Internally located cleavable signal sequences direct the formation of Semliki Forest virus membrane proteins from a polyprotein precursor
about
Discovery of frameshifting in Alphavirus 6K resolves a 20-year enigmaPhotocross-linking of nascent chains to the STT3 subunit of the oligosaccharyltransferase complexDifferent conformations of nascent polypeptides during translocation across the ER membraneA single deletion in the membrane-proximal region of the Sindbis virus glycoprotein E2 endodomain blocks virus assemblyE2-p7 region of the bovine viral diarrhea virus polyprotein: processing and functional studies.Single Amino Acid Insertions at the Junction of the Sindbis Virus E2 Transmembrane Domain and Endodomain Disrupt Virus Envelopment and Alter InfectivitySubcellular Localization and Topology of the p7 Polypeptide of Hepatitis C VirusEffects of membrane potential and sphingolipid structures on fusion of Semliki Forest virus.Mutations in the Endodomain of Sindbis Virus Glycoprotein E2 Define Sequences Critical for Virus AssemblyThe 6-kilodalton membrane protein of Semliki Forest virus is involved in the budding processProcessing and membrane topology of the spike proteins G1 and G2 of Uukuniemi virusEfficient multiplication of a Semliki Forest virus chimera containing Sindbis virus spikesRole of glycoprotein PE2 in formation and maturation of the Sindbis virus spikeThe formation of intramolecular disulfide bridges is required for induction of the Sindbis virus mutant ts23 phenotypeCholesterol is required in the exit pathway of Semliki Forest virusThe oligomerization reaction of the Semliki Forest virus membrane protein subunitsTargeting of Moloney murine leukemia virus gag precursor to the site of virus buddingLocalization and Membrane Topology of Coronavirus Nonstructural Protein 4: Involvement of the Early Secretory Pathway in ReplicationOligomerization-dependent folding of the membrane fusion protein of Semliki Forest virusBiosynthesis and biochemical properties of the hepatitis C virus core proteinTwo hepatitis C virus glycoprotein E2 products with different C terminiSite-directed mutations in the Sindbis virus E2 glycoprotein identify palmitoylation sites and affect virus buddingSpike protein-nucleocapsid interactions drive the budding of alphavirusesIn vitro mutagenesis of a full-length cDNA clone of Semliki Forest virus: the small 6,000-molecular-weight membrane protein modulates virus releaseDeletions in the Transmembrane Domain of a Sindbis Virus Glycoprotein Alter Virus Infectivity, Stability, and Host RangeA structural and functional perspective of alphavirus replication and assembly4.4 Å cryo-EM structure of an enveloped alphavirus Venezuelan equine encephalitis virusMolecular Links between the E2 Envelope Glycoprotein and Nucleocapsid Core in Sindbis VirusThe alphaviruses: gene expression, replication, and evolutionAn internal signal sequence directs intramembrane proteolysis of a cellular immunoglobulin domain proteinStructural plasticity of the Semliki Forest virus glycome upon interspecies transmission.The alphavirus E3 glycoprotein functions in a clade-specific manner.Role of innate signalling pathways in the immunogenicity of alphaviral replicon-based vaccinesThe code for directing proteins for translocation across ER membrane: SRP cotranslationally recognizes specific features of a signal sequence.A 6K-deletion variant of salmonid alphavirus is non-viable but can be rescued through RNA recombination.Mutating conserved cysteines in the alphavirus e2 glycoprotein causes virus-specific assembly defects.The COOH-terminal ends of internal signal and signal-anchor sequences are positioned differently in the ER translocase.Effects of an In-Frame Deletion of the 6k Gene Locus from the Genome of Ross River Virus.Molecular code for protein insertion in the endoplasmic reticulum membrane is similar for N(in)-C(out) and N(out)-C(in) transmembrane helices.Functional characterization of the alphavirus TF protein
P2860
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P2860
Internally located cleavable signal sequences direct the formation of Semliki Forest virus membrane proteins from a polyprotein precursor
description
1991 nî lūn-bûn
@nan
1991 թուականի Յունուարին հրատարակուած գիտական յօդուած
@hyw
1991 թվականի հունվարին հրատարակված գիտական հոդված
@hy
1991年の論文
@ja
1991年論文
@yue
1991年論文
@zh-hant
1991年論文
@zh-hk
1991年論文
@zh-mo
1991年論文
@zh-tw
1991年论文
@wuu
name
Internally located cleavable s ...... s from a polyprotein precursor
@ast
Internally located cleavable s ...... s from a polyprotein precursor
@en
Internally located cleavable s ...... s from a polyprotein precursor
@nl
type
label
Internally located cleavable s ...... s from a polyprotein precursor
@ast
Internally located cleavable s ...... s from a polyprotein precursor
@en
Internally located cleavable s ...... s from a polyprotein precursor
@nl
prefLabel
Internally located cleavable s ...... s from a polyprotein precursor
@ast
Internally located cleavable s ...... s from a polyprotein precursor
@en
Internally located cleavable s ...... s from a polyprotein precursor
@nl
P2860
P1433
P1476
Internally located cleavable s ...... s from a polyprotein precursor
@en
P2093
P Liljeström
P2860
P304
P577
1991-01-01T00:00:00Z