Journal of Virology · 2011 · 63 citations · 18 references
ImmunodeficienciesGeneticsImmunologySimian Immunodeficiency VirusTrim5α GenotypeViral EvolutionViral PersistenceHuman RetrovirusViral GeneticsVirologyChronic Viral InfectionHivAids PathogenesisProductive InfectionPathogenesisAntiviral ResponseVirus-host InteractionMedicineTrim5 AllelesViral ImmunityLimiting-dose Intrarectal Challenge
It has recently been shown that polymorphism at the rhesus macaque TRIM5 locus can affect simian immunodeficiency virus (SIV) replication. Here we show that TRIM5 alleles can also affect acquisition of SIVsmE660. Animals coexpressing the TRIM5(TFP) and TRIM5(CypA) alleles took significantly longer to become infected with SIVsmE660, but not SIVmac239, after repeated limiting-dose intrarectal challenge than did animals expressing other TRIM5 allele combinations. Our results indicate that the TRIM5 alleles can be a barrier to productive infection and that this should be taken into account when designing acquisition studies using SIVsmE660 or related viruses.
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Brandon F. Keele, Elena Giorgi, Jesus F. Salazar-Gonzalez et al. · Proceedings of the National Academy of Sciences · 2008 · 1.9K citations · Full text
Tetherin inhibits retrovirus release and is antagonized by HIV-1 Vpu
Stuart J. D. Neil, Trinity Zang, Paul D. Bieniasz · Nature · 2008 · 1.8K citations · Full text