Abstract
The HIV-1 genome enters cells inside a shell comprised of capsid (CA) protein. Variation in CA sequence alters HIV-1 infectivity and escape from host restriction factors. However, apart from the Cyclophilin A-binding loop, CA has no known interfaces with which to interact with cellular cofactors. Here we describe a novel protein-protein interface in the N-terminal domain of HIV-1 CA, determined by X-ray crystallography, which mediates both viral restriction and host cofactor dependence. The interface is highly conserved across lentiviruses and is accessible in the context of a hexameric lattice. Mutation of the interface prevents binding to and restriction by CPSF6-358, a truncated cytosolic form of the RNA processing factor, cleavage and polyadenylation specific factor 6 (CPSF6). Furthermore, mutations that prevent CPSF6 binding also relieve dependence on nuclear entry cofactors TNPO3 and RanBP2. These results suggest that the HIV-1 capsid mediates direct host cofactor interactions to facilitate viral infection.
Publication types
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Research Support, N.I.H., Intramural
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Research Support, Non-U.S. Gov't
MeSH terms
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Amino Acid Sequence
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Antiviral Agents / metabolism
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Capsid Proteins / chemistry
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Capsid Proteins / genetics
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Capsid Proteins / metabolism*
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Cell Line, Tumor
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Conserved Sequence
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Crystallography, X-Ray
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HIV Infections / virology*
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HIV-1 / genetics
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HIV-1 / physiology*
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Humans
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Indoles / metabolism
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Models, Molecular
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Molecular Chaperones / metabolism
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Molecular Sequence Data
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Mutation
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Nuclear Pore Complex Proteins / metabolism
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Phenylalanine / analogs & derivatives
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Phenylalanine / metabolism
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Protein Binding
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Sequence Alignment
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Virus Internalization
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Virus Replication*
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beta Karyopherins / metabolism
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mRNA Cleavage and Polyadenylation Factors / genetics
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mRNA Cleavage and Polyadenylation Factors / metabolism*
Substances
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Antiviral Agents
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Capsid Proteins
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Indoles
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Molecular Chaperones
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Nuclear Pore Complex Proteins
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PF-3450074
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TNPO3 protein, human
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beta Karyopherins
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cleavage factor Im, human
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mRNA Cleavage and Polyadenylation Factors
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ran-binding protein 2
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Phenylalanine