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  1. 1.   A molecular mechanism for the generation of ligand-dependent differential outputs by the epidermal growth factor receptor
  2. Huang, Yongjian; Ognjenovic,Jana; Karandur, Deepti; Miller, Kate; Merk,Alan; Subramaniam, Sriram; Kuriyan, John
  3. eLife. 2021, Nov 30; 10
  1. 2.   New Therapeutic Opportunities for the Treatment of Squamous Cell Carcinomas: A Focus on Novel Driver Kinases
  2. Bensen, Ryan; Brognard,John
  3. International Journal of Molecular Sciences. 2021, Mar; 22(6):
  1. 3.   Peptide Structure Stabilization by Membrane Anchoring and its General Applicability to the Development of Potent Cell-Permeable Inhibitors
  2. Johannessen, L.; Remsberg, J.; Gaponenko, V.; Adams, K. M.; Barchi, J. J.; Tarasov, S. G.; Jiang, S.; Tarasova, N. I.
  3. Chembiochem. 2011, Apr; 12(6): 914-921.
  1. 4.   Identification of FGFR4-activating mutations in human rhabdomyosarcomas that promote metastasis in xenotransplanted models
  2. Taylor, J. G.; Cheuk, A. T.; Tsang, P. S.; Chung, J. Y.; Song, Y. K.; Desai, K.; Yu, Y. L.; Chen, Q. R.; Shah, K.; Youngblood, V.; Fang, J.; Kim, S. Y.; Yeung, C.; Helman, L. J.; Mendoza, A.; Ngo, V.; Staudt, L. M.; Wei, J. S.; Khanna, C.
  3. Journal of Clinical Investigation. 2009 119(11): 3395-3407.
  1. 5.   Integrating signals from RTKs to ERK/MAPK
  2. McKay, M. M.; Morrison, D. K.
  3. Oncogene. 2007, May; 26(22): 3113-3121.
  1. 6.   Crystal structures of a high-affinity macrocyclic peptide mimetic in complex with the Grb2 SH2 domain
  2. Phan, J.; Shi, Z. D.; Burke, T. R.; Waugh, D. S.
  3. Journal of Molecular Biology. 2005, OCT 14; 353(1): 104-115.
  1. 7.   Tyr-298 in ephrinB1 is critical for an interaction with the Grb4 adaptor protein
  2. Bong, Y. S.; Park, Y. H.; Lee, H. S.; Mood, K.; Ishimura, A.; Daar, I. O.
  3. Biochemical Journal. 2004 377(Part 2): 499-507.
  1. 8.   Ectopic EphA4 receptor induces posterior protrusions via FGF signaling in Xenopus embryos
  2. Park, E. K.; Warner, N.; Bong, Y. S.; Stapleton, D.; Maeda, R.; Pawson, T.; Daar, I. O.
  3. Molecular Biology of the Cell. 2004 15(4): 1647-1655.
  1. 9.   Cell cycle activation in lung adenocarcinoma cells by the ErbB3/phosphatidylinositol 3-kinase/Akt pathway
  2. Sithanandam, G.; Smith, G. T.; Masuda, A.; Takahashi, T.; Anderson, L. M.; Fornwald, L. W.
  3. Carcinogenesis. 2003 24(10): 1581-1592.
  1. 10.   Isoform-specific insertion near the Grb2-binding domain modulates the intrinsic guanine nucleotide exchange activity of hSos1
  2. Rojas, J. M.; Subleski, M.; Coque, J. J. R.; Guerrero, C.; Saez, R.; Li, B. Q.; Lopez, E.; Zarich, N.; Aroca, P.; Kamata, T.; Santos, E.
  3. Oncogene. 1999 18(9): 1651-1661.
  1. 11.   Loss of Cell Adhesion in Xenopus Laevis Embryos Mediated By the Cytoplasmic Domain of Xlerk, an Erythropoietin-Producing Hepatocellular Ligand
  2. Jones, T. L.; Chong, L. D.; Kim, J.; Xu, R. H.; Kung, H. F.; Daar, I. O.
  3. Proceedings of the National Academy of Sciences of the United States of America. 1998 95(2): 576-581.
  1. 12.   Identification of Xlerk, an Eph Family Ligand Regulated During Mesoderm Induction and Neurogenesis in Xenopus Laevis
  2. Jones, T. L.; Karavanova, I.; Chong, L.; Zhou, R. P.; Daar, I. O.
  3. Oncogene. 1997 14(18): 2159-2166.
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