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  1. 1.   Development of Grb2 SH2 domain signaling antagonists: A potential new class of antiproliferative agents
  2. Burke, T. R.
  3. International Journal of Peptide Research and Therapeutics. 2006, Mar; 12(1): 33-48.
  1. 2.   Examination of phosphoryl-mimicking functionalities within a macrocyclic Grb2 SH2 domain-binding platform
  2. Kang, S. U.; Shi, Z. D.; Worthy, K. M.; Bindu, L. K.; Dharmawardana, P. G.; Choyke, S. J.; Bottaro, D. P.; Fisher, R. J.; Burke, T. R.
  3. Journal of Medicinal Chemistry. 2005, JUN 16; 48(12): 3945-3948.
  1. 3.   Design and synthesis of conformationally constrained Grb2 SH2 domain binding peptides employing alpha-methylphenylalanyl based phosphotyrosyl mimetics
  2. Oishi, S.; Karki, R. G.; Kang, S. U.; Wang, X. Z.; Worthy, K. M.; Bindu, L. K.; Nicklaus, M. C.; Fisher, R. J.; Burke, T. R.
  3. Journal of Medicinal Chemistry. 2005, FEB 10; 48(3): 764-772.
  1. 5.   Synthesis of alpha,alpha-disubstituted 4-phosphonophenylalanine analogues as conformationally-constrained phosphotyrosyl mimetics
  2. Oishi, S.; Kang, S. U.; Liu, H. P.; Zhang, M. C.; Yang, D. J.; Deschamps, J. R.; Burke, T. R.
  3. Tetrahedron. 2004 60(13): 2971-2977.
  1. 6.   Enantioselective synthesis of (S)-3-carboxy-4-((carboxy)difluoromethyl)phenylalanine in protected form and its incorporation into a PTP-1B-directed tripeptide
  2. Kang, S. U.; Yang, G.; Li, W.; Zhang, Z. Y.; Burke, T. R.
  3. Chemistry & Biodiversity. 2004 1(4): 626-633.
  1. 7.   Phosphoryltyrosyl mimetics in the design of peptide-based signal transduction inhibitors
  2. Burke, T. R.; Yao, Z. J.; Liu, D. G.; Voigt, J.; Gao, Y.
  3. Biopolymers. 2001 60(1): 32-44.
  1. 8.   Utilization of a peptide lead for the discovery of a novel PTP1M-binding motif
  2. Gao, Y.; Voigt, J.; Zhao, H.; Pais, G. C. G.; Zhang, X. C.; Wu, L.; Zhang, Z. Y.; Burke, T. R.
  3. Journal of Medicinal Chemistry. 2001 44(18): 2869-2878.
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