The Human Immunodeficiency Virus Type 1 nef Gene Can to a Large Extent Replace Simian Immunodeficiency Virus nef In Vivo

Author:

Kirchhoff Frank1,Münch Jan1,Carl Silke1,Stolte Nicole2,Mätz-Rensing Kerstin2,Fuchs Dietmar2,Ten Haaft Peter3,Heeney Jonathan L.3,Swigut Tomek4,Skowronski Jacek4,Stahl-Hennig Christiane2

Affiliation:

1. Institute for Clinical and Molecular Virology, University of Erlangen-Nuernberg, 91054 Erlangen,1 and

2. German Primate Center, 37077 Göttingen,2 Germany;

3. Biomedical Primate Research Center, Department of Virology, 2288 GJ Rijswijk, The Netherlands3; and

4. Cold Spring Harbor Laboratory, Cold Spring Harbor, New York 117244

Abstract

ABSTRACT The nef gene of the pathogenic simian immunodeficiency virus (SIV) 239 clone was replaced with primary human immunodeficiency virus type 1 (HIV-1) nef alleles to investigate whether HIV-1 Nef can substitute for SIV Nef in vivo. Initially, two rhesus macaques were infected with the chimeric viruses (Nef-SHIVs). Most of the nef alleles obtained from both animals predicted intact open reading frames. Furthermore, forms containing upstream nucleotide substitutions that enhanced expression of the inserted gene became predominant. One animal maintained high viral loads and slowly progressed to immunodeficiency. nef long terminal repeat sequences amplified from this animal were used to generate a second generation of Nef-SHIVs. Two macaques, which were subsequently infected with a mixture of cloned chimeric viruses, showed high viral loads and progressed to fatal immunodeficiency. Five macaques received a single molecular clone, named SHIV-40K6. The SHIV-40K6 nef allele was active in CD4 and class I major histocompatibility complex downregulation and enhanced viral infectivity and replication. Notably, all of the macaques inoculated with SHIV-40K6 showed high levels of viral replication early in infection. During later stages, however, the course of infection was variable. Three animals maintained high viral loads and developed immunodeficiency. Of the remaining two macaques, which showed decreasing viral loads after the acute phase of infection, only one efficiently controlled viral replication and remained asymptomatic during 1.5 years of follow-up. The other animal showed an increasing viral load and developed signs of progressive infection during later stages. Our data demonstrate that HIV-1 nef can, to a large extent, functionally replace SIVmac nef in vivo.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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