Comparison of Plasma Viremia and Antibody Responses in Macaques Inoculated with Envelope Variants of Single-Cycle Simian Immunodeficiency Virus Differing in Infectivity and Cellular Tropism

Author:

DeGottardi M. Quinn1,Lew Sharon K.1,Piatak Michael2,Jia Bin1,Feng Yang3,Lee Sandra J.3,Brenchley Jason M.4,Douek Daniel C.4,Kodama Toshiaki5,Lifson Jeffrey D.2,Evans David T.1

Affiliation:

1. Department of Microbiology and Molecular Genetics, Harvard Medical School, New England Regional Primate Research Center, Southborough, Massachusetts 01772-9102

2. AIDS Vaccine Program, SAIC Frederick, National Cancer Institute at Frederick, Frederick, Maryland 21702

3. Department of Biostatistics and Computational Biology, Dana-Farber Cancer Institute, Boston, Massachusetts 02115

4. Human Immunology Section, Vaccine Research Center, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, Maryland 20892

5. Department of Molecular Genetics and Biochemistry, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15238

Abstract

ABSTRACT Molecular differences in the envelope glycoproteins of human immunodeficiency virus type 1 and simian immunodeficiency virus (SIV) determine virus infectivity and cellular tropism. To examine how these properties contribute to productive infection in vivo, rhesus macaques were inoculated with strains of single-cycle SIV (scSIV) engineered to express three different envelope glycoproteins with full-length (TM open ) or truncated (TM stop ) cytoplasmic tails. The 239 envelope uses CCR5 for infection of memory CD4 + T cells, the 316 envelope also uses CCR5 but has enhanced infectivity for primary macrophages, and the 155T3 envelope uses CXCR4 for infection of both naive and memory CD4 + T cells. Separate groups of six rhesus macaques were inoculated intravenously with mixtures of TM open and TM stop scSIV mac 239, scSIV mac 316, and scSIV mac 155T3. A multiplex real-time PCR assay specific for unique sequence tags engineered into each virus was then used to measure viral loads for each strain independently. Viral loads in plasma peaked on day 4 for each strain and were resolved below the threshold of detection within 4 to 10 weeks. Truncation of the envelope cytoplasmic tail significantly increased the peak of viremia for all three envelope variants and the titer of SIV-specific antibody responses. Although peak viremias were similar for both R5- and X4-tropic viruses, clearance of scSIV mac 155T3 TM stop was significantly delayed relative to the other strains, possibly reflecting the infection of a CXCR4 + cell population that is less susceptible to the cytopathic effects of virus infection. These studies reveal differences in the peaks and durations of a single round of productive infection that reflect envelope-specific differences in infectivity, chemokine receptor specificity, and cellular tropism.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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