Comparing the Ex Vivo Fitness of CCR5-Tropic Human Immunodeficiency Virus Type 1 Isolates of Subtypes B and C

Author:

Ball Sarah C.1,Abraha Awet1,Collins Kalonji R.2,Marozsan Andre J.3,Baird Heather3,Quiñones-Mateu Miguel E.4,Penn-Nicholson Adam1,Murray Michael1,Richard Nathalie1,Lobritz Michael1,Zimmerman Peter A.5,Kawamura Tatsuyoshi6,Blauvelt Andrew6,Arts Eric J.123

Affiliation:

1. Division of Infectious Diseases, Department of Medicine

2. Molecular Virology Program

3. Department of Pharmacology

4. Department of Virology, Lerner Research Institute, Cleveland Clinic Foundation, Cleveland, Ohio

5. Division of Geographical Medicine, Department of Medicine, Case Western Reserve University

6. Dermatology Branch, National Cancer Institute, Bethesda, Maryland

Abstract

ABSTRACT Continual human immunodeficiency virus type 1 (HIV-1) evolution and expansion within the human population have led to unequal distribution of HIV-1 group M subtypes. In particular, recent outgrowth of subtype C in southern Africa, India, and China has fueled speculation that subtype C isolates may be more fit in vivo. In this study, nine subtype B and six subtype C HIV-1 isolates were added to peripheral blood mononuclear cell cultures for a complete pairwise competition experiment. All subtype C HIV-1 isolates were less fit than subtype B isolates ( P < 0.0001), but intrasubtype variations in HIV-1 fitness were not significant. Increased fitness of subtype B over subtype C was also observed in primary CD4 + T cells and macrophages from different human donors but not in skin-derived human Langerhans cells. Detailed analysis of the retroviral life cycle during several B and C virus competitions indicated that the efficiency of host cell entry may have a significant impact on relative fitness. Furthermore, phyletic analyses of fitness differences suggested that, for a recombined subtype B/C HIV-1 isolate, higher fitness mapped to the subtype B env gene rather than the subtype C gag and pol genes. These results suggest that subtype B and C HIV-1 may be transmitted with equal efficiency (Langerhans cell data) but that subtype C isolates may be less fit following initial infection (T-cell and macrophage data) and may lead to slower disease progression.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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