Changes in Human Immunodeficiency Virus Type 1 Envelope Glycoproteins Responsible for the Pathogenicity of a Multiply Passaged Simian-Human Immunodeficiency Virus (SHIV-HXBc2)

Author:

Cayabyab Mark12,Karlsson Gunilla B.1,Etemad-Moghadam Bijan A.1,Hofmann Wolfgang1,Steenbeke Tavis3,Halloran Matilda3,Fanton John W.4,Axthelm Michael K.4,Letvin Norman L.3,Sodroski Joseph G.12

Affiliation:

1. Department of Cancer Immunology/AIDS, Dana-Farber Cancer Institute, Department of Pathology1 and

2. Department of Immunology and Infectious Diseases, Harvard School of Public Health,2 Boston, Massachusetts 02115, and

3. Division of Viral Pathogenesis, Beth Israel Deaconess Medical Center,3 Harvard Medical School, and

4. Oregon Regional Primate Research Center, Beaverton, Oregon 97006-34994

Abstract

ABSTRACT In vivo passage of a poorly replicating, nonpathogenic simian-human immunodeficiency virus (SHIV-HXBc2) generated an efficiently replicating virus, KU-1, that caused rapid CD4 + T-lymphocyte depletion and AIDS-like illness in monkeys (S. V. Joag, Z. Li, L. Foresman, E. B. Stephens, L.-J. Zhao, I. Adany, D. M. Pinson, H. M. McClure, and O. Narayan, J. Virol. 70:3189–3197, 1996). The env gene of the KU-1 virus was used to create a molecularly cloned virus, SHIV-HXBc2P 3.2, that differed from a nonpathogenic SHIV-HXBc2 virus in only 12 envelope glycoprotein residues. SHIV-HXBc2P 3.2 replicated efficiently and caused rapid and persistent CD4 + T-lymphocyte depletion in inoculated rhesus macaques. Compared with the envelope glycoproteins of the parental SHIV-HXBc2, the SHIV-HXBc2P 3.2 envelope glycoproteins supported more efficient infection of rhesus monkey peripheral blood mononuclear cells. Both the parental SHIV-HXBc2 and the pathogenic SHIV-HXBc2P 3.2 used CXCR4 but none of the other seven transmembrane segment receptors tested as a second receptor. Compared with the parental virus, viruses with the SHIV-HXBc2P 3.2 envelope glycoproteins were more resistant to neutralization by soluble CD4 and antibodies. Thus, changes in the envelope glycoproteins account for the ability of the passaged virus to deplete CD4 + T lymphocytes rapidly and specify increased replicative capacity and resistance to neutralization.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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