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Updated: Apr 11, 2026

Identification of EGFR and RAS Inhibitors using Caenorhabditis elegans
Published on: October 5, 2020
Loss of ZNRF3/RNF43 unleashes EGFR in cancer
Fei Yue1,2, Amy T Ku1, Payton D Stevens3,4
1Lester and Sue Smith Breast Center, Baylor College of Medicine, Houston, United States.
Abstract:
ZNRF3 and RNF43 are closely related transmembrane E3 ubiquitin ligases with significant roles in development and cancer. Conventionally, their biological functions have been associated with regulating WNT signaling receptor ubiquitination and degradation. However, our proteogenomic studies have revealed EGFR as the protein most negatively correlated with ZNRF3/RNF43 mRNA levels in multiple human cancers. Through biochemical investigations, we demonstrate that ZNRF3/RNF43 interact with EGFR via their extracellular domains, leading to EGFR ubiquitination and subsequent degradation facilitated by the E3 ligase RING domain. Overexpression of ZNRF3 reduces EGFR levels and suppresses cancer cell growth in vitro and in vivo, whereas knockout of ZNRF3/RNF43 stimulates cell growth and tumorigenesis through upregulated EGFR signaling. Together, these data suggest ZNRF3 and RNF43 as novel E3 ubiquitin ligases of EGFR and establish the inactivation of ZNRF3/RNF43 as a driver of increased EGFR signaling, ultimately promoting cancer progression. This discovery establishes a connection between two fundamental signaling pathways, EGFR and WNT, at the level of cytoplasmic membrane receptors, uncovering a novel mechanism underlying the frequent co-activation of EGFR and WNT signaling in development and cancer.
Insights
ZNRF3 and RNF43 are identified as novel E3 ubiquitin ligases for the epidermal growth factor receptor (EGFR). Their inactivation drives cancer growth by upregulating EGFR signaling, linking WNT and EGFR pathways.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- ZNRF3 and RNF43 are transmembrane E3 ubiquitin ligases involved in development and cancer.
- Their known function is regulating WNT signaling by targeting receptors for ubiquitination and degradation.
Purpose of the Study:
- To investigate the novel roles of ZNRF3 and RNF43 beyond WNT signaling.
- To identify new protein targets of ZNRF3/RNF43 using proteogenomic approaches.
Main Methods:
- Proteogenomic analysis to identify correlations between ZNRF3/RNF43 mRNA and protein levels.
- Biochemical assays to confirm protein-protein interactions and ubiquitination.
- In vitro and in vivo experiments using gene overexpression and knockout models.
Main Results:
- EGFR was identified as the protein most negatively correlated with ZNRF3/RNF43 mRNA levels in human cancers.
- ZNRF3/RNF43 directly interact with EGFR, leading to its ubiquitination and degradation.
- ZNRF3 overexpression suppressed cancer growth, while ZNRF3/RNF43 knockout promoted it via EGFR signaling.
Conclusions:
- ZNRF3 and RNF43 are novel E3 ubiquitin ligases for EGFR.
- Inactivation of ZNRF3/RNF43 promotes cancer progression through enhanced EGFR signaling.
- This links the EGFR and WNT pathways at the cell surface, explaining their co-activation in cancer.
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