TY - UNPB
T1 - Allosteric Nanobodies Modulate EGFR Functioning by Tuning Receptor Dynamics
AU - Damman, Reinier
AU - Kendek, Apfrida
AU - Van Bergen en Henegouwen, Paul
AU - Baldus, Marc
PY - 2020/8/27
Y1 - 2020/8/27
N2 - Membrane-spanning receptors are crucial for sensing and transducing signals across the plasma membrane. While increasing evidence suggests that these processes are characterized by distinct conformations and ligand binding properties, the role of receptor dynamics in signal transduction remains elusive. An example refers to the epidermal growth factor receptor, that activates signaling pathways crucial for the regulation of cell proliferation, migration and differentiation. We employed nanobodies to directly examine the relationship between EGFR dynamics and function. Using a combination of cell biology and solid-state NMR methods, we find that allosteric nanobody binding reduces extracellular domain (ECD) motion and EGF binding affinity, leading to inhibition of kinase activation and receptor internalization. By introducing point mutations, we can increase the dynamic state of the ECD, thereby enhancing kinase activity and receptor internalization. Our findings suggest that EGFR functioning can not only be controlled by activating ligands, but also by modulation of receptor dynamics.
AB - Membrane-spanning receptors are crucial for sensing and transducing signals across the plasma membrane. While increasing evidence suggests that these processes are characterized by distinct conformations and ligand binding properties, the role of receptor dynamics in signal transduction remains elusive. An example refers to the epidermal growth factor receptor, that activates signaling pathways crucial for the regulation of cell proliferation, migration and differentiation. We employed nanobodies to directly examine the relationship between EGFR dynamics and function. Using a combination of cell biology and solid-state NMR methods, we find that allosteric nanobody binding reduces extracellular domain (ECD) motion and EGF binding affinity, leading to inhibition of kinase activation and receptor internalization. By introducing point mutations, we can increase the dynamic state of the ECD, thereby enhancing kinase activity and receptor internalization. Our findings suggest that EGFR functioning can not only be controlled by activating ligands, but also by modulation of receptor dynamics.
KW - Membrane Receptors
KW - Protein dynamics
KW - Nanobodies
KW - in-cell NMR
KW - Signal tranduction
KW - solid-state NMR
UR - https://www.mendeley.com/catalogue/42056ff3-4d86-3531-9c98-5b2db46c9c69/
U2 - 10.2139/ssrn.3661772
DO - 10.2139/ssrn.3661772
M3 - Preprint
BT - Allosteric Nanobodies Modulate EGFR Functioning by Tuning Receptor Dynamics
PB - SSRN
ER -