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Published on: December 14, 2017
Effect of EGF-receptor tyrosine kinase inhibitor on Rab5 function during endocytosis
Ivan Jozic1, Samar C Saliba, M Alejandro Barbieri
1Department of Biological Sciences, Florida International University, Miami, FL 33199, USA.
Abstract:
Tyrosine autophosphorylation within the cytoplasmic tail of EGF-receptor is a key event, which in turn recruits several factors including Shc, Grb2 and Rin1 that are essential activities for receptor-mediated endocytosis and signaling. In this study, we demonstrated that treatment with AG1478, an EGF-receptor kinase inhibitor, blocked the formation of Rab5-positive endosomes as well as the activation of Rab5 upon addition of EGF. We also found that EGF-receptor catalytically inactive mutant failed to activate Rab5 upon EGF stimulation. Additionally, endosomal co-localization of Rab5 and EGF-receptor was inhibited by AG1478. Interestingly, AG1478 inhibitor did not block the formation of enlarged Rab5-positive endosomes in cells expressing Rab5 GTP hydrolysis defective mutant (Rab5:Q79L). AG1478 inhibitor also blocked the in vitro endosome fusion in a concentration-dependent manner, and more importantly, Rab5:Q79L mutant rescued it. Furthermore, addition of Rin1, a Rab5 guanine nucleotide exchange factor, partially restored endosome fusion in the presence of AG1478 inhibitor. Consistent with these observations, we also observed that Rin1 was unable to localize to membranes upon EGF-stimulation in the presence of AG1478 inhibitor. These results constitute first evidence that the enzymatic activity of a tyrosine kinase receptor is required endosome fusion via the activation of Rab5.
Insights
Epidermal Growth Factor Receptor (EGFR) kinase activity is crucial for Rab5 activation and endosome fusion. Inhibiting EGFR blocks endosome formation, but a Rab5 mutant rescues fusion, highlighting EGFR
Area of Science:
- Cell Biology
- Molecular Biology
- Signal Transduction
Background:
- Epidermal Growth Factor Receptor (EGFR) autophosphorylation initiates signaling cascades.
- EGFR recruits adaptor proteins like Shc, Grb2, and Rin1 for endocytosis.
- Rab5 is a key regulator of early endosome formation and trafficking.
Purpose of the Study:
- To investigate the role of EGFR kinase activity in Rab5 activation and endosome fusion.
- To elucidate the mechanism by which EGFR influences endocytic pathways.
Main Methods:
- Utilized AG1478, an EGFR kinase inhibitor.
- Employed EGF stimulation in cell-based assays.
- Used catalytically inactive EGFR mutants and Rab5 mutants (Rab5:Q79L).
- Performed in vitro endosome fusion assays.
Main Results:
- AG1478 treatment blocked Rab5 activation and Rab5-positive endosome formation.
- EGFR kinase inactivity prevented Rab5 activation and EGFR-Rab5 co-localization.
- The Rab5:Q79L mutant rescued AG1478-inhibited in vitro endosome fusion.
- Rin1 partially restored fusion and membrane localization in the presence of AG1478.
Conclusions:
- EGFR enzymatic activity is essential for Rab5 activation and subsequent endosome fusion.
- EGFR signaling directly impacts early endosome dynamics through Rab5.
- Rin1 acts downstream of EGFR kinase activity in the endocytic pathway.
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