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  1. 1.   (salen)Mn-III compounds as nonpeptidyl mimics of catalase. Mechanism-based tuning of catalase activity: A theoretical study
  2. Abashkin, Y. G.; Burt, S. K.
  3. Inorganic Chemistry. 2005, MAR 7; 44(5): 1425-1432.
  1. 2.   Magnitude of the hydrophobic effect at central versus peripheral sites in protein-protein interfaces
  2. Li, Y. L.; Huang, Y. P.; Swaminathan, C. P.; Smith-Gill, S. J.; Mariuzza, R. A.
  3. Structure. 2005, FEB; 13(2): 297-307.
  1. 3.   Preferential response of cancer cells to zebularine
  2. Cheng, J. C.; Yoo, C. B.; Weisenberger, D. J.; Chuang, J.; Wozniak, C.; Liang, G. N.; Marquez, V. E.; Greer, S.; Orntoft, T. F.; Thykjaer, T.; Jones, P. A.
  3. Cancer Cell. 2004, AUG; 6(2): 151-158.
  1. 4.   Modeling of serine protease prototype reactions with the flexible effective fragment potential quantum mechanical/molecular mechanical method
  2. Nemukhin, A. V.; Grigorenko, B. L.; Rogov, A. V.; Topol, I. A.; Burt, S. K.
  3. Theoretical Chemistry Accounts. 2004 111(1): 36-48.
  1. 5.   Structural effects of radiation damage and its potential for phasing
  2. Banumathi, S.; Zwart, P. H.; Ramagopal, U. A.; Dauter, M.; Dauter, Z.
  3. Acta Crystallographica Section D-Biological Crystallography. 2004 60(Part 6): 1085-1093.
  1. 6.   Building blocks, hinge-bending motions and protein topology
  2. Sinha, N.; Tsai, C. J.; Nussinov, R.
  3. Journal of Biomolecular Structure & Dynamics. 2001 19(3): 369-380.
  1. 7.   Mapping the effects of metal ion reduction and substrate analog binding to Fe-superoxide dismutase by NMR spectroscopy
  2. Vathyam, S.; Byrd, R. A.; Miller, A. F.
  3. Magnetic Resonance in Chemistry. 2000 38(7): 536-542.
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