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Featured researches published by John O. Hui.


Journal of Protein Chemistry | 1993

Large scale purification and refolding of HIV-1 protease from Escherichia coli inclusion bodies

John O. Hui; Alfredo G. Tomasselli; Ilene M. Reardon; June Lull; David P. Brunner; Che-Shen C. Tomich; Robert L. Heinrikson

The protease encoded by the human immunodeficiency virus type 1 (HIV-1) was engineered inEscherichia coli as a construct in which the natural 99-residue polypeptide was preceded by an NH2-terminal methionine initiator. Inclusion bodies harboring the recombinant HIV-I protease were dissolved in 50% acetic acid and the solution was subjected to gel filtration on a column of Sephadex G-75. The protein, eluted in the second of two peaks, migrated in SDS-PAGE as a single sharp band ofMr ≈ 10,000. The purified HIV-1 protease was refolded into an active enzyme by diluting a solution of the protein in 50% acetic acid with 25 volumes of buffer atpH 5.5. This method of purification, which has also been applied to the purification of HIV-2 protease, provides a single-step procedure to produce 100 mg quantities of fully active enzyme.


Analytical Biochemistry | 1991

Could angiotensin I be produced from a renin substrate by the HIV-1 protease ?

Satish K. Sharma; David B. Evans; John O. Hui; Robert L. Heinrikson

The standard angiotensin I (Ang I) radioimmunoassay for renin activity determination is a useful clinical tool for the diagnosis of high renin levels in certain cases of hypertension. It depends upon the liberation of Ang I from human plasma angiotensinogen. We considered whether a commercially available synthetic tetradecapeptide (TDP), Asp-Arg-Val-Tyr-Ile-His-Pro-Phe-His-Leu-Leu-Val-Tyr-Ser, would produce authentic Ang I upon incubation with protease from human immunodeficiency virus type 1 (HIV-1). This peptide is also known to be cleaved by renin at the Leu-Leu bond to yield the decapeptide Ang I. When the TDP is incubated with the HIV-1 protease, the peptide is readily hydrolyzed. Product formation is linear with respect to time and enzyme concentration. HPLC analysis of reaction products showed two new peaks, as one would expect from the cleavage of a TDP into a decapeptide and a tetrapeptide. Amino acid analysis of HPLC-purified peaks confirmed that the HIV-1 protease cleaves TDP at the Leu10-Leu11 site to produce the desired decapeptide, Ang I. Production of Ang I by the HIV-1 protease, like human renin, is inhibited in the presence of a protease inhibitor. Implications of the discovery of an HIV-1 protease substrate that produces authentic Ang I are discussed in light of a screening assay for soluble HIV-1 protease inhibitors.


Bioorganic & Medicinal Chemistry Letters | 1993

Peptidomimetic inhibitors of human immunodeficiency virus protease (HIV-PR): Design, enzyme binding and selectivity, antiviral efficacy, and cell permeability properties

Tomi K. Sawyer; Jed F. Fisher; Jackson B. Hester; C.W. Smith; Alfredo G. Tomasselli; W.G. Tarpley; P.S. Burton; John O. Hui; T.J. McQuade; R.A. Conradi; V.S. Bradford; Li Liu; J.H. Kinner; J. Tustin; D.L. Alexander; Allen W. Harrison; D.E. Emmert; Douglas J. Staples; L.L. Maggiora; Y.Z. Zhang; Roger A. Poorman; B.M. Dunna; C. Rao; P.E. Scarborough; W.T. Lowther; Charles S. Craik; Dianne L. DeCamp; Joseph B. Moon; W.J. Howe; Robert L. Heinrikson

Abstract The structure-activity relationships and pharmacophore modeling aspects of a series of HIV PR inhibitors modified at the N- and/or C-terminus of the dipeptide isostere ChaΨ[CH(OH)CH2]Val (Cha, cyclohexylalanine) are reported. The HIV PR binding affinity-selectivity (vs. human renin, pepsin, and cathepsins-D and E), antiviral efficacy (HIV-1/vVK-1 infected CV-1 cells) and cellular permeabilities (Caco-2) are noted.


Biochemistry | 1990

Substrate analogue inhibition and active site titration of purified recombinant HIV-1 protease.

Alfredo G. Tomasselli; Mary K. Olsen; John O. Hui; Douglas J. Staples; Tomi K. Sawyer; Robert L. Heinrikson; Che Shen C. Tomich


Journal of Biological Chemistry | 1990

Specificity and inhibition of proteases from human immunodeficiency viruses 1 and 2.

Alfredo G. Tomasselli; John O. Hui; Tomi K. Sawyer; D J Staples; C Bannow; Ilene M. Reardon; W J Howe; Dianne L. DeCamp; Charles S. Craik; Robert L. Heinrikson


Protein Science | 1992

Crystal structure of a complex of HIV-1 protease with a dihydroxyethylene-containing inhibitor: comparisons with molecular modeling.

N. Thanki; J. K. Rao; S. I. Foundling; W. J. Howe; Joseph B. Moon; John O. Hui; Alfredo G. Tomasselli; Robert L. Heinrikson; Suvit Thaisrivongs; Alexander Wlodawer


Biochemistry | 1998

Determination of disulfide structure in agouti-related protein (AGRP) by stepwise reduction and alkylation.

Edward J. Bures; John O. Hui; Yunjen Young; David T. Chow; Vishwanatham Katta; Michael F. Rohde; Lisa Zeni; Robert Rosenfeld; Kevin Lee Stark; Mitsuru Haniu


Biochemistry | 1998

Biochemical, biophysical, and pharmacological characterization of bacterially expressed human agouti-related protein.

Robert Rosenfeld; Lisa Zeni; Andrew A. Welcher; Linda O. Narhi; Clarence Hale; Julie Marasco; John M. Delaney; Thomas Gleason; John S. Philo; Viswanathan Katta; John O. Hui; Jamie Baumgartner; Melissa Graham; Kevin Lee Stark; William Karbon


Journal of Biological Chemistry | 1993

The crystallographic structure of the protease from human immunodeficiency virus type 2 with two synthetic peptidic transition state analog inhibitors.

A. M. Mulichak; John O. Hui; Alfredo G. Tomasselli; Robert L. Heinrikson; Kimberly A. Curry; Che-Shen Tomich; Suvit Thaisrivongs; Tomi K. Sawyer; Keith D. Watenpaugh


Journal of Medicinal Chemistry | 1991

Inhibitors of the protease from human immunodeficiency virus : design and modeling of a compound containing a dihydroxyethylene isostere insert with high binding affinity and effective antiviral activity

Suvit Thaisrivongs; Alfredo G. Tomasselli; Joseph B. Moon; John O. Hui; Thomas J. McQuade; Steve R. Turner; Joseph Walter Strohbach; W. Jeffrey Howe; Robert L. Heinrikson

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