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  1. 1.   Small molecule inhibitors of ezrin inhibit the invasive phenotype of osteosarcoma cells
  2. Bulut, G.; Hong, S. H.; Chen, K.; Beauchamp, E. M.; Rahim, S.; Kosturko, G. W.; Glasgow, E.; Dakshanamurthy, S.; Lee, H. S.; Daar, I.; Toretsky, J. A.; Khanna, C.; Uren, A.
  3. Oncogene. 2012, Jan; 31(3): 269-281.
  1. 2.   Protein kinase C regulates ezrin-radixin-moesin phosphorylation in canine osteosarcoma cells
  2. Hong, S. H.; Osborne, T.; Ren, L.; Briggs, J.; Mazcko, C.; Burkett, S. S.; Khanna, C.
  3. Veterinary and Comparative Oncology. 2011, Sep; 9(3): 207-218.
  1. 3.   Immune synapse formation requires ZAP-70 recruitment by ezrin and CD43 removal by moesin
  2. Ilani, T.; Khanna, C.; Zhou, M.; Veenstra, T. D.; Bretscher, A.
  3. Journal of Cell Biology. 2007, Nov; 179(4): 733-746.
  1. 4.   Rac1 mediates collapse of microvilli on chemokine-activated T lymphocytes
  2. Nijhara, R.; van Hennik, P. B.; Gignac, M. L.; Kruhlak, M. J.; Hordijk, P. L.; Delon, J.; Shaw, S.
  3. Journal of Immunology. 2004, OCT 15; 173(8): 4985-4993.
  1. 5.   Chemokine stimulation of human peripheral blood T lymphocytes induces rapid dephosphorylation of ERM proteins, which facilitates loss of microvilli and polarization
  2. Brown, M. J.; Nijhara, R.; Hallam, J. A.; Gignac, M.; Yamada, K. M.; Erlandsen, S. L.; Delon, J.; Kruhlak, M.; Shaw, S.
  3. Blood. 2003 102(12): 3890-3899.
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