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Altered Expression of Three EGFR Posttranslational Regulators MDGI, MIG6, and EIG121 in Invasive Breast Carcinomas
Didier Meseure1,2,3, Kinan Drak Alsibai4,5, Sophie Vacher3
1Platform of Experimental Pathology, Institut Curie, F-75248 Paris, France.
Abstract:
Epidermal growth factor receptor (EGFR) signalling is a highly regulated process with a tight balance between receptor activation and inactivation in invasive breast carcinomas (IBCs) particularly in triple-negative carcinomas (TNC). Clinical trials using anti-EGFR therapies are actually performed although no activating alterations (mutations, amplifications, or rearrangements) of EGFR have been clearly recognized in order to identify new targeted modalities for IBCs. We explored mammary-derived growth inhibitor (MDGI), estrogen-induced gene-121 (EIG121), and mitogen-induced gene-6 (MIG6), three posttranslational EGFR trafficking molecules implicated in EGFR spatiotemporal regulatory pathway. We quantified MDGI, EIG121, and MIG6 at mRNA levels by using real-time quantitative RT-PCR in a series of 440 IBCs and at protein levels by using immunohistochemistry in a series of 88 IBCs. Results obtained by RT-PCR showed that in IBCs, MDGI, MIG6, and EIG121 mRNA were mainly underexpressed (25.7%, 45.0%, and 16.1%, respectively) particularly in the TNC subtype for EIG121 (60.3%). We also observed mRNA overexpression of MDGI and EIG121, respectively, in 12.7% and 22.3% of IBCs. These altered mRNA expressions were confirmed at the protein level. Some links were found between expression patterns of these three genes and several classical pathological and clinical parameters. Only EIG121 was found to have a prognostic significance (p = 0.0038). Altered expression of these three major EGFR posttranslational negative regulators could create an aberrant EGFR-mediated oncogenic signalling pathway in IBCs. MDGI, MIG6, and EIG121 expression status also may be potential useful biomarkers (sensitivity or resistance) in targeted EGFR therapy.
Insights
Altered expression of MDGI, EIG121, and MIG6, negative regulators of Epidermal Growth Factor Receptor (EGFR) signaling, is common in invasive breast carcinomas. These changes may indicate potential biomarkers for targeted EGFR therapy.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Epidermal Growth Factor Receptor (EGFR) signaling is crucial in invasive breast carcinomas (IBCs), especially triple-negative carcinomas (TNC).
- Current anti-EGFR therapies lack clear targets due to unrecognized activating EGFR alterations in IBCs.
Purpose of the Study:
- To investigate the expression and potential role of mammary-derived growth inhibitor (MDGI), estrogen-induced gene-121 (EIG121), and mitogen-induced gene-6 (MIG6) in IBCs.
- To explore these genes as potential biomarkers for targeted EGFR therapy.
Main Methods:
- Quantification of MDGI, EIG121, and MIG6 mRNA levels via real-time quantitative RT-PCR in 440 IBCs.
- Immunohistochemistry was used to assess protein levels in 88 IBCs.
- Correlation analysis with pathological and clinical parameters.
Main Results:
- MDGI, MIG6, and EIG121 mRNA were predominantly underexpressed in IBCs, with EIG121 significantly affected in TNC (60.3%).
- Overexpression of MDGI (12.7%) and EIG121 (22.3%) was also observed, with findings consistent at the protein level.
- EIG121 expression showed prognostic significance (p = 0.0038).
Conclusions:
- Altered expression of MDGI, EIG121, and MIG6 disrupts EGFR regulation, potentially driving oncogenic signaling in IBCs.
- The expression status of MDGI, MIG6, and EIG121 may serve as valuable biomarkers for predicting sensitivity or resistance to EGFR-targeted therapies.
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