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  1. 1.   Unraveling the dynamics of B7-H3-targeting therapeutic antibodies in cancer through PET imaging and antibody pharmacokinetics
  2. Fernandes, Bruna; Olkowski, Colleen P; Ghaemi, Behnaz; Basuli, Falguni; Shi, Jianfeng; Kiesewetter, Dale O; Lang, Lixin; Elijah, Edmondson; Swenson, Rolf; Choyke, Peter L; Lin, Frank I; Jacobson, Orit
  3. Journal of Controlled Release : official journal of the Controlled Release Society. 2025, Jan 13;
  1. 2.   Proline metabolism and cancer
  2. Phang, J. M.; Liu, W.
  3. Frontiers in Bioscience-Landmark. 2012, Jan; 17: 1835-1845.
  1. 3.   An integrin-binding N-terminal peptide region of TIMP-2 retains potent angio-inhibitory and anti-tumorigenic activity in vivo
  2. Seo, D. W.; Saxinger, W. C.; Guedez, L.; Cantelmo, A. R.; Albini, A.; Stetler-Stevenson, W. G.
  3. Peptides. 2011, Sep; 32(9): 1840-1848.
  1. 4.   Coronary Artery Abnormalities in Hyper-IgE Syndrome
  2. Freeman, A. F.; Avila, E. M.; Shaw, P. A.; Davis, J.; Hsu, A. P.; Welch, P.; Matta, J. R.; Hadigan, C.; Pettigrew, R. I.; Holland, S. M.; Gharib, A. M.
  3. Journal of Clinical Immunology. 2011, Jun; 31(3): 338-345.
  1. 5.   The substrate specificity of Metarhizium anisopliae and Bos taurus carboxypeptidases A: Insights into their use as tools for the removal of affinity tags
  2. Austin, B. P.; Tozser, J.; Bagossi, P.; Tropea, J. E.; Waugh, D. S.
  3. Protein Expression and Purification. 2011, May; 77(1): 53-61.
  1. 6.   A further insight into the sialome of the tropical bont tick, Amblyomma variegatum
  2. Ribeiro, J. M. C.; Anderson, J. M.; Manoukis, N. C.; Meng, Z. J.; Francischetti, I. M. B.
  3. Bmc Genomics. 2011, Mar; 12: 11.
  1. 7.   Structural determinants of tobacco vein mottling virus protease substrate specificity
  2. Sun, P.; Austin, B. P.; Tozser, J.; Waugh, D. S.
  3. Protein Science. 2010, Nov; 19(11): 2240-2251.
  1. 8.   Crystal Structures of Inhibitor Complexes of Human T-Cell Leukemia Virus (HTLV-1) Protease
  2. Satoh, T.; Li, M.; Nguyen, J. T.; Kiso, Y.; Gustchina, A.; Wlodawer, A.
  3. Journal of Molecular Biology. 2010, Aug; 401(4): 626-641.
  1. 9.   The Early Years of Retroviral Protease Crystal Structures
  2. Miller, M.
  3. Biopolymers. 2010 94(4): 521-529.
  1. 10.   The metabolism of proline as microenvironmental stress substrate
  2. Phang, J. M.; Pandhare, J.; Liu, Y. M.
  3. Journal of Nutrition. 2008 138(10): 2008S-2015S.
  1. 11.   Extracellular matrix and HIF-1 signaling: The role of prolidase
  2. Surazynski, A.; Donald, S. P.; Cooper, S. K.; Whiteside, M. A.; Salnikow, K.; Liu, Y. M.; Phang, J. M.
  3. International Journal of Cancer. 2008 122(6): 1435-1440.
  1. 12.   A comparative study of the expression of serine proteinases in quiescent seeds and in developing Canavalia ensiformis plants
  2. Demartini, D. R.; Wlodawer, A.; Carlini, C. R.
  3. Journal of Experimental Botany. 2007, Feb; 58(3): 521-532.
  1. 13.   Characterization of the murine leukemia virus protease and its comparison with the human immunodeficiency virus type 1 protease
