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Updated: Jan 30, 2026

Phagosome Migration and Velocity Measured in Live Primary Human Macrophages Infected with HIV-1
Published on: September 5, 2016
Incomplete Suppression of HIV-1 by SAMHD1 Permits Efficient Macrophage Infection
Timothy Plitnik1, Mark E Sharkey2, Bijan Mahboubi3,4
1Department of Microbiology & Immunology; Miller School of Medicine, University of Miami; Miami, Florida.
Background:
Sterile alpha motif and histidine/aspartic acid domain-containing protein (SAMHD1) is a dNTP triphosphorylase that reduces cellular dNTP levels in non-dividing cells, such as macrophages. Since dNTPs are required for reverse transcription, HIV-2 and most SIVs encode a Vpx protein that promotes proteasomal degradation of SAMHD1. It is unclear how HIV-1, which does not appear to harbor a SAMHD1 escape mechanism, is able to infect macrophages in the face of SAMHD1 restriction.
Methods:
To assess whether HIV-1 had a mechanism to negate SAMHD1 activity, we compared SAMHD1 and dNTP levels in macrophages infected by HIV-1 and SIV. We examined whether macrophages infected by HIV-1 still harbored antiviral levels of SAMHD1 by assessing their susceptibility to superinfection by vpx-deleted SIV. Finally, to assess whether HIV-1 reverse transcriptase (RT) has adapted to a low dNTP environment, we evaluated SAMHD1 sensitivity of chimeric HIV-1 and SIV variants in which the RT regions were functionally exchanged.
Results:
Here, we demonstrate that HIV-1 efficiently infects macrophages without modulating SAMHD1 activity or cellular dNTP levels, and that macrophages permissive to HIV-1 infection remained refractory to superinfection by vpx-deleted SIV. Furthermore, through the use of chimeric HIV/SIV, we demonstrate that the differential sensitivity of HIV-1 and SIV to SAMHD1 restriction is not dictated by RT.
Conclusions:
Our study reveals fundamental differences between HIV-1 and SIV in the strategy used to evade restriction by SAMHD1 and suggests a degree of resistance of HIV-1 to the antiviral environment created by SAMHD1. Understanding how these cellular restrictions antagonize viral replication will be important for the design of novel antiviral strategies.
Insights
HIV-1 infects macrophages by evading the SAMHD1 restriction, unlike SIV. This study reveals distinct viral strategies for overcoming cellular defenses, crucial for developing new antiviral therapies.
Area of Science:
- Virology
- Immunology
- Molecular Biology
Background:
- Sterile alpha motif and histidine/aspartic acid domain-containing protein (SAMHD1) is a dNTP triphosphatase that restricts viral replication by lowering dNTP levels in macrophages.
- HIV-2 and SIV use the Vpx protein to degrade SAMHD1, but HIV-1's mechanism for overcoming this restriction is unclear.
- Understanding HIV-1's interaction with SAMHD1 is critical for explaining its macrophage tropism and for developing antiviral strategies.
Purpose of the Study:
- To investigate whether HIV-1 possesses a mechanism to counteract SAMHD1 activity in macrophages.
- To compare the host-pathogen interactions of HIV-1 and SIV regarding SAMHD1 restriction.
- To determine if HIV-1 reverse transcriptase (RT) has adapted to low dNTP environments.
Main Methods:
- Compared SAMHD1 and dNTP levels in macrophages infected with HIV-1 and SIV.
- Assessed macrophage susceptibility to superinfection by vpx-deleted SIV after HIV-1 infection.
- Utilized chimeric HIV-1/SIV variants with exchanged RT regions to evaluate SAMHD1 sensitivity.
Main Results:
- HIV-1 efficiently infects macrophages without altering SAMHD1 activity or dNTP levels.
- Macrophages permissive to HIV-1 remained resistant to superinfection by vpx-deleted SIV.
- Differential sensitivity of HIV-1 and SIV to SAMHD1 is not determined by their reverse transcriptase regions.
Conclusions:
- HIV-1 and SIV employ distinct strategies to evade SAMHD1-mediated restriction.
- HIV-1 exhibits resistance to the antiviral environment imposed by SAMHD1.
- Elucidating these viral evasion mechanisms is key for designing novel antiviral therapies.
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