4.8 Article

Restriction of Receptor Movement Alters Cellular Response: Physical Force Sensing by EphA2

Journal

SCIENCE
Volume 327, Issue 5971, Pages 1380-1385

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.1181729

Keywords

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Funding

  1. Office of Science, Office of Basic Energy Sciences, Chemical Sciences, Geosciences, and Biosciences Division
  2. Materials Sciences and Engineering Division
  3. U.S. Department of Energy (DOE) [DE-AC0205CH11231]
  4. Office of Science, Office of Basic Energy Sciences, Scientific User Facilities Division, of the U.S. DOE [DE-AC02-05CH11231]
  5. U.S. Army Medical Research Acquisition Activity [BC076701, W81XWH-08-1-0677]
  6. National Cancer Institute (NCI) [U54 CA143836]
  7. Office of Science, Office of Biological and Environmental Research, of the DOE [DE-AC02-05CH11231]
  8. NIH [U54 CA 112970]
  9. NCI [P50 CA 58207]

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Activation of the EphA2 receptor tyrosine kinase by ephrin-A1 ligands presented on apposed cell surfaces plays important roles in development and exhibits poorly understood functional alterations in cancer. We reconstituted this intermembrane signaling geometry between live EphA2-expressing human breast cancer cells and supported membranes displaying laterally mobile ephrin-A1. Receptor-ligand binding, clustering, and subsequent lateral transport within this junction were observed. EphA2 transport can be blocked by physical barriers nanofabricated onto the underlying substrate. This physical reorganization of EphA2 alters the cellular response to ephrin-A1, as observed by changes in cytoskeleton morphology and recruitment of a disintegrin and metalloprotease 10. Quantitative analysis of receptor-ligand spatial organization across a library of 26 mammary epithelial cell lines reveals characteristic differences that strongly correlate with invasion potential. These observations reveal a mechanism for spatio-mechanical regulation of EphA2 signaling pathways.

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