Altered interaction of the matrix protein with the cytoplasmic tail of hemagglutinin modulates measles virus growth by affecting virus assembly and cell-cell fusion.
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Learning from the Viral Journey: How to Enter Cells and How to Overcome Intracellular Barriers to Reach the NucleusHost-Pathogen Interactions in Measles Virus Replication and Anti-Viral ImmunityIntracellular transport of the measles virus ribonucleoprotein complex is mediated by Rab11A-positive recycling endosomes and drives virus release from the apical membrane of polarized epithelial cells.Paramyxovirus assembly and budding: building particles that transmit infections.Paramyxovirus glycoprotein incorporation, assembly and budding: a three way dance for infectious particle production.The E89K Mutation in the Matrix Protein of the Measles Virus Affects In Vitro Cell Death and Virus Replication Efficiency in Human PBMCThe C-terminal end of parainfluenza virus 5 NP protein is important for virus-like particle production and M-NP protein interaction.Evidence for ubiquitin-regulated nuclear and subnuclear trafficking among Paramyxovirinae matrix proteinsMatrix protein-specific IgA antibody inhibits measles virus replication by intracellular neutralization.Electron cryotomography of measles virus reveals how matrix protein coats the ribonucleocapsid within intact virions.Measles Virus Matrix Protein Inhibits Host Cell Transcription.Wild type measles virus attenuation independent of type I IFN.Contribution of matrix, fusion, hemagglutinin, and large protein genes of the CAM-70 measles virus vaccine strain to efficient growth in chicken embryonic fibroblasts.Membrane dynamics and interactions in measles virus dendritic cell infections.Molecular mechanisms driving respiratory syncytial virus assembly.Dimerization Efficiency of Canine Distemper Virus Matrix Protein Regulates Membrane-Budding Activity.Efficient reovirus- and measles virus-mediated pore expansion during syncytium formation is dependent on annexin A1 and intracellular calcium.Actin filaments disruption and stabilization affect measles virus maturation by different mechanisms.Mutant fusion proteins with enhanced fusion activity promote measles virus spread in human neuronal cells and brains of suckling hamsters.F-actin modulates measles virus cell-cell fusion and assembly by altering the interaction between the matrix protein and the cytoplasmic tail of hemagglutinin.Canine distemper virus matrix protein influences particle infectivity, particle composition, and envelope distribution in polarized epithelial cells and modulates virulence.The matrix protein of measles virus regulates viral RNA synthesis and assembly by interacting with the nucleocapsid protein.Viruses That Exploit Actin-Based Motility for Their Replication and Spread.Measles Virus: Identification in the M Protein Primary Sequence of a Potential Molecular Marker for Subacute Sclerosing PanencephalitisMeasles virus mutants possessing the fusion protein with enhanced fusion activity spread effectively in neuronal cells, but not in other cells, without causing strong cytopathology.Adaptation to cell culture induces functional differences in measles virus proteins.The measles virus fusion protein transmembrane region modulates availability of an active glycoprotein complex and fusion efficiency.Measles viruses possessing the polymerase protein genes of the Edmonston vaccine strain exhibit attenuated gene expression and growth in cultured cells and SLAM knock-in mice.Previously unrecognized amino acid substitutions in the hemagglutinin and fusion proteins of measles virus modulate cell-cell fusion, hemadsorption, virus growth, and penetration rate.Amino Acid substitutions in matrix, fusion and hemagglutinin proteins of wild measles virus for adaptation to vero cells.The glutamic residue at position 402 in the C-terminus of Newcastle disease virus nucleoprotein is critical for the virus.Annexin A2 Mediates the Localization of Measles Virus Matrix Protein at the Plasma Membrane.Promotion of virus assembly and organization by the measles virus matrix protein.Measles
P2860
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P2860
Altered interaction of the matrix protein with the cytoplasmic tail of hemagglutinin modulates measles virus growth by affecting virus assembly and cell-cell fusion.
description
2007 nî lūn-bûn
@nan
2007年の論文
@ja
2007年論文
@yue
2007年論文
@zh-hant
2007年論文
@zh-hk
2007年論文
@zh-mo
2007年論文
@zh-tw
2007年论文
@wuu
2007年论文
@zh
2007年论文
@zh-cn
name
Altered interaction of the mat ...... assembly and cell-cell fusion.
@en
Altered interaction of the mat ...... assembly and cell-cell fusion.
@nl
type
label
Altered interaction of the mat ...... assembly and cell-cell fusion.
@en
Altered interaction of the mat ...... assembly and cell-cell fusion.
@nl
prefLabel
Altered interaction of the mat ...... assembly and cell-cell fusion.
@en
Altered interaction of the mat ...... assembly and cell-cell fusion.
@nl
P2860
P356
P1433
P1476
Altered interaction of the mat ...... assembly and cell-cell fusion
@en
P2093
Maino Tahara
P2860
P304
P356
10.1128/JVI.00248-07
P407
P577
2007-04-18T00:00:00Z