4.8 Article

Probing the effect of clustering on EphA2 receptor signaling efficiency by subcellular control of ligand-receptor mobility

Journal

ELIFE
Volume 10, Issue -, Pages -

Publisher

ELIFE SCIENCES PUBLICATIONS LTD
DOI: 10.7554/eLife.67379

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Funding

  1. National Cancer Institute
  2. National Research Foundation Singapore [CRP001-084]
  3. Shanghai Municipal Science and Technology Commission ZJLab [2018SHZDZX01]
  4. Novo Nordisk Foundation
  5. Novo Nordisk Fonden [NNF17OC0028176] Funding Source: researchfish

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The study developed a microfabrication strategy to create substrates displaying mobile and immobile ligands for investigating the functional consequences of ligand:receptor complex clustering on cell membranes. Results showed that EphA2 clustering enhances receptor phosphorylation and downstream signaling activity, providing new insights into the EphA2 signaling system.
Clustering of ligand:receptor complexes on the cell membrane is widely presumed to have functional consequences for subsequent signal transduction. However, it is experimentally challenging to selectively manipulate receptor clustering without altering other biochemical aspects of the cellular system. Here, we develop a microfabrication strategy to produce substrates displaying mobile and immobile ligands that are separated by roughly 1 mu m, and thus experience an identical cytoplasmic signaling state, enabling precision comparison of downstream signaling reactions. Applying this approach to characterize the ephrinA1:EphA2 signaling system reveals that EphA2 clustering enhances both receptor phosphorylation and downstream signaling activity. Single-molecule imaging clearly resolves increased molecular binding dwell times at EphA2 clusters for both Grb2:SOS and NCK:N-WASP signaling modules. This type of intracellular comparison enables a substantially higher degree of quantitative analysis than is possible when comparisons must be made between different cells and essentially eliminates the effects of cellular response to ligand manipulation.

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