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  1. 1.   Deleterious effects of carbon-carbon dipolar coupling on RNA NMR dynamics
  2. Nam, Hyeyeon; Becette, Owen; LeBlanc, Regan M; Oh, Daniel; Case, David A; Dayie, Theodore K
  3. Journal of biomolecular NMR. 2020, May 03;
  1. 2.   De novo design of selective membrane-active peptides via enzymatic control of their conformational bias on the cell surface
  2. Shi,Junfeng; Schneider,Joel
  3. Angewandte Chemie (International ed. in English). 2019, JUL 26;
  1. 3.   NMR probing of invisible excited states using selectively labeled RNAs
  2. Leblanc, Regan; Longhini, Andrew P; Tugarinov, Vitali; Dayie, T Kwaku
  3. Journal of Biomolecular NMR. 2018, Jul; 71(3): 165-172.
  1. 4.   Structural studies of vacuolar plasmepsins
  2. Bhaumik, P.; Gustchina, A.; Wlodawer, A.
  3. Biochimica Et Biophysica Acta-Proteins and Proteomics. 2012, Jan; 1824(1): 207-223.
  1. 5.   Ionic Liquids: Neoteric Solvents for Nucleoside Chemistry
  2. Kumar, V.; Parmar, V. S.; Malhotra, S. V.
  3. Current Organic Synthesis. 2011, Dec; 8(6): 777-786.
  1. 6.   Crystal structures of the free and inhibited forms of plasmepsin I (PMI) from Plasmodium falciparum
  2. Bhaumik, P.; Horimoto, Y.; Xiao, H. G.; Miura, T.; Hidaka, K.; Kiso, Y.; Wlodawer, A.; Yada, R. Y.; Gustchina, A.
  3. Journal of Structural Biology. 2011, Jul; 175(1): 73-84.
  1. 7.   Role of Protein Conformational Dynamics in the Catalysis by 6-Hydroxymethyl-7, 8-Dihydropterin Pyrophosphokinase
  2. Yan, H. G.; Ji, X. H.
  3. Protein and Peptide Letters. 2011, Apr; 18(4): 328-335.
  1. 9.   Activation of glycosyl trichloroacetimidates with perchloric acid on silica (HClO4-SiO2) provides enhanced alpha-selectivity
  2. Ludek, O. R.; Gu, W. L.; Gildersleeve, J. C.
  3. Carbohydrate Research. 2010, Sep 23; 345(14): 2074-2078.
  1. 10.   Structural modifications of nucleosides in ionic liquids
  2. Kumar, V.; Parmar, V. S.; Malhotra, S. V.
  3. Biochimie. 2010, Sep; 92(9): 1260-1265.
  1. 11.   Proline Metabolism and Microenvironmental Stress
  2. Phang, J. M.; Liu, W.; Zabirnyk, O.
  3. Annual review of nutrition. 2010, Aug 21; 30: 441-463.
  1. 12.   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. 13.   Arylation of Sensitive 1-(Pyrrolidin-1-yl)-diazen-1-ium-diolate in Ionic Liquids
  2. Velazquez, C. A.; Lynn, G. M.; Kumar, V.; Keefer, L. K.; Malhotra, S. V.
  3. Synthetic Communications. 2010, Apr 7; 40(9): 1322-1332.
  1. 14.   The Early Years of Retroviral Protease Crystal Structures
  2. Miller, M.
  3. Biopolymers. 2010 94(4): 521-529.
  1. 15.   Mechanism of the chemical step for the guanosine triphosphate (GTP) hydrolysis catalyzed by elongation factor Tu
  2. Grigorenko, B. L.; Shadrina, M. S.; Topol, I. A.; Collins, J. R.; Nemukhin, A. V.
  3. Biochimica Et Biophysica Acta-Proteins and Proteomics. 2008 1784(12): 1908-1917.
  1. 16.   Mechanism of the myosin catalyzed hydrolysis of ATP as rationalized by molecular modeling
  2. Grigorenko, B. L.; Rogov, A. V.; Topol, I. A.; Burt, S. K.; Martinez, H. M.; Nemukhin, A. V.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2007, Apr; 104(17): 7057-7061.
  1. 17.   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. 18.   Nucleosides with self-complementary hydrogen-bonding motifs: Synthesis and base-pairing studies of two nucleosides containing the imidazo 4,5-d pyridazine ring system
  2. Ujjinamatada, R. K.; Paulman, R. L.; Ptak, R. G.; Hosmane, R. S.
  3. Bioorganic & Medicinal Chemistry. 2006, Sep; 14(18): 6359-6367.
  1. 19.   Molecular modeling the reaction mechanism of serine-carboxyl peptidases
  2. Bravaya, K.; Bochenkova, A.; Grigorenko, B.; Topol, I.; Burt, S.; Nemukhin, A.
  3. Journal of Chemical Theory and Computation. 2006, Jul; 2(4): 1168-1175.
  1. 20.   Lsh is involved in de novo methylation of DNA
  2. Zhu, H. M.; Geiman, T. M.; Xi, S. C.; Jiang, Q.; Schmidtmann, A.; Chen, T. P.; Li, E.; Muegge, K.
  3. Embo Journal. 2006, JAN 25; 25(2): 335-345.
  1. 21.   The RIO kinases: An atypical protein kinase family required for ribosome biogenesis and cell cycle progression
  2. Laronde-Leblanc, N.; Wlodawer, A.
  3. Biochimica Et Biophysica Acta-Proteins and Proteomics. 2005, DEC 30; 1754(1-2, Sp. Iss.): 14-24.
  1. 22.   Potent antiviral activity of North-methanocarbathymidine against Kaposi's sarcoma-associated herpesvirus
  2. Zhu, W. M.; Burnette, A.; Dorjsuren, D.; Roberts, P. E.; Huleihel, M.; Shoemaker, R. H.; Marquez, V. E.; Agbaria, R.; Sei, S.
  3. Antimicrobial Agents and Chemotherapy. 2005, DEC; 49(12): 4965-4973.
  1. 23.   A family portrait of the RIO kinases
  2. Laronde-Leblanc, N.; Wlodawer, A.
  3. Journal of Biological Chemistry. 2005, NOV 11; 280(45): 37297-37300.
  1. 24.   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. 25.   Autophosphorylation of Archaeoglobus fulgidus Rio2 and crystal structures of its nucleotide-metal ion complexes
  2. Laronde-Leblanc, N.; Guszczynski, T.; Copeland, T.; Wlodawer, A.
  3. Febs Journal. 2005, JUN; 272(11): 2800-2810.
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