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Virus Particle Release from Glycosphingolipid-Enriched Microdomains Is Essential for Dendritic Cell-Mediated Capture and Transfer of HIV-1 and Henipavirus
被引:31
作者:
Akiyama, Hisashi
[1
]
Miller, Caitlin
[1
]
Patel, Hiren V.
[1
]
Hatch, Steven C.
[1
]
Archer, Jacob
[1
]
Ramirez, Nora-Guadalupe P.
[1
]
Gummuluru, Suryaram
[1
]
机构:
[1] Boston Univ, Sch Med, Dept Microbiol, Boston, MA 02118 USA
关键词:
HUMAN-IMMUNODEFICIENCY-VIRUS;
LIPID RAFT MICRODOMAINS;
ENVELOPE GLYCOPROTEIN INCORPORATION;
RESPIRATORY EPITHELIAL-CELLS;
VIRAL MATRIX PROTEIN;
TYPE-1 GAG PROTEIN;
PLASMA-MEMBRANE;
EBOLA-VIRUS;
NIPAH-VIRUS;
DC-SIGN;
D O I:
10.1128/JVI.00992-14
中图分类号:
Q93 [微生物学];
学科分类号:
071005 [微生物学];
摘要:
Human immunodeficiency virus type 1 (HIV-1) exploits dendritic cells (DCs) to promote its transmission to T cells. We recently reported that the capture of HIV-1 by mature dendritic cells (MDCs) is mediated by an interaction between the glycosphingolipid (GSL) GM3 on virus particles and CD169/Siglec-1 on MDCs. Since HIV-1 preferentially buds from GSL-enriched lipid microdomains on the plasma membrane, we hypothesized that the virus assembly and budding site determines the ability of HIV-1 to interact with MDCs. In support of this hypothesis, mutations in the N-terminal basic domain (29/31KE) or deletion of the membrane-targeting domain of the HIV-1 matrix ( MA) protein that altered the virus assembly and budding site to CD63(+)/Lamp-1-positive intracellular compartments resulted in lower levels of virion incorporation of GM3 and attenuation of virus capture by MDCs. Furthermore, MDC-mediated capture and transmission of MA mutant viruses to T cells were decreased, suggesting that HIV-1 acquires GSLs via budding from the plasma membrane to access the MDC-dependent trans infection pathway. Interestingly, MDC-mediated capture of Nipah and Hendra virus (recently emerged zoonotic paramyxoviruses) M(matrix) protein-derived virus-like particles that bud from GSL-enriched plasma membrane microdomains was also dependent on interactions between virion-incorporated GSLs and CD169. Moreover, capture and transfer of Nipah virus envelope glycoprotein-pseudotyped lentivirus particles by MDCs were severely attenuated upon depletion of GSLs from virus particles. These results suggest that GSL incorporation into virions is critical for the interaction of diverse enveloped RNA viruses with DCs and that the GSL-CD169 recognition nexus might be a conserved viral mechanism of parasitization of DC functions for systemic virus dissemination.
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页码:8813 / 8825
页数:13
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