bioRxiv · 10.1101/2022.03.04.483015
Confinement of unliganded EGFR by tetraspanin nanodomains gates EGFR ligand binding and signaling
Abstract
The epidermal growth factor receptor (EGFR) is a central regulator of cell physiology. EGFR is activated by ligand binding, triggering receptor dimerization, activation of kinase activity, and intracellular signaling. EGFR is transiently confined within various plasma membrane nanodomains, yet how this may contribute to regulation of EGFR ligand binding is poorly understood. To resolve how EGFR nanoscale compartmentalization gates ligand binding, we developed single-particle tracking methods to track the mobility of ligand-bound and total EGFR, in combination with modeling of EGFR ligand binding. In comparison to unliganded EGFR, ligand-bound EGFR was more confined and distinctly regulated by clathrin and tetraspanin nanodomains. Ligand binding to unliganded EGFR occurred preferentially in tetraspanin nanodomains, and disruption of tetraspanin nanodomains impaired EGFR ligand binding and altered the conformation of the receptors ectodomain. We thus reveal a novel mechanism by which EGFR confinement within tetraspanin nanodomains regulates receptor signaling at the level of ligand binding.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Sugiyama, M. G., Brown, A. I., Vega-Lugo, J., Scott, A. M., Jaqaman, K., Fairn, G. D., Antonescu, C. N.. 2022-03-04. Confinement of unliganded EGFR by tetraspanin nanodomains gates EGFR ligand binding and signaling. https://doi.org/10.1101/2022.03.04.483015
Cite the original work for its findings. Save a collection to share your selection of sources.