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  1. 1.   Integrating the intrinsic conformational preferences of noncoded alpha-amino acids modified at the peptide bond into the Noncoded Amino acids Database
  2. Revilla-Lopez, G.; Rodriguez-Ropero, F.; Curco, D.; Torras, J.; Calaza, M. I.; Zanuy, D.; Jimenez, A. I.; Cativiela, C.; Nussinov, R.; Aleman, C.
  3. Proteins-Structure Function and Bioinformatics. 2011, Jun; 79(6): 1841-1852.
  1. 2.   Structural Analysis of a beta-Helical Protein Motif Stabilized by Targeted Replacements with Conformationally Constrained Amino Acids
  2. Ballano, G.; Zanuy, D.; Jimenez, A. I.; Cativiela, C.; Nussinov, R.; Aleman, C.
  3. Journal of Physical Chemistry B. 2008 112(41): 13101-13115.
  1. 3.   1-amino-2-phenylcyclopentane-1-carboxylic acid: A conformationally restricted phenylalanine analogue
  2. Casanovas, J.; Jimenez, A. I.; Cativiela, C.; Nussinov, R.; Aleman, C.
  3. Journal of Organic Chemistry. 2008 73(2): 644-651.
  1. 4.   Testing beta-helix terminal coils stability by targeted substitutions with non-proteogenic amino acids: A molecular dynamics study
  2. Zanuy, D.; Rodriguez-Ropero, F.; Nussinov, R.; Aleman, C.
  3. Journal of Structural Biology. 2007, Nov; 160(2): 177-189.
  1. 5.   Nanostructure design using protein building blocks enhanced by conformationally constrained synthetic residues
  2. Zheng, J.; Zanuy, D.; Haspel, N.; Tsai, C. J.; Aleman, C.; Nussinov, R.
  3. Biochemistry. 2007, Feb; 46(5): 1205-1218.
  1. 6.   Backbone conformational preferences and pseudorotational ring puckering of 1-aminocyclopentane-1-carboxylic acid
  2. Aleman, C.; Zanuy, D.; Casanovas, J.; Cativiela, C.; Nussinov, R.
  3. Journal of Physical Chemistry B. 2006, Oct; 110(42): 21264-21271.
  1. 7.   In vitro processing of HIV-1 nucleocapsid protein by the viral proteinase: Effects of amino acid substitutions at the scissile bond in the proximal zinc finger sequence
  2. Tozser, J.; Shulenin, S.; Louis, J. M.; Copeland, T. D.; Oroszlan, S.
  3. Biochemistry. 2004 43(14): 4304-4312.
  1. 8.   The synthetic peptide WKYMVm attenuates the function of the chemokine receptors CCR5 and CXCR4 through activation of formyl peptide receptor-like 1
  2. Li, B. Q.; Wetzel, M. A.; Mikovits, J. A.; Henderson, E. E.; Rogers, T. J.; Gong, W.; Le, Y.; Ruscetti, F. W.; Wang, J. M.
  3. Blood. 2001 97(10): 2941-2947.
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