Analysis of simian immunodeficiency virus sequence variation in tissues of rhesus macaques with simian AIDS

T Kodama1, K Mori, T Kawahara

  • 1Division of Primate Medicine, Oregon Regional Primate Research Center, Medical Research Foundation of Oregon, Beaverton 97006.

Journal of Virology
|November 1, 1993
PubMed

Insights

Simian immunodeficiency virus (SIV) variants with enhanced macrophage replication emerged in macaques with severe disease. Specific env gene changes in SIV facilitated replication in the brain and gut, influenced by immune responses and tissue tropism.

Area of Science:

  • Virology
  • Immunology
  • Genetics

Background:

  • Simian immunodeficiency virus (SIV) infection in rhesus macaques can lead to severe disease, including encephalomyelitis and enterocolitis.
  • Disease progression is often associated with the emergence of viral variants with altered replication capacities and tissue tropism.
  • Understanding the genetic basis of SIV pathogenesis is crucial for developing effective interventions.

Purpose of the Study:

  • To investigate the genetic variations in SIVmac239 associated with severe, tissue-specific disease (encephalomyelitis and enterocolitis) in rhesus macaques.
  • To determine if specific sequence changes in the viral env gene correlate with replication in the brain and gut.
  • To explore the influence of selective pressures, including immune responses and tissue specificity, on SIV env gene evolution.

Main Methods:

  • Infection of rhesus macaques with molecularly cloned SIVmac239.
  • Clinical and pathological assessment of disease severity and tissue distribution.
  • Sequence analysis of viral DNA from various tissues, focusing on the central region (vif, vpr, vpx), env gene, and LTR.
  • Comparison of viral sequences between animals with severe disease and those with different outcomes.

Main Results:

  • Two macaques developed severe encephalomyelitis and enterocolitis, respectively, with limited anti-SIV antibody response and rapid mortality.
  • These animals harbored SIV variants with increased replicative capacity for macrophages.
  • Sequence analysis revealed conserved regions but significant variation in the env gene, particularly in V1-V2 and V3-C3 regions of gp120.
  • Specific env sequence changes, some previously linked to enhanced macrophage replication and others potentially facilitating brain/gut replication, were identified.

Conclusions:

  • Severe SIVmac239 disease in macaques is linked to the emergence of variants with enhanced macrophage tropism.
  • Specific sequence variations within the SIV env gene appear to facilitate viral replication in the brain and gut.
  • Viral evolution in vivo is shaped by complex interactions between host immune responses, cell tropism, and tissue-specific selective pressures.

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