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Updated: Oct 11, 2025

Characterize Disease-related Mutants of RAF Family Kinases by Using a Set of Practical and Feasible Methods
Published on: July 17, 2019
Novel RAF Fusions in Pediatric Low-Grade Gliomas Demonstrate MAPK Pathway Activation
Katherine T Lind1, Hannah V Chatwin2, John DeSisto2
1From the Department of Pediatrics, University of Colorado School of Medicine, Children's Hospital Colorado, Aurora, Colorado, USA.
Abstract:
Brain tumors are the most common solid tumor in children, and low-grade gliomas (LGGs) are the most common childhood brain tumor. Here, we report on 3 patients with LGG harboring previously unreported or rarely reported RAF fusions: FYCO1-RAF1, CTTNBP2-BRAF, and SLC44A1-BRAF. We hypothesized that these tumors would show molecular similarity to the canonical KIAA1549-BRAF fusion that is the most widely seen alteration in pilocytic astrocytoma (PA), the most common pediatric LGG variant, and that this similarity would include mitogen-activated protein kinase (MAPK) pathway activation. To test our hypothesis, we utilized immunofluorescent imaging and RNA-sequencing in normal brain, KIAA1549-BRAF-harboring tumors, and our 3 tumors with novel fusions. We performed immunofluorescent staining of ERK and phosphorylated ERK (p-ERK), identifying increased p-ERK expression in KIAA1549-BRAF fused PA and the novel fusion samples, indicative of MAPK pathway activation. Geneset enrichment analysis further confirmed upregulated downstream MAPK activation. These results suggest that MAPK activation is the oncogenic mechanism in noncanonical RAF fusion-driven LGG. Similarity in the oncogenic mechanism suggests that LGGs with noncanonical RAF fusions are likely to respond to MEK inhibitors.
Insights
Pediatric low-grade gliomas (LGGs) with rare RAF fusions activate the MAPK pathway, similar to common LGGs. This suggests these rare tumors may respond to MEK inhibitors.
Area of Science:
- Pediatric neuro-oncology
- Molecular oncology
- Cancer genomics
Background:
- Low-grade gliomas (LGGs) are the most frequent pediatric brain tumors.
- KIAA1549-BRAF fusion is a common genetic alteration in pilocytic astrocytoma (PA), the most prevalent pediatric LGG subtype.
- RAF fusions drive oncogenesis through the mitogen-activated protein kinase (MAPK) pathway.
Observation:
- Three pediatric LGG cases with novel RAF fusions (FYCO1-RAF1, CTTNBP2-BRAF, SLC44A1-BRAF) were identified.
- Immunofluorescent imaging revealed increased phosphorylated ERK (p-ERK) in tumors with novel RAF fusions and KIAA1549-BRAF fusion.
- RNA-sequencing and geneset enrichment analysis confirmed MAPK pathway activation in these tumors.
Findings:
- Novel RAF fusions in pediatric LGGs lead to MAPK pathway activation.
- Tumors with noncanonical RAF fusions exhibit molecular similarities to those with the canonical KIAA1549-BRAF fusion.
- Increased p-ERK expression indicates active MAPK signaling in LGGs with novel RAF fusions.
Implications:
- MAPK pathway activation is the key oncogenic mechanism in noncanonical RAF fusion-driven LGGs.
- Pediatric LGGs harboring noncanonical RAF fusions may be susceptible to MEK inhibitors.
- Understanding RAF fusion variants can guide targeted therapy selection for pediatric brain tumors.
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