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  1. 1.   1.8 angstrom resolution structure of beta-galactosidase with a 200 kV CRYO ARM electron microscope
  2. Merk,Alan; Fukumura, Takuma; Zhu, Xing; Darling,Joseph; Grisshammer,Reinhard; Ognjenovic,Jana; Subramaniam, Sriram
  3. IUCRJ. 2020, JUL; 7(Part 4): 639-643.
  1. 2.   Transcription antitermination by translation initiation factor IF1
  2. Phadtare, S.; Kazakov, T.; Bubunenko, M.; Court, D. L.; Pestova, T.; Severinov, K.
  3. Journal of Bacteriology. 2007, Jun; 189(11): 4087-4093.
  1. 3.   30S ribosomal subunits can be assembled in vivo without primary binding ribosomal protein S15
  2. Bubunenko, M.; Korepanov, A.; Court, D. L.; Jagannathan, I.; Dickinson, D.; Chaudhuri, B. R.; Garber, M. B.; Culver, G. M.
  3. Rna-a Publication of the Rna Society. 2006, Jul; 12(7): 1229-1239.
  1. 4.   Injectable formulation of disodium 1-[2-(carboxylato)pyrrolidin-1-yl]diazen-1-ium-1,2-diolate (PROLI/NO), an ultrafast nitric oxide donor prodrug
  2. Waterhouse, D. J.; Saavedra, J. E.; Davies, K. M.; Citro, M. L.; Xu, X.; Powell, D. A.; Grimes, G. J.; Potti, G. K.; Keefer, L. K.
  3. Journal of Pharmaceutical Sciences. 2006, JAN; 95(1): 108-115.
  1. 5.   Characterization of an S-locus receptor protein kinase-like gene from peach
  2. Bassett, C. L.; Nickerson, M. L.; Farrell, R. E.; Artlip, T. S.; El Ghaouth, A.; Wilson, C. L.; Wisniewski, M. E.
  3. Tree Physiology. 2005 25(4): 403-411.
  1. 6.   Impact of nef-mediated downregulation of major histocompatibility complex class I on immune response to simian immunodeficiency virus
  2. Swigut, T.; Alexander, L.; Morgan, J.; Lifson, J.; Mansfield, K. G.; Lang, S.; Johnson, R. P.; Skowronski, J.; Desrosiers, R.
  3. Journal of Virology. 2004, DEC; 78(23): 13335-13344.
  1. 7.   Varshavsky's contributions
  2. Baumeister, W.; Bachmair, A.; Chau, V.; Cohen, R.; Coffino, P.; DeMartino, G.; Deshaies, R.; Dohmen, J.; Emr, S.; Finley, D.; Hampton, R.; Hill, C.; Hochstrasser, M.; Huber, R.; Jackson, P.; Jentsch, S.; Johnson, E.; Kwon, Y. T.; Pagano, M.; Pickart, C.; Rechsteiner, M.; Scheffner, M.; Sommer, T.; Tansey, W.; Tyers, M.; Vierstra, R.; Weissman, A.; Wilkinson, K. D.; Wolf, D.
  3. Science. 2004, NOV 19; 306(5700): 1290-1292.
  1. 8.   Experiment-guided thermodynamic simulations on reversible two-state proteins: implications for protein thermostability
  2. Kumar, S.; Nussinov, R.
  3. Biophysical Chemistry. 2004, NOV 1; 111(3): 235-246.
  1. 9.   Components of the cell death machine and drug sensitivity of the National Cancer Institute cell line panel
  2. Svingen, P. A.; Loegering, D.; Rodriquez, J.; Meng, X. W.; Mesner, P. W.; Holbeck, S.; Monks, A.; Krajewski, S.; Scudiero, D. A.; Sausville, E. A.; Reed, J. C.; Lazebnik, Y. A.; Kaufmann, S. H.
  3. Clinical Cancer Research. 2004, OCT 15; 10(20): 6807-6820.
  1. 10.   Different roles of electrostatics in heat and in cold: Adaptation by citrate synthase
  2. Kumar, S.; Nussinov, R.
  3. Chembiochem. 2004 5(3): 280-290.
  1. 11.   Temperature range of thermodynamic stability for the native state of reversible two-state proteins
  2. Kumar, S.; Tsai, C. J.; Nussinov, R.
  3. Biochemistry. 2003 42(17): 4864-4873.
  1. 12.   Maximal stabilities of reversible two-state proteins
  2. Kumar, S.; Tsai, C. J.; Nussinov, R.
  3. Biochemistry. 2002 41(17): 5359-5374.
  1. 13.   The hydrophobic effect: A new insight from cold denaturation and a two-state water structure
  2. Tsai, C. J.; Maizel, J. V.; Nussinov, R.
  3. Critical Reviews in Biochemistry and Molecular Biology. 2002 37(2): 55-69.
  1. 14.   Thermodynamic differences among homologous thermophilic and mesophilic proteins
  2. Kumar, S.; Tsai, C. J.; Nussinov, R.
  3. Biochemistry. 2001 40(47): 14152-14165.
  1. 15.   How do thermophilic proteins deal with heat?
  2. Kumar, S.; Nussinov, R.
  3. Cellular and Molecular Life Sciences. 2001 58(9): 1216-1233.
  1. 16.   A systematic study of the vibrational free energies of polypeptides in folded and random states
  2. Ma, B. Y.; Tsai, C. J.; Nussinov, R.
  3. Biophysical Journal. 2000 79(5): 2739-2753.
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