1994
DOI: 10.1073/pnas.91.17.7970
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Kinetics and mechanism of autoprocessing of human immunodeficiency virus type 1 protease from an analog of the Gag-Pol polyprotein.

Abstract: Upon renaturation, the polyprotein MBP-ATF-Protease-APol, consisting of HIV-1 protease and short native sequences from the trans-frame protein (ATF) and the polymerase (APol) fused to the maltose-binding protein (MBP) of Escherichia coli, undergoes autoprocessing to produce the mature protease in two steps. The initial step corresponds to cleavage of the N-terminal sequence to release the protein intermediate Protease-APol, which has enzymatic activity comparable to that of the mature enzyme. Subsequently, the… Show more

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Cited by 88 publications
(119 citation statements)
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References 26 publications
(11 reference statements)
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“…1; Protein Data Bank code 1A30) (6). 2 Our present studies of PR D29N suggest that the interaction between the Asp 29 and Arg 87 is more critical for dimerization than that between residues Asp 29 and Arg 8Ј .…”
mentioning
confidence: 91%
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“…1; Protein Data Bank code 1A30) (6). 2 Our present studies of PR D29N suggest that the interaction between the Asp 29 and Arg 87 is more critical for dimerization than that between residues Asp 29 and Arg 8Ј .…”
mentioning
confidence: 91%
“…The peptides were eluted using a linear gradient of 0 to 100% acetonitrile over a period of 25 min at a flow rate of 200 l/min. The peptides that eluted into the mass spectrometer were scanned from m/z 2 The prime symbol with the position number indicates a residue in the second monomer of the dimer. 300 to 1700 every 4 s. The spectra were deconvoluted using the Agilent software to yield the mass of the peptides.…”
Section: Methodsmentioning
confidence: 99%
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“…Experiments indicate initial cleavage by a precursor protease still embedded in the GagPol chain occurs through an intramolecular, concentration-independent mechanism with the precursor protease cleaving its own terminus (4) and critically modulated by the N-terminal region (5)(6)(7)(8). Mutations that block N-terminal cleavage result in severe loss of efficiency in catalytic activity.…”
mentioning
confidence: 99%
“…1) by kinetics and NMR revealed that the very low catalytic activity of the protease precursor prior to the cleavage at the N terminus is due to a much higher dimer dissociation constant (K d ) as compared with the mature protease (11). Upon intramolecular cleavage at the N terminus, the protease forms a stable dimer and exhibits a very low K d (Ͻ10 ϫ 10 Ϫ9 M in 50 mM sodium acetate, pH 5, at 25°C (8,13)). This suggests that inhibition of the protease function either by preventing or by disrupting dimer formation prior to its maturation provides an attractive avenue for inhibitor design.…”
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confidence: 99%