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Analysis of Simian Immunodeficiency Virus-specific CD8+ T-cells in Rhesus Macaques by Peptide-MHC-I Tetramer Staining
Published on: December 23, 2016
A species-specific amino acid difference in the macaque CD4 receptor restricts replication by global circulating
Daryl Humes1, Sandra Emery, Elizabeth Laws
1Division of Human Biology, Fred Hutchinson Cancer Research Center, Seattle, Washington, USA.
Abstract:
HIV-1 replicates poorly in macaque cells, and this had hindered the advancement of relevant nonhuman primate model systems for HIV-1 infection and pathogenesis. Several host restriction factors have been identified that contribute to this species-specific restriction to HIV-1 replication, but these do not fully explain the poor replication of most strains of HIV-1 in macaque cells. Only select HIV-1 envelope variants, typically those derived from viruses that have been adapted in cell culture, result in infectious chimeric SIVs encoding HIV-1 envelope (SHIVs). Here we demonstrate that most circulating HIV-1 variants obtained directly from infected individuals soon after virus acquisition do not efficiently mediate entry using the macaque CD4 receptor. The infectivity of these viruses is ca. 20- to 50-fold lower with the rhesus and pig-tailed macaque versus the human CD4 receptor. In contrast, culture-derived HIV-1 envelope variants that facilitate efficient replication in macaques showed similar infectivity with macaque and human CD4 receptors (within ∼2-fold). The ability of an envelope to mediate entry using macaque CD4 correlated with its ability to mediate entry of cells expressing low levels of the human CD4 receptor and with soluble CD4 sensitivity. Species-specific differences in the functional capacity of the CD4 receptor to mediate entry mapped to a single amino acid difference at position 39 that is under strong positive selection, suggesting that the evolution of CD4 may have been influenced by its function as a viral receptor. These results also suggest that N39 in human CD4 may be a critical residue for interaction of transmitted HIV-1 variants. These studies provide important insights into virus-host cell interactions that have hindered the development of relevant nonhuman primate models for HIV-1 infection and provide possible markers, such as sCD4 sensitivity, to identify potential HIV-1 variants that could be exploited for development of better SHIV/macaque model systems.
Insights
Most human immunodeficiency virus type 1 (HIV-1) variants poorly infect macaque cells due to CD4 receptor differences. Understanding these interactions is key to developing better nonhuman primate models for HIV-1 research.
Area of Science:
- Virology
- Immunology
- Primate Models
Background:
- Human immunodeficiency virus type 1 (HIV-1) replication is restricted in macaque cells, limiting nonhuman primate models.
- Existing host restriction factors do not fully explain this species-specific restriction.
- Chimeric SIVs encoding HIV-1 envelope (SHIVs) are typically derived from cell-culture-adapted viruses.
Purpose of the Study:
- To investigate why most circulating HIV-1 variants do not efficiently infect macaque cells.
- To identify factors influencing HIV-1 entry mediated by macaque CD4 receptors.
- To provide insights for developing improved SHIV/macaque models for HIV-1 research.
Main Methods:
- Compared infectivity of transmitted HIV-1 variants with human and macaque CD4 receptors.
- Assessed envelope-mediated entry using cells with varying CD4 expression levels.
- Analyzed CD4 receptor sequence for species-specific functional differences.
Main Results:
- Transmitted HIV-1 variants showed 20- to 50-fold lower infectivity with macaque CD4 compared to human CD4.
- Cell-culture-adapted variants demonstrated similar infectivity with both macaque and human CD4.
- A single amino acid difference at position 39 in CD4 significantly impacted entry efficiency.
Conclusions:
- Species-specific differences in CD4 receptor function, particularly at position 39, restrict HIV-1 entry in macaques.
- Soluble CD4 sensitivity may serve as a marker for identifying HIV-1 variants suitable for macaque models.
- These findings advance understanding of virus-host interactions and primate model development for HIV-1.
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