  2. Feher, A.; Boross, P.; Sperka, T.; Miklossy, G.; Kadas, J.; Bagossi, P.; Oroszlan, S.; Weber, I. T.; Tozser, J.
  3. Journal of General Virology. 2006, May; 87: 1321-1330.
  1. 14.   Tumorigenesis suppressor Pdcd4 down-regulates mitogen-activated protein kinase kinase kinase kinase 1 expression to suppress colon carcinoma cell invasion
  2. Yang, H. S.; Matthews, C. P.; Clair, T.; Wang, Q.; Baker, A. R.; Li, C. C. H.; Tan, T. H.; Colburn, N. H.
  3. Molecular and Cellular Biology. 2006, Feb; 26(4): 1297-1306.
  1. 15.   Cockroach allergen Bla g 2: An unusual aspartic proteinase
  2. Wunschmann, S.; Gustchina, A.; Chapman, M. D.; Pomes, A.
  3. Journal of Allergy and Clinical Immunology. 2005, JUL; 116(1): 140-145.
  1. 16.   Activation of discoidin domain receptor 1 on CD14-positive pronchoalveolar lavage fluid cells induces chemokine production in idiopathic pulmonary fibrosis
  2. Matsuyama, W.; Watanabe, M.; Shirahama, Y.; Oonakahara, K. I.; Higashimoto, I.; Yoshimura, T.; Osame, M.; Arimura, K.
  3. Journal of Immunology. 2005, MAY 15; 174(10): 6490-6498.
  1. 17.   Comparison of the substrate specificity of two potyvirus proteases
  2. Tozser, J.; Tropea, J. E.; Cherry, S.; Bagossi, P.; Copeland, T.; Wlodawer, A.; Waugh, D. S.
  3. Febs Journal. 2005, JAN; 272(2): 514-523.
  1. 18.   Two inhibitor molecules bound in the active site of Pseudomonas sedolisin: a model for the bi-product complex following cleavage of a peptide substrate
  2. Wlodawer, A.; Li, M.; Gustchina, A.; Oyama, H.; Oda, K.; Beyer, B. B.; Clemente, J.; Dunn, B. M.
  3. Biochemical and Biophysical Research Communications. 2004 314(2): 638-645.
  1. 19.   Engineering disulfide bridges to dissect antimicrobial and chemotactic activities of human beta-defensin 3
  2. Wu, Z. B.; Hoover, D. M.; Yang, D.; Boulegue, C.; Santamaria, F.; Oppenheim, J. J.; Lubkowski, J.; Lu, W. Y.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2003 100(15): 8880-8885.
  1. 20.   Proteolytic events of HIV-1 replication as targets for therapeutic intervention
  2. Tozser, J.; Oroszlan, S.
  3. Current Pharmaceutical Design. 2003 9(22): 1803-1815.
  1. 21.   An unusual orientation for Tyr75 in the active site of the aspartic proteinase from Saccharomyces cerevisiae
  2. Gustchina, A.; Li, M.; Phylip, L. H.; Lees, W. E.; Kay, J.; Wlodawer, A.
  3. Biochemical and Biophysical Research Communications. 2002 295(4): 1020-1026.
  1. 22.   Effect of sequence polymorphism and drug resistance on two HIV- 1 Gag processing sites
  2. Feher, A.; Weber, I. T.; Bagossi, P.; Boross, P.; Mahalingam, B.; Louis, J. M.; Copeland, T. D.; Torshin, I. Y.; Harrison, R. W.; Tozser, J.
  3. European Journal of Biochemistry. 2002 269(16): 4114-4120.
  1. 23.   Structural basis for the substrate specificity of tobacco etch virus protease
  2. Phan, J.; Zdanov, A.; Evdokimov, A. G.; Tropea, J. E.; Peters, H. K.; Kapust, R. B.; Li, M.; Wlodawer, A.; Waugh, D. S.
  3. Journal of Biological Chemistry. 2002 277(52): 50564-50572.
  1. 24.   Molecular analysis of three Ljungan virus isolates reveals a new, close-to-root lineage of the Picornaviridae with a cluster of two unrelated 2A proteins
  2. Johansson, S.; Niklasson, B.; Maizel, J.; Gorbalenya, A. E.; Lindberg, A. M.
  3. Journal of Virology. 2002 76(17): 8920-8930.
  1. 25.   STAT3 activation is required for interleukin-6 induced transformation in tumor-promotion sensitive mouse skin epithelial cells
  2. Yu, C. Y.; Wang, L. H.; Khaletskiy, A.; Farrar, W. L.; Larner, A.; Colburn, N. H.; Li, J. H.
  3. Oncogene. 2002 21(25): 3949-3960.
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