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  1. 1.   Fatty acid oxidation is required for embryonic stem cell survival during metabolic stress
  2. Yan, Hualong; Malik, Navdeep; Kim, Young-Im; He,Yunlong; Li, Mangmang; Dubois, Wendy; Liu, Huaitian; Peat, Tyler J; Nguyen, Joe T; Tseng, Yu-Chou; Ayaz, Gamze; Alzamzami, Waseem; Chan,King; Andresson,Thorkell; Tessarollo,Lino; Mock, Beverly A; Lee, Maxwell P; Huang, Jing
  3. EMBO Reports. 2021, Jun 4; 22(6):
  1. 2.   Redox Epiphospholipidome in Programmed Cell Death Signaling: Catalytic Mechanisms and Regulation
  2. Kagan, Valerian E.; Tyurina, Yulia Y.; Vlasova, Irina I.; Kapralov, Alexander A.; Amoscato, Andrew A.; Anthonymuthu, Tamil S.; Tyurin, Vladimir A.; Shrivastava, Indira H.; Cinemre, Fatma B.; Lamade, Andrew; Epperly, Michael W.; Greenberger, Joel S.; Beezhold, Donald H.; Mallampalli, Rama K.; Srivastava, Apurva K.; Bayir, Hulya; Shvedova, Anna A.
  3. Frontiers in Endocrinology. 2021, Feb 19; 11
  1. 3.   Fasting-induced JMJD3 histone demethylase epigenetically activates mitochondrial fatty acid ß-oxidation
  2. Seok, Sunmi; Kim, Young-Chae; Byun, Sangwon; Choi, Sunge; Xiao, Zhen; Iwamori, Naoki; Zhang, Yang; Wang, Chaochen; Ma, Jian; Ge, Kai; Kemper, Byron; Kemper, Jongsook Kim
  3. The Journal of Clinical Investigation. 2018, Jul 2; 128(7): 3144-3159.
  1. 4.   Cytotoxic, cytoprotective and antioxidant effects of isolated phenolic compounds from fresh ginger
  2. Peng, F.; Tao, Q. F.; Wu, X. M.; Dou, H.; Spencer, S.; Mang, C. Y.; Xu, L.; Sun, L. L.; Zhao, Y.; Li, H. B.; Zeng, S.; Liu, G. M.; Hao, X. J.
  3. Fitoterapia. 2012, Apr; 83(3): 568-585.
  1. 5.   Relevance of the C-5 position to schweinfurthin induced cytotoxicity
  2. Topczewski, J. J.; Callahan, M. P.; Kodet, J. G.; Inbarasu, J. D.; Mente, N. R.; Beutler, J. A.; Wiemer, D. F.
  3. Bioorganic & Medicinal Chemistry. 2011, Dec; 19(24): 7570-7581.
  1. 6.   Rapid and Selective Nitroxyl (HNO) Trapping by Phosphines: Kinetics and New Aqueous Ligations for HNO Detection and Quantitation
  2. Reisz, J. A.; Zink, C. N.; King, S. B.
  3. Journal of the American Chemical Society. 2011, Aug; 133(30): 11675-11685.
  1. 7.   Engineering of glycerol dehydrogenase for improved activity towards 1, 3-butanediol
  2. Zhang, H. F.; Lountos, G. T.; Ching, C. B.; Jiang, R. R.
  3. Applied Microbiology and Biotechnology. 2010, Sep; 88(1): 117-124.
  1. 8.   A spectroelectrochemical and chemical study on oxidation of 7,8-dihydroxy-4-methylcoumarin (DHMC) and some related compounds in aprotic medium
  2. Petrucci, R.; Saso, L.; Kumar, V.; Prasad, A. K.; Malhotra, S. V.; Parmar, V. S.; Marrosu, G.
  3. Biochimie. 2010, Sep; 92(9): 1123-1129.
  1. 9.   Enhancement of 5-Aminolevulinic acid-induced oxidative stress on two cancer cell lines by gold nanoparticles
  2. Ito, S.; Miyoshi, N.; Degraff, W. G.; Nagashima, K.; Kirschenbaum, L. J.; Riesz, P.
  3. Free Radical Research. 2009 43(12): 1214-1224.
  1. 10.   Regulation and Function of Proline Oxidase Under Nutrient Stress
  2. Pandhare, J.; Donald, S. P.; Cooper, S. K.; Phang, J. M.
  3. Journal of Cellular Biochemistry. 2009 107(4): 759-768.
  1. 11.   Structural dynamics of the cooperative binding of organic molecules in the human cytochrome P450 3A4
