Capsid protein synthesis from replicating RNA directs specific packaging of the genome of a multipartite, positive-strand RNA virus.
about
Three-dimensional analysis of a viral RNA replication complex reveals a virus-induced mini-organelleModeling Effects of RNA on Capsid Assembly Pathways via Coarse-Grained Stochastic SimulationTranslation of the Flavivirus Kunjin NS3 Gene in cis but Not Its RNA Sequence or Secondary Structure Is Essential for Efficient RNA PackagingA viral nanoparticle with dual function as an anthrax antitoxin and vaccineDirect interaction between two viral proteins, the nonstructural protein 2C and the capsid protein VP3, is required for enterovirus morphogenesisStructural and electrostatic characterization of pariacoto virus: implications for viral assemblyMorphological changes in the T=3 capsid of Flock House virus during cell entry.Efficient cellular release of Rift Valley fever virus requires genomic RNA.Subcellular localization and rearrangement of endoplasmic reticulum by Brome mosaic virus capsid proteinStructure-function analysis of rotavirus NSP2 octamer by using a novel complementation system.Packaging of brome mosaic virus subgenomic RNA is functionally coupled to replication-dependent transcription and translation of coat protein.Assembly of two independent populations of flock house virus particles with distinct RNA packaging characteristics in the same cell.Self-assembly of viral capsid protein and RNA molecules of different sizes: requirement for a specific high protein/RNA mass ratio.A functional heat shock protein 90 chaperone is essential for efficient flock house virus RNA polymerase synthesis in Drosophila cells.Evidence that viral RNAs have evolved for efficient, two-stage packaging.A virus-like particle that elicits cross-reactive antibodies to the conserved stem of influenza virus hemagglutinin.Flock house virus induces apoptosis by depletion of Drosophila inhibitor-of-apoptosis protein DIAP1Replication-coupled packaging mechanism in positive-strand RNA viruses: synchronized coexpression of functional multigenome RNA components of an animal and a plant virus in Nicotiana benthamiana cells by agroinfiltration.Visualizing flock house virus infection in Drosophila cells with correlated fluorescence and electron microscopyRecent insights into the biology and biomedical applications of Flock House virusDual roles for an arginine-rich motif in specific genome recognition and localization of viral coat protein to RNA replication sites in flock house virus-infected cellsA 3'-end structure in RNA2 of a crinivirus is essential for viral RNA synthesis and contributes to replication-associated translation activity.Cytoplasmic granule formation and translational inhibition of nodaviral RNAs in the absence of the double-stranded RNA binding protein B2Applying molecular crowding models to simulations of virus capsid assembly in vitroCytoplasmic viral replication complexesNon-encapsidation activities of the capsid proteins of positive-strand RNA viruses.Molecular characterization of Drosophila cells persistently infected with Flock House virusFormation of the factory matrix is an important, though not a sufficient function of nonstructural protein mu NS during reovirus infection.Nucleotide-resolution profiling of RNA recombination in the encapsidated genome of a eukaryotic RNA virus by next-generation sequencing.Investigating the specificity and stoichiometry of RNA binding by the nucleocapsid protein of Bunyamwera virus.Low endocytic pH and capsid protein autocleavage are critical components of Flock House virus cell entryA physical interaction between viral replicase and capsid protein is required for genome-packaging specificity in an RNA virus.Packaging host RNAs in small RNA viruses: an inevitable consequence of an error-prone polymerase?Reverse genetic analysis of Ourmiaviruses reveals the nucleolar localization of the coat protein in Nicotiana benthamiana and unusual requirements for virion formation.The TGB1 movement protein of Potato virus X reorganizes actin and endomembranes into the X-body, a viral replication factory.A Functional Link between RNA Replication and Virion Assembly in the Potyvirus Plum Pox Virus.
P2860
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P2860
Capsid protein synthesis from replicating RNA directs specific packaging of the genome of a multipartite, positive-strand RNA virus.
description
2005 nî lūn-bûn
@nan
2005 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
2005 թվականի մայիսին հրատարակված գիտական հոդված
@hy
2005年の論文
@ja
2005年論文
@yue
2005年論文
@zh-hant
2005年論文
@zh-hk
2005年論文
@zh-mo
2005年論文
@zh-tw
2005年论文
@wuu
name
Capsid Protein Synthesis from ...... ite, Positive-Strand RNA Virus
@nl
Capsid protein synthesis from ...... te, positive-strand RNA virus.
@ast
Capsid protein synthesis from ...... te, positive-strand RNA virus.
@en
type
label
Capsid Protein Synthesis from ...... ite, Positive-Strand RNA Virus
@nl
Capsid protein synthesis from ...... te, positive-strand RNA virus.
@ast
Capsid protein synthesis from ...... te, positive-strand RNA virus.
@en
prefLabel
Capsid Protein Synthesis from ...... ite, Positive-Strand RNA Virus
@nl
Capsid protein synthesis from ...... te, positive-strand RNA virus.
@ast
Capsid protein synthesis from ...... te, positive-strand RNA virus.
@en
P2093
P2860
P3181
P1433
P1476
Capsid protein synthesis from ...... te, positive-strand RNA virus.
@en
P2093
Anette Schneemann
Neel K Krishna
P Arno Venter
P2860
P304
P3181
P356
10.1128/JVI.79.10.6239-6248.2005
P577
2005-05-01T00:00:00Z