HER2 expression defines unique requirements for flotillin and c-Src in EGFR signaling

Author:

Abousawan John12,Orofiamma Laura A.12,Fairn Gregory D.3ORCID,Antonescu Costin N.12ORCID

Affiliation:

1. Toronto Metropolitan University 1 Department of Chemistry and Biology , , Toronto, ON, M5B 2K3 , Canada

2. Toronto Metropolitan University 2 Graduate Program in Molecular Science , , Toronto, ON, M5B 2K3 , Canada

3. Dalhousie University 3 Department of Pathology , , Halifax, NS, B3H 4R2 , Canada

Abstract

ABSTRACT The epidermal growth factor receptor (EGFR) controls many cellular functions. Upon binding its ligand, the receptor undergoes dimerization, phosphorylation and activation of signals including the phosphoinositide-3-kinase (PI3K)–Akt pathway. Although some studies have indicated that EGFR signaling may be controlled by signal enrichment within various membrane rafts, such as flotillin nanodomains, others have found a limited effect of disruption of these nanodomains on EGFR signaling, suggesting that specific factors may define context-specific control of EGFR signaling. Ligand-bound EGFR can homodimerize or instead undergo heterodimerization with the related receptor HER2 (also known as ERBB2) when the latter is expressed. We examined how EGFR signaling in the presence of HER2 distinctly requires flotillin nanodomains. Induction of HER2 expression altered EGFR signaling duration, which is consistent with EGFR–HER2 heterodimer formation. EGFR and c-Src (also known as SRC) localized within plasma membrane structures demarked by flotillin-1 more prominently in HER2-expressing cells. Consistently, HER2-expressing cells, but not cells lacking HER2, were dependent on flotillin-1 and c-Src for EGFR signaling leading to Akt activation and cell proliferation. Hence, HER2 expression establishes a requirement for flotillin membrane rafts and c-Src in EGFR signaling.

Funder

Canadian Institutes of Health Research

Toronto Metropolitan University

Ontario Ministry of Research, Innovation and Science

Publisher

The Company of Biologists

Subject

Cell Biology

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