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Updated: Dec 22, 2025

Mimicking and Manipulating Pancreatic Acinar-to-Ductal Metaplasia in 3-dimensional Cell Culture
Published on: February 11, 2019
RAF1 rearrangements are common in pancreatic acinar cell carcinomas
Owen W J Prall1, Violeta Nastevski2, Huiling Xu2
1Department of Pathology, Peter MacCallum Cancer Centre, Melbourne, VIC, 3000, Australia. owen.prall@petermac.org.
Abstract:
There is now evidence that gene fusions activating the MAPK pathway are relatively common in pancreatic acinar cell carcinoma with potentially actionable BRAF or RET fusions being found in ~30%. We sought to investigate the incidence of RAF1 fusions in pancreatic malignancies with acinar cell differentiation. FISH testing for RAF1 was undertaken on 30 tumors comprising 25 'pure' acinar cell carcinomas, 2 mixed pancreatic acinar-neuroendocrine carcinomas, 1 mixed acinar cell-low grade neuroendocrine tumor and 2 pancreatoblastomas. RAF1 rearrangements were identified in 5 cases and confirmed by DNA and RNA sequencing to represent oncogenic fusions (GATM-RAF1, GOLGA4-RAF1, PDZRN3-RAF1, HERPUD1-RAF1 and TRIM33-RAF1) and to be mutually exclusive with BRAF and RET fusions, as well as KRAS mutations. Large genome-wide copy number changes were common and included 1q gain and/or 1p loss in all five RAF1 FISH-positive acinar cell carcinomas. RAF1 expression by immunohistochemistry was found in 3 of 5 (60%) of fusion-positive cases and no FISH-negative cases. Phospho-ERK1/2 expression was found in 4 of 5 RAF1-fusion-positive cases. Expression of both RAF1 and phospho-ERK1/2 was heterogeneous and often only detected at the tumor-stroma interface, thus limiting their clinical utility. We conclude that RAF1 gene rearrangements are relatively common in pancreatic acinar cell carcinomas (14.3% to 18.5% of cases) and can be effectively identified by FISH with follow up molecular testing. The combined results of several studies now indicate that BRAF, RET or RAF1 fusions occur in between one third and one-half of these tumors but are extremely rare in other pancreatic malignancies. As these fusions are potentially actionable with currently available therapies, a strong argument can be made to perform FISH or molecular testing on all pancreatic acinar cell carcinomas.
Insights
RAF1 gene fusions are common in pancreatic acinar cell carcinoma, occurring in up to 18.5% of cases. These fusions, along with BRAF and RET, are actionable targets for pancreatic cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Gene fusions activating the MAPK pathway are increasingly recognized in pancreatic acinar cell carcinoma.
- BRAF or RET fusions are found in approximately 30% of these tumors.
Purpose of the Study:
- To investigate the incidence of RAF1 fusions in pancreatic malignancies with acinar cell differentiation.
- To determine if RAF1 fusions are oncogenic and mutually exclusive with other known driver mutations.
Main Methods:
- Fluorescence in situ hybridization (FISH) testing for RAF1 rearrangements on 30 pancreatic tumors.
- DNA and RNA sequencing to confirm oncogenic fusions.
- Immunohistochemistry for RAF1 and phospho-ERK1/2 expression.
Main Results:
- RAF1 rearrangements, identified as oncogenic fusions, were found in 5 out of 30 cases (16.7%).
- These RAF1 fusions were mutually exclusive with BRAF/RET fusions and KRAS mutations.
- RAF1 and phospho-ERK1/2 expression was detected in fusion-positive cases, though often heterogeneous.
Conclusions:
- RAF1 gene rearrangements are relatively common in pancreatic acinar cell carcinomas (14.3%–18.5%) and identifiable by FISH.
- Combined, BRAF, RET, or RAF1 fusions occur in 33%–50% of these tumors, rarely in other pancreatic malignancies.
- FISH or molecular testing for these actionable fusions is recommended for all pancreatic acinar cell carcinomas.
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