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  1. 1.   Targeting purine synthesis in ASS1-expressing tumors enhances the response to immune checkpoint inhibitors
  2. Keshet, Rom; Lee, Joo Sang; Adler, Lital; Iraqi, Muhammed; Ariav, Yarden; Lim, Lisha Qiu Jin; Lerner, Shaul; Rabinovich, Shiran; Oren, Roni; Katzir, Rotem; Tishler, Hila Weiss; Stettner, Noa; Goldman, Omer; Landesman, Hadas; Galai, Sivan; Kuperman, Yael; Kuznetsov, Yuri; Brandis, Alexander; Mehlman, Tevi; Malitsky, Sergey; Itkin, Maxim; Koehler, S. Eleonore; Zhao,Yongmei; Talsania,Keyur; Shen,Tsai-Wei; Peled, Nir; Ulitsky, Igor; Porgador, Angel; Ruppin, Eytan; Erez, Ayelet
  3. Nature Cancer. 2020, Sep; 1(9): 894-+.
  1. 2.   Identification of Potential Protein Targets of Isothiocyanates by Proteomics
  2. Mi, L. X.; Hood, B. L.; Stewart, N. A.; Xiao, Z.; Govind, S.; Wang, X. T.; Conrads, T. P.; Veenstra, T. D.; Chung, F. L.
  3. Chemical Research in Toxicology. 2011, Oct; 24(10): 1735-1743.
  1. 3.   Increased oxidative-modifications of cytosolic proteins in 3,4-methylenedioxymethamphetamine (MDMA, ecstasy)-exposed rat liver
  2. Upreti, V. V.; Moon, K. H.; Yu, L. R.; Lee, I. J.; Eddington, N. D.; Ye, X.; Veenstra, T. D.; Song, B. J.
  3. Proteomics. 2011, Jan; 11(2): 202-211.
  1. 4.   JS-K; a nitric oxide-releasing prodrug, modulates beta-catenin/TCF signaling in leukemic Jurkat cells: Evidence of an S-nitrosylated mechanism
  2. Nath, N.; Chattopadhyay, M.; Pospishi, L.; Cieciura, L. Z.; Goswami, S.; Kodela, R.; Saavedra, J. E.; Keefer, L. K.; Kashfi, K.
  3. Biochemical Pharmacology. 2010, Dec; 80(11): 1641-1649.
  1. 5.   Structure Mechanism Insights and the Role of Nitric Oxide Donation Guide the Development of Oxadiazole-2-Oxides as Therapeutic Agents against Schistosomiasis
  2. Rai, G.; Sayed, A. A.; Lea, W. A.; Luecke, H. F.; Chakrapani, H.; Prast-Nielsen, S.; Jadhav, A.; Leister, W.; Shen, M.; Inglese, J.; Austin, C. P.; Keefer, L.; Arner, E.; Simeonov, A.; Maloney, D. J.; Williams, D. L.; Thomas, C. J.
  3. Journal of Medicinal Chemistry. 2009 52(20): 6474-6483.
  1. 6.   Oxidative inactivation of key mitochondrial proteins leads to dysfunction and injury in hepatic ischemia reperfusion
  2. Moon, K. H.; Hood, B. L.; Mukhopadhyay, P.; Rajesh, M.; Abdelmegeed, M. A.; Kwon, Y. I.; Conrads, T. P.; Veenstra, T. D.; Song, B. J.; Pacher, P.
  3. Gastroenterology. 2008 135(4): 1344-1357.
  1. 7.   A glutathione S-transferase pi-activated prodrug causes kinase activation concurrent with S-glutathionylation of proteins
  2. Townsend, D. M.; Findlay, V. J.; Fazilev, F.; Ogle, M.; Fraser, J.; Saavedra, J. E.; Ji, X. H.; Keefer, L. K.; Tew, K. D.
  3. Molecular Pharmacology. 2006, FEB; 69(2): 501-508.
  1. 8.   Comparison of the NO and HNO donating properties of diazeniumdiolates: Primary amine adducts release HNO in vivo
  2. Miranda, K. M.; Katori, T.; de Holding, C. L. T.; Thomas, L.; Ridnour, L. A.; MeLendon, W. J.; Cologna, S. M.; Dutton, A. S.; Champion, H. C.; Mancardi, D.; Tocchetti, C. G.; Saavedra, J. E.; Keefer, L. K.; Houk, K. N.; Fukuto, J. M.; Kass, D. A.; Paolocci, N.; Wink, D. A.
  3. Journal of Medicinal Chemistry. 2005, DEC 29; 48(26): 8220-8228.
  1. 9.   Detection of S-nitrosothiols by fluorometric and colorimetric methods
  2. Wink, D. A.; Kim, S.; Coffin, D.; Cook, J. C.; Vodovotz, Y.; Chistodoulou, D.; Jourd'heuil, D.; Grisham, M. B.
  3. Nitric Oxide, Pt C : Biological and Antioxidant Activities. 1999 301: 201-211.
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