Adrienne Johnson1, Alison Roos1
1Foundation Medicine Inc., Cambridge, Massachusetts, USA.
Abstract:
RAF family protein kinases signal through the MAPK pathway to orchestrate cellular proliferation, survival, and transformation. Identifying BRAF alterations in pediatric cancers is critically important as therapeutic agents targeting BRAF or MEK may be incorporated into the clinical management of these patients. In this study, we performed comprehensive genomic profiling on 3,633 pediatric cancer samples and identified a cohort of 221 (6.1%) cases with known or novel alterations in BRAF or RAF1 detected in extracranial solid tumors, brain tumors, or hematological malignancies. Eighty percent (176/221) of these tumors had a known-activating short variant (98, 55.7%), fusion (72, 40.9%), or insertion/deletion (6, 3.4%). Among BRAF altered cancers, the most common tumor types were brain tumors (74.4%), solid tumors (10.8%), hematological malignancies (9.1%), sarcomas (3.4%), and extracranial embryonal tumors (2.3%). RAF1 fusions containing intact RAF1 kinase domain (encoded by exons 10-17) were identified in seven tumors, including two novel fusions TMF1-RAF1 and SOX6-RAF1. Additionally, we highlight a subset of patients with brain tumor with positive clinical response to BRAF inhibitors, demonstrating the rationale for incorporating precision medicine into pediatric oncology. IMPLICATIONS FOR PRACTICE: Precision medicine has not yet gained a strong foothold in pediatric cancers. This study describes the landscape of BRAF and RAF1 genomic alterations across a diverse spectrum of pediatric cancers, primarily brain tumors, but also encompassing melanoma, sarcoma, several types of hematologic malignancy, and others. Given the availability of multiple U.S. Food and Drug Administration-approved BRAF inhibitors, identification of these alterations may assist with treatment decision making, as described here in three cases of pediatric cancer.
Insights
Genomic profiling of 3,633 pediatric cancers revealed BRAF/RAF1 alterations in 6.1% of cases, primarily brain tumors. These findings support precision medicine approaches for pediatric oncology, including targeted BRAF therapies.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- RAF family kinases regulate cell growth and survival via the MAPK pathway.
- Identifying BRAF alterations is crucial for targeted therapy in pediatric cancers.
- Precision medicine integration in pediatric oncology remains limited.
Purpose of the Study:
- To characterize the landscape of BRAF and RAF1 genomic alterations in a large cohort of pediatric cancers.
- To identify potential therapeutic targets and inform precision medicine strategies for pediatric patients.
- To evaluate the clinical response to BRAF inhibitors in pediatric brain tumors.
Main Methods:
- Comprehensive genomic profiling of 3,633 pediatric cancer samples.
- Identification and classification of BRAF and RAF1 alterations (variants, fusions, indels).
- Analysis of tumor types associated with RAF alterations and clinical response to targeted therapies.
Main Results:
- BRAF or RAF1 alterations were found in 6.1% (221/3,633) of pediatric cancers, predominantly brain tumors (74.4%).
- Activating short variants (55.7%) and fusions (40.9%) were the most common alteration types.
- Seven RAF1 fusions, including two novel ones (TMF1-RAF1, SOX6-RAF1), were identified.
- A subset of pediatric brain tumor patients showed positive clinical response to BRAF inhibitors.
Conclusions:
- BRAF and RAF1 alterations are present across various pediatric cancers, particularly brain tumors.
- The identification of these alterations supports the use of targeted BRAF/MEK inhibitors in pediatric oncology.
- This study underscores the potential of precision medicine to improve treatment outcomes for children with cancer.
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