Viral Evolution in Response to the Broad-Based Retroviral Protease Inhibitor TL-3

Author:

Bühler Bernd1,Lin Ying-Chuan2,Morris Garrett2,Olson Arthur J.2,Wong Chi-Huey3,Richman Douglas D.45,Elder John H.2,Torbett Bruce E.1

Affiliation:

1. Departments of Molecular and Experimental Medicine,1

2. Molecular Biology,2 and

3. Chemistry,3 The Scripps Research Institute, La Jolla, California 92037;

4. Departments of Pathology and Medicine, University of California, San Diego, La Jolla, California 920934; and

5. San Diego VA Healthcare System, San Diego, California 921615

Abstract

ABSTRACT TL-3 is a protease inhibitor developed using the feline immunodeficiency virus protease as a model. It has been shown to efficiently inhibit replication of human, simian, and feline immunodeficiency viruses and therefore has broad-based activity. We now demonstrate that TL-3 efficiently inhibits the replication of 6 of 12 isolates with confirmed resistance mutations to known protease inhibitors. To dissect the spectrum of molecular changes in protease and viral properties associated with resistance to TL-3, a panel of chronological in vitro escape variants was generated. We have virologically and biochemically characterized mutants with one (V82A), three (M46I/F53L/V82A), or six (L24I/M46I/F53L/L63P/V77I/V82A) changes in the protease and structurally modeled the protease mutant containing six changes. Virus containing six changes was found to be 17-fold more resistant to TL-3 in cell culture than was wild-type virus but maintained similar in vitro replication kinetics compared to the wild-type virus. Analyses of enzyme activity of protease variants with one, three, and six changes indicated that these enzymes, compared to wild-type protease, retained 40, 47, and 61% activity, respectively. These results suggest that deficient protease enzymatic activity is sufficient for function, and the observed protease restoration might imply a selective advantage, at least in vitro, for increased protease activity.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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