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Advances in Experimental Medicine and Biology|January 1, 1977
Pepstatin inhibition mechanismJ Marciniszyn, J A Hartsuck, J TangThe Journal of Biological Chemistry|November 25, 1976
Mode of inhibition of acid proteases by pepstatinJ Marciniszyn, J A Hartsuck, J TangThe Journal of Biological Chemistry|November 25, 1976
Mechanism of intramolecular activation of pepsinogen. Evidence for an intermediate delta and the involvement of the active site of pepsin in the intramolecular activation of pepsinogenJ Marciniszyn, J S Huang, J A Hartsuck, et al.Advances in Experimental Medicine and Biology|January 1, 1977
Intramolecular activation of pepsinogenJ A Hartsuck, J Marciniszyn, J S Huang, et al.FEBS Letters|June 26, 1995
A kinetic model for comparing proteolytic processing activity and inhibitor resistance potential of mutant HIV-1 proteasesJ Tang, J A HartsuckThe Journal of Biological Chemistry|April 10, 1975
Conversion of pepsinogen to pepsin. Further evidence for intramolecular and pepsin-catalyzed activationC G Sanny, J A Hartsuck, J TangThe Journal of Biological Chemistry|July 20, 1975
Primary structure of porcine pepsin. III. Amino acid sequence of a cyanogen bromide fragment, CB2A, and the complete structure of porcine pepsinP Sepulveda, J Marciniszyn, D Liu, et al.Protein Science : a Publication of the Protein Society|December 6, 2000
Crystal structure of an in vivo HIV-1 protease mutant in complex with saquinavir: insights into the mechanisms of drug resistanceL Hong, X C Zhang, J A Hartsuck, et al.Scandinavian Journal of Clinical and Laboratory Investigation. Supplementum|January 1, 1992
Understanding HIV protease: can it be translated into effective therapy against AIDS?J Tang, Y Lin, E Co, et al.Biochemistry|August 20, 1996
Crystal structures of complexes of a peptidic inhibitor with wild-type and two mutant HIV-1 proteasesL Hong, A Treharne, J A Hartsuck, et al.Pageof 207