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  1. 1.   A Zpr1 co-chaperone mediates folding of eukaryotic translation elongation factor 1A via a GTPase cycle
  2. McQuown, Alexander J; Nelliat, Anjali R; Reif, Dvir; Sabbarini, Ibrahim M; Membreno, Britnie Santiago; Wu,Colin; Denic, Vladimir
  3. Molecular Cell. 2023, Aug 16; 81(17): 3108-3122.
  1. 2.   Polycistronic baculovirus expression of SUGT1 enables high-yield production of recombinant leucine-rich repeat proteins and protein complexes
  2. Snead,Kelly; Wall,Vanessa; Ambrose,Hannah; Esposito,Dom; Drew,Matt
  3. Protein Expression and Purification. 2022, Feb 04; 193: 106061.
  1. 3.   New insights into structural and functional relationships between LonA proteases and ClpB chaperones
  2. Rotanova, Tatyana V; Andrianova, Anna G; Kudzhaev, Arsen M; Li,Mi; Botos, Istvan; Wlodawer,Alexander; Gustchina,Alla
  3. FEBS open bio. 2019, JUL 21;
  1. 4.   MBP-binding DARPins facilitate the crystallization of an MBP fusion protein
  2. Gumpena, Rajesh; Lountos, George; Waugh, David
  3. Acta Crystallographica. Section F, Structural Biology Communications. 2018, Sep 01; 74(Pt 9): 549-557.
  1. 5.   Dynamic Allostery: Linkers Are Not Merely Flexible
  2. Ma, B. Y.; Tsai, C. J.; Haliloglu, T.; Nussinov, R.
  3. Structure. 2011, Jul; 19(7): 907-917.
  1. 6.   Mutational Analysis of Threonine 402 Adjacent to the GXXXG Dimerization Motif in Transmembrane Segment 1 of ABCG2
  2. Polgar, O.; Ierano, C.; Tamaki, A.; Stanley, B.; Ward, Y.; Xia, D.; Tarasova, N.; Robey, R. W.; Bates, S. E.
  3. Biochemistry. 2010, Mar; 49(10): 2235-2245.
  1. 7.   Targeting and Insertion of the Cholesterol-Binding Translocator Protein into the Outer Mitochondrial Membrane
  2. Rone, M. B.; Liu, J.; Blonder, J.; Ye, X. Y.; Veenstra, T. D.; Young, J. C.; Papadopoulos, V.
  3. Biochemistry. 2009 48(29): 6909-6920.
  1. 8.   Intra-molecular chaperone: the role of the N-terminal in conformational selection and kinetic control
  2. Tsai, C. J.; Ma, B.; Nussinov, R.
  3. Physical Biology. 2009 6(1): 13001-.
  1. 9.   Nucleic acid binding and chaperone properties of HIV-1 Gag and nucleocapsid proteins
  2. Cruceanu, M.; Urbaneja, M. A.; Hixson, C. V.; Johnson, D. G.; Datta, S. A.; Fivash, M. J.; Stephen, A. G.; Fisher, R. J.; Gorelick, R. J.; Casas-Finet, J. R.; Rein, A.; Rouzina, I.; Williams, M. C.
  3. Nucleic Acids Research. 2006 34(2): 593-605.
  1. 10.   Novel protein-protein interactions of the Yersinia pestis type III secretion system elucidated with a matrix analysis by surface plasmon resonance and mass spectrometry
  2. Swietnicki, W.; O'Brien, S.; Holman, K.; Cherry, S.; Brueggemann, E.; Tropea, J. E.; Hines, H. B.; Waugh, D. S.; Ulrich, R. G.
  3. Journal of Biological Chemistry. 2004, SEP 10; 279(37): 38693-38700.
  1. 11.   Binding and folding: in search of intramolecular chaperone-like building block fragments
  2. Ma, B. Y.; Tsai, C. J.; Nussinov, R.
  3. Protein Engineering. 2000 13(9): 617-627.
  1. 12.   Folding and binding cascades: Dynamic landscapes and population shifts
  2. Kumar, S.; Ma, B. Y.; Tsai, C. J.; Sinha, N.; Nussinov, R.
  3. Protein Science. 2000 9(1): 10-19.
  1. 13.   Plasmodium yoelii: Cloning and characterization of the gene encoding for the mitochondrial heat shock protein 60
  2. Sanchez, G. I.; Carucci, D. J.; Sacci, J.; Resau, J. H.; Rogers, W. O.; Kumar, N.; Hoffman, S. L.
  3. Experimental Parasitology. 1999 93(4): 181-190.
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