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  1. 1.   Optimized Method for Computing O-18/O-16 Ratios of Differentially Stable-Isotope Labeled Peptides in the Context of Postdigestion O-18 Exchange/Labeling
  2. Ye, X. Y.; Luke, B. T.; Johann, D. J.; Ono, A.; Prieto, D. A.; Chan, K. C.; Issaq, H. J.; Veenstra, T. D.; Blonder, J.
  3. Analytical Chemistry. 2010, Jul; 82(13): 5878-5886.
  1. 2.   Application of Halide Molten Salts as Novel Reaction Media for O-Glycosidic Bond Formation
  2. Kumar, V.; Talisman, I. J.; Malhotra, S. V.
  3. European Journal of Organic Chemistry. 2010, Jun; (18): 3377-3381.
  1. 3.   Enantioselective biocatalytic reactions on (+/-)-aryl alkyl ketones with native and modified porcine pancreatic lipase
  2. Husain, M.; Kumar, V.; Kumar, R.; Shakil, N. A.; Sharma, S. K.; Prasad, A. K.; Olsen, C. E.; Gupta, R. K.; Malhotra, S. V.; Van Der Eycken, E.; Depass, A. L.; Levon, K.; Parmar, V. S.
  3. Biocatalysis and Biotransformation. 2010, Jun; 28(3): 172-184.
  1. 4.   Regioselective epoxide ring-opening using boron trifluoride diethyl etherate: DFT study of an alternative mechanism to explain the formation of syn-fluorohydrins
  2. Mendez, P. S.; Cachau, R. E.; Seoane, G.; Ventura, O. N.
  3. Journal of Molecular Structure-theochem. 2009 904(1-3): 21-27.
  1. 5.   SYNTHESIS AND BIOLOGICAL EVALUATION OF INHIBITORS OF BOTULINUM NEUROTOXIN METALLOPROTEASE
  2. Wang, C. B.; Widom, J.; Petronijevic, F.; Burnett, J. C.; Nuss, J. E.; Bavari, S.; Gussio, R.; Wipf, P.
  3. Heterocycles. 2009 79: 487-520.
  1. 6.   Mechanisms of guanosine triphosphate hydrolysis by Ras and Ras-GAP proteins as rationalized by ab initio QM/MM simulations
  2. Grigorenko, B. L.; Nemukhin, A. V.; Shadrina, M. S.; Topol, I. A.; Burt, S. K.
  3. Proteins-Structure Function and Bioinformatics. 2007, Feb; 66(2): 456-466.
  1. 7.   A new perspective in the Lewis acid catalyzed ring opening of epoxides. Theoretical study of some complexes of methanol, acetic acid, dimethyl ether, diethyl ether, and ethylene oxide with boron trifluoride
  2. Saenz, P.; Cachau, R. E.; Seoane, G.; Kieninger, M.; Ventura, O. N.
  3. Journal of Physical Chemistry A. 2006, Oct; 110(41): 11734-11751.
  1. 8.   Mass spectrometry reveals specific and global molecular transformations during viral infection
  2. Go, E. P.; Wikoff, W. R.; Shen, Z. X.; O'Maille, G.; Morita, H.; Conrads, T. P.; Nordstrom, A.; Trauger, S. A.; Uritboonthai, W.; Lucas, D. A.; Chan, K. C.; Veenstra, T. D.; Lewicki, H.; Oldstone, M. B.; Schneemann, A.; Siuzdak, G.
  3. Journal of Proteome Research. 2006, Sep; 5(9): 2405-2416.
  1. 9.   Cancer proteomics: many technologies, one goal
  2. Conrads, T. P.; Hood, B. L.; Petricoin, E. F.; Liotto, L. A.; Veenstra, T. D.
  3. Expert Review of Proteomics. 2005, Oct; 2(5): 693-703.
  1. 10.   (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. 11.   A 4 '-C-ethynyl-2 ',3 '-dideoxynucleoside analogue highlights the role of the 3 '-OH in anti-HIV active 4 '-C-ethynyl-2 '-deoxy nucleosides
  2. Siddiqui, M. A.; Hughes, S. H.; Boyer, P. L.; Mitsuya, H.; Van, Q. N.; George, C.; Sarafinanos, S. G.; Marquez, V. E.
  3. Journal of Medicinal Chemistry. 2004, OCT 7; 47(21): 5041-5048.
  1. 12.   Recent advances in the synthesis of confortnationally locked nucleosides and their success in probing the critical question of conformational preferences by their biological targets
  2. Choi, Y.; Moon, H. R.; Yoshimura, V.; Marquez, V. E.
  3. Nucleosides Nucleotides & Nucleic Acids. 2003 22(5-8): 547-557.
  1. 13.   Oxidative DNA and protein damage in metal-induced toxicity and carcinogenesis
  2. Kasprzak, K. S.
  3. Free Radical Biology and Medicine. 2002 32(10): 958-967.
  1. 14.   Synthesis, X-ray crystal structure and tubulin-binding properties of a benzofuran analogue of the potent cytotoxic agent combretastatin A4
  2. Banwell, M. G.; Flynn, B. L.; Willis, A. C.; Hamel, E.
  3. Australian Journal of Chemistry. 1999 52(8): 767-774.
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