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  1. 1.   A Bifunctional Phosphoglucomutase/Phosphomannomutase from Thermococcus kodakarensis: Biophysical Analysis and Cryo-EM Structure
  2. Naz, Zahra; Rathore, Ishan; Saleem, Muhammad; Rahman, Moazur; Wlodawer,Alexander; Rashid, Naeem
  3. Biomolecules. 2025, Feb 21; 15(3):
  1. 2.   Isolation and Functional Analysis of Human Neutrophils
  2. Kuhns, D. B.; Long Priel, D. A.; Chu, J.; Zarember, K. A.
  3. Current Protocols in Immunology. 2015, 2-Nov; 111: 7.23.1-16.
  1. 3.   Molecular-Level Examination of Cu2+ Binding Structure for Amyloid Fibrils of 40-Residue Alzheimer's beta by Solid-State NMR Spectroscopy
  2. Parthasarathy, S.; Long, F.; Miller, Y.; Xiao, Y. L.; McElheny, D.; Thurber, K.; Ma, B. Y.; Nussinov, R.; Ishii, Y.
  3. Journal of the American Chemical Society. 2011, Mar; 133(10): 3390-3400.
  1. 4.   The Nitric Oxide Prodrug JS-K Is Effective against Non-Small-Cell Lung Cancer Cells In Vitro and In Vivo: Involvement of Reactive Oxygen Species
  2. Maciag, A. E.; Chakrapani, H.; Saavedra, J. E.; Morris, N. L.; Holland, R. J.; Kosak, K. M.; Shami, P. J.; Anderson, L. M.; Keefer, L. K.
  3. Journal of Pharmacology and Experimental Therapeutics. 2011, Feb; 336(2): 313-320.
  1. 5.   Magnetic resonance imaging of organic contrast agents in mice: capturing the whole-body redox landscape
  2. Davis, R. M.; Matsumoto, S.; Bernardo, M.; Sowers, A.; Matsumoto, K. I.; Krishna, M. C.; Mitchell, J. B.
  3. Free Radical Biology and Medicine. 2011, Feb; 50(3): 459-468.
  1. 6.   Transcriptional up-regulation of SOD1 by CEBPD: A potential target for cisplatin resistant human urothelial carcinoma cells
  2. Hour, T. C.; Lai, Y. L.; Kuan, C. I.; Chou, C. K.; Wang, J. M.; Tu, H. Y.; Hu, H. T.; Lin, C. S.; Wu, W. J.; Pu, Y. S.; Sterneck, E.; Huang, A. M.
  3. Biochemical Pharmacology. 2010, Aug; 80(3): 325-334.
  1. 7.   Brugia malayi Excreted/Secreted Proteins at the Host/Parasite Interface: Stage- and Gender-Specific Proteomic Profiling
  2. Bennuru, S.; Semnani, R.; Meng, Z.; Ribeiro, J.; Veenstra, T. D.; Nutman, T. B.
  3. Plos Neglected Tropical Diseases. 2009 3(4):
  1. 8.   Axonal Mitochondrial Clusters Containing Mutant SOD1 in Transgenic Models of ALS
  2. Sotelo-Silveira, J. R.; Lepanto, P.; Elizondo, V.; Horjales, S.; Palacios, F.; Martinez-Palma, L.; Marin, M.; Beckman, J. S.; Barbeito, L.
  3. Antioxidants & Redox Signaling. 2009 11(7): 1535-1546.
  1. 9.   DNA damage, superoxide, and mutant K-ras in human lung adenocarcinoma cells
  2. Romanowska, M.; Maciag, A.; Smith, A. L.; Fields, J. R.; Fornwald, L. W.; Kikawa, K. D.; Kasprzak, K. S.; Anderson, L. M.
