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Vpu Antagonizes BST-2-Mediated Restriction of HIV-1 Release via β-TrCP and Endo-Lysosomal Trafficking
被引:275
作者:
Mitchell, Richard S.
[1
]
Katsura, Chris
[1
]
Skasko, Mark A.
[1
]
Fitzpatrick, Katie
[1
]
Lau, David
[1
]
Ruiz, Autumn
[2
]
Stephens, Edward B.
[2
]
Margottin-Goguet, Florence
[3
,4
]
Benarous, Richard
[5
]
Guatelli, John C.
[1
,6
]
机构:
[1] Univ Calif San Diego, Dept Med, La Jolla, CA 92093 USA
[2] Univ Kansas, Med Ctr, Dept Anat & Cell Biol, Kansas City, KS USA
[3] Univ Paris 05, Inst Cochin, CNRS, UMR 8104, Paris, France
[4] INSERM, U567, Paris, France
[5] CellVir, Evry, France
[6] San Diego Vet Affairs Healthcare Syst, San Diego, CA USA
基金:
美国国家卫生研究院;
关键词:
VIRUS TYPE-1 HIV-1;
CELL-SURFACE;
PARTICLE RELEASE;
PROTEIN VPU;
DEGRADATION;
COMPLEX;
UBIQUITINATION;
CLATHRIN;
CD4;
ENDOSOMES;
D O I:
10.1371/journal.ppat.1000450
中图分类号:
Q93 [微生物学];
学科分类号:
071005 ;
100705 ;
摘要:
The interferon-induced transmembrane protein BST-2/CD317 (tetherin) restricts the release of diverse enveloped viruses from infected cells. The HIV-1 accessory protein Vpu antagonizes this restriction by an unknown mechanism that likely involves the down-regulation of BST-2 from the cell surface. Here, we show that the optimal removal of BST-2 from the plasma membrane by Vpu requires the cellular protein beta-TrCP, a substrate adaptor for a multi-subunit SCF E3 ubiquitin ligase complex and a known Vpu-interacting protein. beta-TrCP is also required for the optimal enhancement of virion-release by Vpu. Mutations in the DSGxxS beta-TrCP binding-motif of Vpu impair both the down-regulation of BST-2 and the enhancement of virion-release. Such mutations also confer dominant-negative activity, consistent with a model in which Vpu links BST-2 to beta-TrCP. Optimal down-regulation of BST-2 from the cell surface by Vpu also requires the endocytic clathrin adaptor AP-2, although the rate of endocytosis is not increased; these data suggest that Vpu induces post-endocytic membrane trafficking events whose net effect is the removal of BST-2 from the cell surface. In addition to its marked effect on cell-surface levels, Vpu modestly decreases the total cellular levels of BST-2. The decreases in cell-surface and intracellular BST-2 are inhibited by bafilomycin A1, an inhibitor of endosomal acidification; these data suggest that Vpu induces late endosomal targeting and partial degradation of BST-2 in lysosomes. The Vpu-mediated decrease in surface expression is associated with reduced co-localization of BST-2 and the virion protein Gag along the plasma membrane. Together, the data support a model in which Vpu co-opts the beta-TrCP/SCF E3 ubiquitin ligase complex to induce endosomal trafficking events that remove BST-2 from its site of action as a virion-tethering factor.
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