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Updated: Oct 23, 2025

Identification of EGFR and RAS Inhibitors using Caenorhabditis elegans
Published on: October 5, 2020
EGFRAP encodes a new negative regulator of the EGFR acting in both normal and oncogenic EGFR/Ras-driven tissue
Jennifer Soler Beatty1, Cristina Molnar2, Carlos M Luque2
1Centro Andaluz de Biología del Desarrollo, Universidad Pablo de Olavide/CSIC/JA, Sevilla, Spain.
Abstract:
Activation of Ras signaling occurs in ~30% of human cancers. However, activated Ras alone is insufficient to produce malignancy. Thus, it is imperative to identify those genes cooperating with activated Ras in driving tumoral growth. In this work, we have identified a novel EGFR inhibitor, which we have named EGFRAP, for EGFR adaptor protein. Elimination of EGFRAP potentiates activated Ras-induced overgrowth in the Drosophila wing imaginal disc. We show that EGFRAP interacts physically with the phosphorylated form of EGFR via its SH2 domain. EGFRAP is expressed at high levels in regions of maximal EGFR/Ras pathway activity, such as at the presumptive wing margin. In addition, EGFRAP expression is up-regulated in conditions of oncogenic EGFR/Ras activation. Normal and oncogenic EGFR/Ras-mediated upregulation of EGRAP levels depend on the Notch pathway. We also find that elimination of EGFRAP does not affect overall organogenesis or viability. However, simultaneous downregulation of EGFRAP and its ortholog PVRAP results in defects associated with increased EGFR function. Based on these results, we propose that EGFRAP is a new negative regulator of the EGFR/Ras pathway, which, while being required redundantly for normal morphogenesis, behaves as an important modulator of EGFR/Ras-driven tissue hyperplasia. We suggest that the ability of EGFRAP to functionally inhibit the EGFR pathway in oncogenic cells results from the activation of a feedback loop leading to increase EGFRAP expression. This could act as a surveillance mechanism to prevent excessive EGFR activity and uncontrolled cell growth.
Insights
EGFRAP, a novel EGFR inhibitor, acts as a negative regulator of the EGFR/Ras pathway. Its elimination potentiates Ras-driven tumor growth, suggesting a role in preventing uncontrolled cell proliferation.
Area of Science:
- Molecular Biology
- Cancer Research
- Developmental Biology
Background:
- Ras signaling activation is common in human cancers but insufficient for malignancy.
- Identifying cooperating genes with activated Ras is crucial for understanding tumor growth.
- The Epidermal Growth Factor Receptor (EGFR)/Ras pathway is frequently dysregulated in cancer.
Purpose of the Study:
- To identify novel genes cooperating with activated Ras in tumoral growth.
- To characterize the function of a newly identified EGFR inhibitor, EGFRAP.
- To investigate the role of EGFRAP in regulating the EGFR/Ras pathway and its implications in cancer.
Main Methods:
- Identification and characterization of EGFRAP as an EGFR inhibitor.
- Genetic manipulation in Drosophila melanogaster (wing imaginal disc) to study gene function.
- Analysis of protein-protein interactions (SH2 domain binding).
- Gene expression analysis under normal and oncogenic conditions.
- Investigation of pathway dependencies (Notch pathway).
Main Results:
- EGFRAP physically interacts with phosphorylated EGFR via its SH2 domain.
- Elimination of EGFRAP potentiates activated Ras-induced overgrowth in Drosophila.
- EGFRAP expression is upregulated by oncogenic EGFR/Ras activation, dependent on the Notch pathway.
- Simultaneous downregulation of EGFRAP and PVRAP leads to defects associated with increased EGFR function.
Conclusions:
- EGFRAP is a novel negative regulator of the EGFR/Ras pathway.
- EGFRAP is essential for normal morphogenesis but modulates EGFR/Ras-driven tissue hyperplasia.
- EGFRAP may function as a tumor suppressor by inhibiting excessive EGFR activity through a feedback loop.
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