  3. Free Radical Biology and Medicine. 2007, Oct; 43(8): 1145-1155.
  1. 10.   Molecular consequences of SOD2 expression in epigenetically silenced pancreatic carcinoma cell lines
  2. Hurt, E. M.; Thomas, S. B.; Peng, B.; Farrar, W. L.
  3. British Journal of Cancer. 2007, Oct; 97(8): 1116-1123.
  1. 11.   Integrated molecular profiling of SOD2 expression in multiple myeloma
  2. Hurt, E. M.; Thomas, S. B.; Peng, B. J.; Farrar, W. L.
  3. Blood. 2007, May; 109(9): 3953-3962.
  1. 12.   Onset and progression in inherited ALS determined by motor neurons and microglia
  2. Boillee, S.; Yamanaka, K.; Lobsiger, C. S.; Copeland, N. G.; Jenkins, N. A.; Kassiotis, G.; Kollias, G.; Clevel, D. W.
  3. Science. 2006, JUN 2; 312(5778): 1389-1392.
  1. 13.   Coincident thresholds of mutant protein for paralytic disease and protein aggregation caused by restrictively expressed superoxide dismutase cDNA
  2. Wang, J.; Xu, G. L.; Slunt, H. H.; Gonzales, V.; Coonfield, M.; Fromholt, D.; Copeland, N. G.; Jenkins, N. A.; Borchelt, D. R.
  3. Neurobiology of Disease. 2005, DEC; 20(3): 943-952.
  1. 14.   p53 translocation to mitochondria precedes its nuclear translocation and targets mitochondrial oxidative defense protein-manganese superoxide dismutase
  2. Zhao, Y. F.; Chaiswing, L.; Velez, J. M.; Batinic-Haberle, I.; Colburn, N. H.; Oberley, T. D.; St Clair, D. K.
  3. Cancer Research. 2005, MAY 1; 65(9): 3745-3750.
  1. 15.   (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. 16.   Anticancer metal compounds in NCI's tumor-screening database: putative mode of action
  2. Huang, R. L.; Wallqvist, A.; Covell, D. G.
  3. Biochemical Pharmacology. 2005 69(7): 1009-1039.
  1. 17.   (Salen)Mn(III) compound as a nonpeptidyl mimic of catalase: DFT study of the metal oxidation by a peroxide molecule
  2. Abashkin, Y. G.; Burt, S. K.
  3. Journal of Physical Chemistry B. 2004 108(8): 2708-2711.
  1. 18.   Toxicogenomic analysis of aberrant gene expression in liver tumors and nontumorous livers of adult mice exposed in utero to inorganic arsenic
  2. Liu, J.; Xie, Y. X.; Ward, J. M.; Diwan, B. A.; Waalkes, M. P.
  3. Toxicological Sciences. 2004 77(2): 249-257.
  1. 19.   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. 20.   QM/MM modeling of the glutathione-hydroxymethyl radical reaction in watery
  2. Nemukhin, A. V.; Grigorenko, B. L.; Topol, I. A.; Burt, S. K.
  3. Physical Chemistry Chemical Physics. 2004 6(5): 1031-1038.
  1. 21.   Copper-binding-site-null SOD1 causes ALS in transgenic mice: aggregates of non-native SOD1 delineate a common feature
  2. Wang, J.; Slunt, H.; Gonzales, V.; Fromholt, D.; Coonfield, M.; Copeland, N. G.; Jenkins, N. A.; Borchelt, D. R.
  3. Human Molecular Genetics. 2003 12(21): 2753-2764.
  1. 22.   Flexible effective fragment QM/MM method: Validation through the challenging tests
  2. Nemukhin, A. V.; Grigorenko, B. L.; Topol, I. A.; Burt, S. K.
  3. Journal of Computational Chemistry. 2003 24(12): 1410-1420.
  1. 23.   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. 24.   CDNA cloning and characterization of two iron superoxide dismutases from the oyster parasite Perkinsus marinus
  2. Wright, A. C.; Ahmed, H.; Gauthier, J. D.; Silva, A. M.; Vasta, G. R.
  3. Molecular and Biochemical Parasitology. 2002 123(1): 73-77.
  1. 25.   Fibrillar inclusions and motor neuron degeneration in transgenic mice expressing superoxide dismutase 1 with a disrupted copper-binding site
  2. Wang, J.; Xu, G. L.; Gonzales, V.; Coonfield, M.; Fromholt, D.; Copeland, N. G.; Jenkins, N. A.; Borchelt, D. R.
  3. Neurobiology of Disease. 2002 10(2): 128-138.
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