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Published on: March 14, 2019
Comprehensive Analysis of R-Spondin Fusions and RNF43 Mutations Implicate Novel Therapeutic Options in Colorectal
Andreas Seeber1, Francesca Battaglin2, Kai Zimmer1
1Department of Hematology and Oncology, Comprehensive Cancer Center Innsbruck, Medical University of Innsbruck, Innsbruck, Austria.
Purpose:
Gene fusions involving R-spondin (RSPOfp) and RNF43 mutations have been shown to drive Wnt-dependent tumor initiation in colorectal cancer. Herein, we aimed to characterize the molecular features of RSPOfp/RNF43 mutated (mut) compared with wild-type (WT) colorectal cancers to gain insights into potential rationales for therapeutic strategies.
Experimental Design:
A discovery cohort was classified for RSPOfp/RNF43 status using DNA/RNA sequencing and IHC. An independent cohort was used to validate our findings.
Results:
The discovery cohort consisted of 7,245 colorectal cancer samples. RSPOfp and RNF43 mutations were detected in 1.3% (n = 94) and 6.1% (n = 443) of cases. We found 5 RSPO fusion events that had not previously been reported (e.g., IFNGR1-RSPO3). RNF43-mut tumors were associated with right-sided primary tumors. No RSPOfp tumors had RNF43 mutations. In comparison with WT colorectal cancers, RSPOfp tumors were characterized by a higher frequency of BRAF, BMPR1A, and SMAD4 mutations. APC mutations were observed in only a minority of RSPOfp-positive compared with WT cases (4.4% vs. 81.4%). Regarding RNF43 mutations, a higher rate of KMT2D and BRAF mutations were detectable compared with WT samples. Although RNF43 mutations were associated with a microsatellite instability (MSI-H)/mismatch repair deficiency (dMMR) phenotype (64.3%), and a tumor mutation burden ≥10 mt/Mb (65.8%), RSPOfp was not associated with MSI-H/dMMR. The validation cohort replicated our genetic findings.
Conclusions:
This is the largest series of RSPOfp/RNF43-mut colorectal cancers reported to date. Comprehensive molecular analyses asserted the unique molecular landscape associated with RSPO/RNF43 and suggested potential alternative strategies to overcome the low clinical impact of Wnt-targeted agents and immunotherapy.
Insights
This study reveals unique molecular features in colorectal cancers with R-spondin (RSPOfp) fusions or RNF43 mutations. These findings offer insights into potential therapeutic strategies beyond current Wnt-targeted agents and immunotherapy.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Gene fusions involving R-spondin (RSPOfp) and RNF43 mutations are known drivers of Wnt-dependent colorectal cancer initiation.
- Understanding the distinct molecular profiles of these mutations is crucial for developing targeted therapies.
Purpose of the Study:
- To characterize the molecular features of colorectal cancers with RSPOfp fusions or RNF43 mutations compared to wild-type tumors.
- To identify potential therapeutic strategies based on these molecular differences.
Main Methods:
- Analysis of a large discovery cohort (7,245 samples) using DNA/RNA sequencing and immunohistochemistry (IHC) to classify RSPOfp/RNF43 status.
- Validation of findings in an independent cohort.
Main Results:
- RSPOfp fusions were found in 1.3% and RNF43 mutations in 6.1% of colorectal cancers. Five novel RSPO fusion events were identified.
- RNF43-mutated tumors were associated with right-sided primaries and a microsatellite instability-high/mismatch repair-deficient (MSI-H/dMMR) phenotype.
- RSPOfp tumors showed higher frequencies of BRAF, BMPR1A, and SMAD4 mutations, and fewer APC mutations compared to wild-type.
Conclusions:
- This study represents the largest series of RSPOfp/RNF43-mutated colorectal cancers to date.
- The unique molecular landscape associated with RSPO/RNF43 alterations suggests potential alternative therapeutic strategies to improve outcomes.
- Findings may guide the development of novel treatments overcoming limitations of current Wnt-targeted agents and immunotherapy.
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