^“Structure of complex of synthetic HIV-1 protease with a substrate-based inhibitor at 2.3 A resolution”. Science246 (4934): 1149–52. (December 1989). doi:10.1126/science.2686029. PMID2686029.
^“Autoprocessing of HIV-1 protease is tightly coupled to protein folding”. Nature Structural Biology6 (9): 868–75. (September 1999). doi:10.1038/12327. PMID10467100.
^“A transient precursor of the HIV-1 protease. Isolation, characterization, and kinetics of maturation”. The Journal of Biological Chemistry271 (8): 4477–81. (February 1996). doi:10.1074/jbc.271.8.4477. PMID8626801.
^“Ionization states of the catalytic residues in HIV-1 protease”. Nature Structural Biology3 (11): 946–50. (November 1996). doi:10.1038/nsb1196-946. PMID8901873.
^ ab“A combined quantum/classical molecular dynamics study of the catalytic mechanism of HIV protease”. Journal of Molecular Biology261 (3): 454–69. (August 1996). doi:10.1006/jmbi.1996.0476. PMID8780786.
^“Structure at 2.5-A resolution of chemically synthesized human immunodeficiency virus type 1 protease complexed with a hydroxyethylene-based inhibitor”. Biochemistry30 (6): 1600–9. (February 1991). doi:10.1021/bi00220a023. PMID1993177.