Infectivity of a human respiratory syncytial virus lacking the SH, G, and F proteins is efficiently mediated by the vesicular stomatitis virus G protein.
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Requirements for Human Respiratory Syncytial Virus Glycoproteins in Assembly and Egress from Infected Cells.Novel influenza virus NS1 antagonists block replication and restore innate immune function.Human respiratory syncytial virus glycoproteins are not required for apical targeting and release from polarized epithelial cellsThe stability of human respiratory syncytial virus is enhanced by incorporation of the baculovirus GP64 protein.The cytoplasmic tail of the human respiratory syncytial virus F protein plays critical roles in cellular localization of the F protein and infectious progeny production.Refined methods for propagating vesicular stomatitis virus vectors that are defective for G protein expression.RhoA signaling is required for respiratory syncytial virus-induced syncytium formation and filamentous virion morphology.The baculovirus GP64 protein mediates highly stable infectivity of a human respiratory syncytial virus lacking its homologous transmembrane glycoproteinsA respiratory syncytial virus replicon that is noncytotoxic and capable of long-term foreign gene expression.Respiratory syncytial virus F envelope protein associates with lipid rafts without a requirement for other virus proteins.Packaging and Prefusion Stabilization Separately and Additively Increase the Quantity and Quality of Respiratory Syncytial Virus (RSV)-Neutralizing Antibodies Induced by an RSV Fusion Protein Expressed by a Parainfluenza Virus Vector.trans-Complementation allows recovery of human respiratory syncytial viruses that are infectious but deficient in cell-to-cell transmission.The Respiratory Syncytial Virus Phosphoprotein, Matrix Protein, and Fusion Protein Carboxy-Terminal Domain Drive Efficient Filamentous Virus-Like Particle Formation.The human respiratory syncytial virus matrix protein is required for maturation of viral filaments.Identification of a single amino acid change in the human respiratory syncytial virus L protein that affects transcriptional termination.Nodamura virus nonstructural protein B2 can enhance viral RNA accumulation in both mammalian and insect cells.Biological differences between vesicular stomatitis virus Indiana and New Jersey serotype glycoproteins: identification of amino acid residues modulating pH-dependent infectivity.The respiratory syncytial virus fusion protein targets to the perimeter of inclusion bodies and facilitates filament formation by a cytoplasmic tail-dependent mechanism.
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P2860
Infectivity of a human respiratory syncytial virus lacking the SH, G, and F proteins is efficiently mediated by the vesicular stomatitis virus G protein.
description
2003 nî lūn-bûn
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2003 թուականի Մարտին հրատարակուած գիտական յօդուած
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2003 թվականի մարտին հրատարակված գիտական հոդված
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2003年の論文
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2003年論文
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2003年論文
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2003年論文
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2003年論文
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2003年論文
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2003年论文
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name
Infectivity of a human respira ...... ar stomatitis virus G protein.
@ast
Infectivity of a human respira ...... ar stomatitis virus G protein.
@en
Infectivity of a human respira ...... ar stomatitis virus G protein.
@nl
type
label
Infectivity of a human respira ...... ar stomatitis virus G protein.
@ast
Infectivity of a human respira ...... ar stomatitis virus G protein.
@en
Infectivity of a human respira ...... ar stomatitis virus G protein.
@nl
prefLabel
Infectivity of a human respira ...... ar stomatitis virus G protein.
@ast
Infectivity of a human respira ...... ar stomatitis virus G protein.
@en
Infectivity of a human respira ...... ar stomatitis virus G protein.
@nl
P2093
P2860
P1433
P1476
Infectivity of a human respira ...... ar stomatitis virus G protein.
@en
P2093
A G P Oomens
P2860
P304
P356
10.1128/JVI.77.6.3785-3798.2003
P407
P577
2003-03-01T00:00:00Z