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Updated: Oct 1, 2025

Characterize Disease-related Mutants of RAF Family Kinases by Using a Set of Practical and Feasible Methods
Published on: July 17, 2019
RASGRF1 Fusions Activate Oncogenic RAS Signaling and Confer Sensitivity to MEK Inhibition
Lisa Hunihan1,2,3, Dejian Zhao2,4, Heather Lazowski1
1Department of Internal Medicine, Section of Medical Oncology, Yale School of Medicine, New Haven, Connecticut.
Purpose:
The identification of actionable oncogenic alterations has enabled targeted therapeutic strategies for subsets of patients with advanced malignancies, including lung adenocarcinoma (LUAD). We sought to assess the frequency of known drivers and identify new candidate drivers in a cohort of LUAD from patients with minimal smoking history.
Experimental Design:
We performed genomic characterization of 103 LUADs from patients with ≤10 pack-year smoking history. Tumors were subjected to targeted molecular profiling and/or whole-exome sequencing and RNA sequencing in search of established and previously uncharacterized candidate drivers.
Results:
We identified an established oncogenic driver in 98 of 103 tumors (95%). From one tumor lacking a known driver, we identified a novel gene rearrangement between OCLN and RASGRF1. The encoded OCLN-RASGRF1 chimera fuses the membrane-spanning portion of the tight junction protein occludin with the catalytic RAS-GEF domain of the RAS activator RASGRF1. We identified a similar SLC4A4-RASGRF1 fusion in a pancreatic ductal adenocarcinoma cell line lacking an activating KRAS mutation and an IQGAP1-RASGRF1 fusion from a sarcoma in The Cancer Genome Atlas. We demonstrate these fusions increase cellular levels of active GTP-RAS, induce cellular transformation, and promote in vivo tumorigenesis. Cells driven by RASGRF1 fusions are sensitive to targeting of the RAF-MEK-ERK pathway in vitro and in vivo.
Conclusions:
Our findings credential RASGRF1 fusions as a therapeutic target in multiple malignancies and implicate RAF-MEK-ERK inhibition as a potential treatment strategy for advanced tumors harboring these alterations. See related commentary by Moorthi and Berger, p. 2983.
Insights
Researchers identified novel RASGRF1 gene fusions in lung adenocarcinoma and other cancers. These fusions drive tumor growth and are sensitive to RAF-MEK-ERK pathway inhibition, offering a new therapeutic target.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Targeted therapies have improved outcomes for advanced malignancies like lung adenocarcinoma (LUAD).
- Identifying actionable oncogenic drivers is crucial for developing effective treatments.
- Assessing driver alterations in LUAD patients with minimal smoking history is important for understanding diverse tumor etiologies.
Purpose of the Study:
- To determine the frequency of known oncogenic drivers in LUAD.
- To discover novel candidate drivers in LUAD.
- To investigate the therapeutic potential of identified alterations.
Main Methods:
- Genomic characterization of 103 LUAD tumors from patients with low smoking history.
- Utilized targeted sequencing, whole-exome sequencing, and RNA sequencing.
- Investigated novel gene fusions and their functional impact.
Main Results:
- 95% of LUADs harbored known oncogenic drivers.
- A novel OCLN-RASGRF1 fusion was identified in a LUAD case.
- Similar RASGRF1 fusions (SLC4A4-RASGRF1, IQGAP1-RASGRF1) were found in other cancers.
- RASGRF1 fusions increase active GTP-RAS, induce cellular transformation, and promote tumorigenesis.
- Tumors with RASGRF1 fusions showed sensitivity to RAF-MEK-ERK pathway inhibition.
Conclusions:
- RASGRF1 fusions represent a therapeutic target across multiple cancer types.
- RAF-MEK-ERK pathway inhibition is a promising strategy for tumors with RASGRF1 fusions.
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