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  1. 1.   Processing, catalytic activity and crystal structures of kumamolisin-As with an engineered active site
  2. Okubo, A.; Li, M.; Ashida, M.; Oyama, H.; Gustchina, A.; Oda, K.; Dunn, B. M.; Wlodawer, A.; Nakayama, T.
  3. Febs Journal. 2006, Jun; 273(11): 2563-2576.
  1. 2.   Identification of neutrophil granule protein cathepsin G as a novel chemotactic agonist for the G protein-coupled formyl peptide receptor
  2. Sun, R. H.; Iribarren, P.; Zhang, N.; Zhou, Y.; Gong, W. H.; Cho, E. H.; Lockett, S.; Chertov, O.; Bednar, F.; Rogers, T. J.; Oppenheim, J. J.; Wang, J. M.
  3. Journal of Immunology. 2004 173(1): 428-436.
  1. 3.   Modeling of biomolecular systems with the quantum mechanical and molecular mechanical method based on the effective fragment potential technique: Proposal of flexible fragments
  2. Grigorenko, B. L.; Nemukhin, A. V.; Topol, I. A.; Burt, S. K.
  3. Journal of Physical Chemistry A. 2002 106(44): 10663-10672.
  1. 4.   Short-strong hydrogen bonds and a low barrier transition state for the proton transfer reaction in RNase A catalysis: a quantum chemical study
  2. Vishveshwara, S.; Madhusudhan, M. S.; Maizel, J. V.
  3. Biophysical Chemistry. 2001 89(2-3): 105-117.
  1. 5.   Unlocking the secrets of cytotoxic granule proteins
  2. Smyth, M. J.; Kelly, J. M.; Sutton, V. R.; Davis, J. E.; Browne, K. A.; Sayers, T. J.; Trapani, J. A.
  3. Journal of Leukocyte Biology. 2001 70(1): 18-29.
  1. 6.   Structural study of the complex between human pepsin and a phosphorus-containing peptidic transition-state analog
  2. Fujinaga, M.; Cherney, M. M.; Tarasova, N. I.; Bartlett, P. A.; Hanson, J. E.; James, M. N. G.
  3. Acta Crystallographica Section D-Biological Crystallography. 2000 56(Part 3): 272-279.
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