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APOBEC3F Constitutes a Barrier to Successful Cross-Species Transmission of Simian Immunodeficiency Virus SIVsmm to
Rayhane Nchioua1, Dorota Kmiec1, Amit Gaba2
1Institute of Molecular Virology, Ulm University Medical Center, Ulm, Germany.
Abstract:
Simian immunodeficiency virus infecting sooty mangabeys (SIVsmm) has been transmitted to humans on at least nine occasions, giving rise to human immunodeficiency virus type 2 (HIV-2) groups A to I. SIVsmm isolates replicate in human T cells and seem capable of overcoming major human restriction factors without adaptation. However, only groups A and B are responsible for the HIV-2 epidemic in sub-Saharan Africa, and it is largely unclear whether adaptive changes were associated with spread in humans. To address this, we examined the sensitivity of infectious molecular clones (IMCs) of five HIV-2 strains and representatives of five different SIVsmm lineages to various APOBEC3 proteins. We confirmed that SIVsmm strains replicate in human T cells, albeit with more variable replication fitness and frequently lower efficiency than HIV-2 IMCs. Efficient viral propagation was generally dependent on intact vif genes, highlighting the need for counteraction of APOBEC3 proteins. On average, SIVsmm was more susceptible to inhibition by human APOBEC3D, -F, -G, and -H than HIV-2. For example, human APOBEC3F reduced infectious virus yield of SIVsmm by ∼80% but achieved only ∼40% reduction in the case of HIV-2. Functional and mutational analyses of human- and monkey-derived alleles revealed that an R128T polymorphism in APOBEC3F contributes to species-specific counteraction by HIV-2 and SIVsmm Vifs. In addition, a T84S substitution in SIVsmm Vif increased its ability to counteract human APOBEC3F. Altogether, our results confirm that SIVsmm Vif proteins show intrinsic activity against human APOBEC3 proteins but also demonstrate that epidemic HIV-2 strains evolved an increased ability to counteract this class of restriction factors during human adaptation. IMPORTANCE Viral zoonoses pose a significant threat to human health, and it is important to understand determining factors. SIVs infecting great apes gave rise to HIV-1. In contrast, SIVs infecting African monkey species have not been detected in humans, with one notable exception. SIVsmm from sooty mangabeys has crossed the species barrier to humans on at least nine independent occasions and seems capable of overcoming many innate defense mechanisms without adaptation. Here, we confirmed that SIVsmm Vif proteins show significant activity against human APOBEC3 proteins. Our analyses also revealed, however, that different lineages of SIVsmm are significantly more susceptible to inhibition by various human APOBEC3 proteins than HIV-2 strains. Mutational analyses suggest that an R128T substitution in APOBEC3F and a T84S change in Vif contribute to species-specific counteraction by HIV-2 and SIVsmm. Altogether, our results support that epidemic HIV-2 strains acquired increased activity against human APOBEC3 proteins to clear this restrictive barrier.
Insights
Simian immunodeficiency virus (SIVsmm) can infect humans, causing HIV-2. While SIVsmm Vif proteins counteract human APOBEC3 restriction, epidemic HIV-2 strains evolved enhanced Vif activity for better human adaptation and spread.
Area of Science:
- Virology
- Immunology
- Evolutionary Biology
Background:
- Simian immunodeficiency virus (SIVsmm) from sooty mangabeys has infected humans multiple times, leading to human immunodeficiency virus type 2 (HIV-2).
- SIVsmm can replicate in human T cells and overcome human restriction factors, but only HIV-2 groups A and B cause epidemics, suggesting adaptive changes.
- Understanding viral zoonoses and adaptation is crucial for public health.
Purpose of the Study:
- To investigate the sensitivity of SIVsmm and HIV-2 strains to human APOBEC3 proteins.
- To identify adaptive changes in HIV-2 strains that facilitate human spread.
- To analyze the role of specific polymorphisms in APOBEC3F and Vif in species-specific counteraction.
Main Methods:
- Examined the sensitivity of infectious molecular clones (IMCs) of five HIV-2 strains and five SIVsmm lineages to human APOBEC3 proteins.
- Assessed viral replication fitness and efficiency in human T cells.
- Performed functional and mutational analyses of human and monkey APOBEC3 alleles and SIV Vif proteins.
Main Results:
- SIVsmm replicated in human T cells but generally less efficiently than HIV-2 IMCs, requiring intact Vif genes to counteract APOBEC3 proteins.
- SIVsmm was more susceptible to inhibition by human APOBEC3D, -F, -G, and -H than HIV-2.
- An R128T polymorphism in APOBEC3F and a T84S substitution in SIVsmm Vif contributed to species-specific counteraction, with HIV-2 strains showing increased Vif activity against human APOBEC3 proteins.
Conclusions:
- SIVsmm Vif proteins possess intrinsic activity against human APOBEC3 proteins.
- Epidemic HIV-2 strains have evolved enhanced Vif activity to overcome human APOBEC3 restriction barriers.
- Specific genetic changes in APOBEC3F and Vif are key to understanding SIV-to-HIV adaptation and interspecies transmission.
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