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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
The betaretrovirus Mason-Pfizer monkey virus selectively excludes simian APOBEC3G from virion particles
Brian P Doehle1, Hal P Bogerd, Heather L Wiegand
1Duke University Medical Center, Box 3025, Durham, NC 27710, USA.
Abstract:
The APOBEC3 protein family can constitute a potent barrier to the successful infection of mammalian species by retroviruses. Therefore, any retrovirus that has evolved the ability to replicate in a given animal must have developed mechanisms that allow it to avoid or inhibit the APOBEC3 proteins expressed in that animal. Here, we demonstrate that Mason-Pfizer monkey virus (MPMV) is resistant to inhibition by the APOBEC3G protein expressed in its normal host, the rhesus macaque, but highly susceptible to inhibition by murine APOBEC3 (mA3). MPMV virion particles fail to package rhesus APOBEC3G (rA3G), and MPMV Gag binds rA3G poorly in coexpressing cells. In contrast, MPMV virions package mA3 efficiently and MPMV Gag-mA3 complexes are readily detected. Moreover, mA3, but not rA3G, partially colocalizes with MPMV Gag in the cytoplasm of coexpressing cells. Previously, we have demonstrated that murine leukemia virus also escapes inhibition by APOBEC3 proteins by avoiding virion incorporation of its cognate APOBEC3 protein, mA3, yet is inhibited by primate APOBEC3G proteins, which it packages effectively (B. P. Doehle, A. Schäfer, H. L. Wiegand, H. P. Bogerd, and B. R. Cullen, J. Virol. 79:8201-8207, 2005). The finding that two essentially unrelated beta- and gammaretroviruses use similar mechanisms to escape inhibition by the APOBEC3 proteins found in their normal host species suggests that the selective exclusion of APOBEC3 proteins from virion particles may be a general mechanism used by simple mammalian retroviruses.
Insights
Mason-Pfizer monkey virus (MPMV) avoids inhibition by its host
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- APOBEC3 proteins are critical innate immune factors restricting retroviral replication in mammals.
- Retroviruses must evolve mechanisms to counteract host APOBEC3 restriction to establish infection.
Purpose of the Study:
- To investigate the interaction between Mason-Pfizer monkey virus (MPMV) and APOBEC3 proteins from its natural host (rhesus macaque) and a non-host species (mouse).
- To determine the mechanism by which MPMV evades APOBEC3-mediated restriction.
Main Methods:
- Co-expression of MPMV and APOBEC3 proteins in cell culture.
- Analysis of APOBEC3 packaging into MPMV virions.
- Assessment of Gag-APOBEC3 interactions using co-immunoprecipitation.
- Subcellular localization studies of APOBEC3 proteins and MPMV Gag.
Main Results:
- MPMV is resistant to rhesus macaque APOBEC3G (rA3G) but sensitive to murine APOBEC3 (mA3).
- MPMV virions fail to package rA3G, and MPMV Gag exhibits poor binding to rA3G.
- MPMV efficiently packages mA3, with detectable Gag-mA3 complexes and partial cytoplasmic colocalization.
- These findings contrast with murine leukemia virus's evasion strategy.
Conclusions:
- MPMV evades rhesus macaque APOBEC3G restriction by preventing its incorporation into virions.
- Selective exclusion of host APOBEC3 proteins from virions is a potential general evasion mechanism for simple mammalian retroviruses.
- This study highlights distinct retroviral strategies for overcoming host antiviral factors.
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