Publication | Open Access
A Triple-Arginine Motif in the Amino-Terminal Domain and Oligomerization Are Required for HIV-1 Inhibition by Human MX2
64
Citations
21
References
2015
Year
Viral ReplicationImmunologyMolecular BiologyAntiviral DrugViral Structural ProteinTriple-arginine MotifResistance 2Human RetrovirusAntiviral Drug DevelopmentResistance Mutation (Virology)Domain OrganizationViral GeneticsHiv-1 InhibitionHuman Mx2NeurovirologyVirologyHivAids PathogenesisHiv-1 Resistance FactorAntiviral ResponseMedicine
We have employed molecular genetic approaches to understand the domain organization of the HIV-1 resistance factor myxovirus resistance 2 (MX2). First, we describe an essential triple-arginine motif in the amino-terminal domain. Second, we demonstrate that this 91-residue domain mediates antiviral activity when appended to heterologous proteins, and we provide genetic evidence that protein oligomerization is required for MX2 function. These insights will facilitate future work aiming to elucidate MX2's mechanism of action.
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