In vivo Serial Passaging of Human-Simian Immunodeficiency Virus Clones Identifies Characteristics for Persistent
Rajesh Thippeshappa1, Patricia Polacino2, Shaswath S Chandrasekar3
1Disease Intervention and Prevention Program, Southwest National Primate Research Center, Texas Biomedical Research Institute, San Antonio, TX, United States.
Abstract:
We previously reported that a human immunodeficiency virus type 1 with a simian immunodeficiency virus vif substitution (HSIV-vifNL4-3) could replicate in pigtailed macaques (PTMs), demonstrating that Vif is a species-specific tropism factor of primate lentiviruses. However, infections did not result in high-peak viremia or setpoint plasma viral loads, as observed during simian immunodeficiency virus (SIV) infection of PTMs. Here, we characterized variants isolated from one of the original infected animals with CD4 depletion after nearly 4years of infection to identify determinants of increased replication fitness. In our studies, we found that the HSIV-vif clones did not express the HIV-1 Vpr protein due to interference from the vpx open reading frame (ORF) in singly spliced vpr mRNA. To examine whether these viral genes contribute to persistent viral replication, we generated infectious HSIV-vif clones expressing either the HIV-1 Vpr or SIV Vpx protein. And then to determine viral fitness determinants of HSIV-vif, we conducted three rounds of serial in vivo passaging in PTMs, starting with an initial inoculum containing a mixture of CXCR4-tropic [Vpr-HSIV-vifNL4-3 isolated at 196 (C/196) and 200 (C/200) weeks post-infection from a PTM with depressed CD4 counts] and CCR5-tropic HSIV (Vpr+ HSIV-vif derivatives based NL-AD8 and Bru-Yu2 and a Vpx expressing HSIV-vifYu2). Interestingly, all infected PTMs showed peak plasma viremia close to or above 105 copies/ml and persistent viral replication for more than 20weeks. Infectious molecular clones (IMCs) recovered from the passage 3 PTM (HSIV-P3 IMCs) included mutations required for HIV-1 Vpr expression and those mutations encoded by the CXCR4-tropic HSIV-vifNL4-3 isolate C/196. The data indicate that the viruses selected during long-term infection acquired HIV-1 Vpr expression, suggesting the importance of Vpr for in vivo pathogenesis. Further passaging of HSIV-P3 IMCs in vivo may generate pathogenic variants with higher replication capacity, which will be a valuable resource as challenge virus in vaccine and cure studies.
Insights
Human immunodeficiency virus type 1 (HIV-1) with simian immunodeficiency virus (SIV) vif substitution showed limited replication in pigtailed macaques (PTMs). Acquired HIV-1 Vpr expression in variants selected during long-term infection enhanced viral replication fitness in PTMs.
Area of Science:
- Virology
- Immunology
- Primate Models
Background:
- Previous studies showed simian immunodeficiency virus (SIV) vif substitution in human immunodeficiency virus type 1 (HIV-1) allowed replication in pigtailed macaques (PTMs).
- However, these infections did not achieve high viremia or viral setpoints comparable to SIV infections in PTMs.
- The absence of HIV-1 Vpr expression in these chimeric viruses was noted due to Vpx interference.
Purpose of the Study:
- To identify determinants of increased replication fitness in HIV-1/SIV vif chimeric viruses.
- To investigate the role of HIV-1 Vpr and SIV Vpx in viral replication and pathogenesis in PTMs.
- To generate variants with enhanced replication capacity for use in vaccine and cure studies.
Main Methods:
- Generated infectious HSIV-vif clones expressing either HIV-1 Vpr or SIV Vpx.
- Conducted three rounds of serial in vivo passaging in PTMs using a mixture of CXCR4-tropic and CCR5-tropic HSIV variants.
- Isolated and characterized infectious molecular clones (IMCs) from passaged viruses.
Main Results:
- All infected PTMs exhibited peak plasma viremia ≥10^5 copies/ml and sustained viral replication for over 20 weeks.
- Recovered IMCs from passage 3 PTMs acquired mutations enabling HIV-1 Vpr expression and incorporated elements from the CXCR4-tropic isolate.
- Selected viruses demonstrated enhanced replication fitness in PTMs.
Conclusions:
- Acquisition of HIV-1 Vpr expression is a key determinant for enhanced viral replication fitness and in vivo pathogenesis in PTMs.
- The study identified specific viral adaptations contributing to increased replication capacity.
- These findings highlight the potential of further passaged variants as valuable challenge stocks for HIV-1 vaccine and cure research.
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