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The EMBO Journal|March 1, 1992
An engineered retroviral proteinase from myeloblastosis associated virus acquires pH dependence and substrate specificity of the HIV-1 proteinaseJ Konvalinka, M Horejsí, M Andreánsky, et al.The International Journal of Biochemistry|February 1, 1992
Isolation, biochemical characterization and crystallization of the p15gag proteinase of myeloblastosis associated virus expressed in E. coliI Pichová, P Strop, J Sedlácek, et al.Biochemistry|October 23, 1990
Engineering enzyme subsite specificity: preparation, kinetic characterization, and X-ray analysis at 2.0-A resolution of Val111Phe site-mutated calf chymosinP Strop, J Sedlacek, J Stys, et al.FEBS Letters|July 30, 1990
Sub-site preferences of the aspartic proteinase from the human immunodeficiency virus, HIV-1J Konvalinka, P Strop, J Velek, et al.Leukemia|April 1, 1997
Peptide inhibitors of HIV-1 and HIV-2 proteases: a comparative studyI Pichová, J Weber, J Litera, et al.Biochemistry|June 9, 1992
Different requirements for productive interaction between the active site of HIV-1 proteinase and substrates containing -hydrophobic*hydrophobic- or -aromatic*pro- cleavage sitesJ T Griffiths, L H Phylip, J Konvalinka, et al.Proteins|March 28, 1998
Mapping the active site of factor Xa by selective inhibitors: an NMR and MD studyF Fraternali, Q T Do, B T Doan, et al.Archives of Biochemistry and Biophysics|May 1, 1997
Potency comparison of peptidomimetic inhibitors against HIV-1 and HIV-2 proteinases: design of equipotent lead compoundsJ Weber, P Majer, J Litera, et al.Biochemical and Biophysical Research Communications|August 31, 1990
Hydrolysis of synthetic chromogenic substrates by HIV-1 and HIV-2 proteinasesL H Phylip, A D Richards, J Kay, et al.The Journal of Biological Chemistry|May 15, 1990
Sensitive, soluble chromogenic substrates for HIV-1 proteinaseA D Richards, L H Phylip, W G Farmerie, et al.Pageof 6