  2. Fishelovitch, D.; Hazan, C.; Shaik, S.; Wolfson, H. J.; Nussinov, R.
  3. Journal of the American Chemical Society. 2007, Feb; 129(6): 1602-1611.
  1. 12.   An armed-disarmed approach for blocking aglycon transfer of thioglycosides
  2. Li, Z. T.; Gildersleeve, J. C.
  3. Tetrahedron Letters. 2007, Jan; 48(4): 559-562.
  1. 13.   Mechanistic studies and methods to prevent aglycon transfer of thioglycosides
  2. Li, Z. T.; Gildersleeve, J. C.
  3. Journal of the American Chemical Society. 2006, Sep; 128(35): 11612-11619.
  1. 14.   Metabolism of a liver-selective nitric oxide-releasing agent, V-PYRRO/NO, by human microsomal cytochromes P450
  2. Inami, K.; Nims, R. W.; Srinivasan, A.; Citro, M. L.; Saavedra, J. E.; Cederbaum, A. I.; Keefer, L. K.
  3. Nitric Oxide-Biology and Chemistry. 2006, Jun; 14(4): 309-315.
  1. 15.   Effects of select PM-associated metals on alveolar macrophage phosphorylated ERK1 and-2 and iNOS expression during ongoing alteration in iron homeostasis
  2. Prophete, C.; Maciejczyk, P.; Salnikow, K.; Gould, T.; Larson, T.; Koenig, J.; Jaques, P.; Sioutas, C.; Lippmann, M.; Cohen, M.
  3. Journal of Toxicology & Environmental Health-Part A-Current Issues. 2006, MAY 15; 69(10): 935-951.
  1. 16.   On the nature of oxoiron (IV) intermediate in dioxygen activation by non-heme enzymes
  2. Nemukhin, A. V.; Topol, I. A.; Cachau, R. E.; Burt, S. K.
  3. Theoretical Chemistry Accounts. 2006, MAY; 115(5): 348-353.
  1. 17.   Increased oxidation and degradation of cytosolic proteins in alcohol-exposed mouse liver and hepatoma cells
  2. Kim, B. J.; Hood, B. L.; Aragon, R. A.; Hardwick, J. R.; Conrads, T. R.; Veenstra, T. D.; Song, B. J.
  3. Proteomics. 2006, FEB; 6(4): 1250-1260.
  1. 18.   Truncation, deamidation, and oxidation of histone H2B in cells cultured with nickel(II)
  2. Karaczyn, A. A.; Golebiowski, F.; Kasprzak, K. S.
  3. Chemical Research in Toxicology. 2005, DEC; 18(12): 1934-1942.
  1. 19.   Microarray analysis of altered gene expression in murine fibroblasts transformed by nickel(II) to nickel(II)-resistant malignant phenotype
  2. Kowara, R.; Karaczyn, A.; Cheng, R. Y. S.; Salnikow, K.; Kasprzak, K. S.
  3. Toxicology and Applied Pharmacology. 2005, MAY 15; 205(1): 1-10.
  1. 20.   Ascorbate depletion: A critical step in nickel carcinogenesis?
  2. Salnikow, K.; Kasprzak, K. S.
  3. Environmental Health Perspectives. 2005, MAY; 113(5): 577-584.
  1. 21.   p53 is a suppressor of inflammatory response in mice
  2. Komarova, E. A.; Krivokrysenko, V.; Wang, K. H.; Neznanov, N.; Chernov, M. V.; Komarov, P. G.; Brennan, M. L.; Golovkina, T. V.; Rokhlin, O.; Kuprash, D. V.; Nedospasov, S. A.; Hazen, S. R.; Feinstein, E.; Gudkov, A. V.
  3. Faseb Journal. 2005, APR; 19(6): Published online April 5, 2005.
  1. 22.   (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. 23.   Determination of the stability constants and oxidation susceptibility of nickel(II) complexes with 2 '-de oxyguano sine 5 '-triphosphate and L-histidine
  2. Kaczmarek, P.; Jezowska-Bojczuk, M.; Bal, W.; Kasprzak, K. S.
  3. Journal of Inorganic Biochemistry. 2005, MAR; 99(3): 737-746.
  1. 24.   Synthesis of nonracemic 3-deoxyschweinfurthin B
  2. Neighbors, J. D.; Beutler, J. A.; Wiemer, D. F.
  3. Journal of Organic Chemistry. 2005, FEB 4; 70(3): 925-931.
  1. 25.   Elimination of retroviral infectivity by N-ethylmaleimide with preservation of functional envelope glycoproteins
  2. Morcock, D. R.; Thomas, J. A.; Gagliardi, T. D.; Gorelick, R. J.; Roser, J. D.; Chertova, E. N.; Bess, J. W.; Ott, D. E.; Sattentau, Q. J.; Frank, I.; Pope, M.; Lifson, J. D.; Henderson, L. E.; Crise, B. J.
  3. Journal of Virology. 2005, FEB; 79(3): 1533-1542.
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