Role of conserved glycosylation sites in maturation and transport of influenza A virus hemagglutinin.
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Two independent targeting signals in the cytoplasmic domain determine trans-Golgi network localization and endosomal trafficking of the proprotein convertase furinThe role of eukaryotic subtilisin-like endoproteases for the activation of human immunodeficiency virus glycoproteins in natural host cellsStructural mapping of post-translational modifications in human interleukin-24: role of N-linked glycosylation and disulfide bonds in secretion and activityThe Galalpha1,3Galbeta1,4GlcNAc-R (alpha-Gal) epitope: a carbohydrate of unique evolution and clinical relevancePlaying hide and seek: how glycosylation of the influenza virus hemagglutinin can modulate the immune response to infection.Acute Lung Injury Results from Innate Sensing of Viruses by an ER Stress PathwayProperly folded bacterially expressed H1N1 hemagglutinin globular head and ectodomain vaccines protect ferrets against H1N1 pandemic influenza virusBacterial HA1 vaccine against pandemic H5N1 influenza virus: evidence of oligomerization, hemagglutination, and cross-protective immunity in ferrets.MF59 adjuvant enhances diversity and affinity of antibody-mediated immune response to pandemic influenza vaccines.Genetic requirement for hemagglutinin glycosylation and its implications for influenza A H1N1 virus evolutionN-linked glycosylation of the hemagglutinin protein influences virulence and antigenicity of the 1918 pandemic and seasonal H1N1 influenza A viruses.Targeted infection of endothelial cells by avian influenza virus A/FPV/Rostock/34 (H7N1) in chicken embryos.The Length of N-Glycans of Recombinant H5N1 Hemagglutinin Influences the Oligomerization and Immunogenicity of Vaccine AntigenMacrophage receptors for influenza A virus: role of the macrophage galactose-type lectin and mannose receptor in viral entryHow N-linked oligosaccharides affect glycoprotein folding in the endoplasmic reticulum.Genetic characterization of avian influenza subtype H4N6 and H4N9 from live bird market, Thailand.Expression of the rotavirus SA11 protein VP7 in the simple eukaryote Dictyostelium discoideum.N-linked glycosylation attenuates H3N2 influenza viruses.The number and location of glycans on influenza hemagglutinin determine folding and association with calnexin and calreticulin.Influenza virus M2 protein ion channel activity stabilizes the native form of fowl plague virus hemagglutinin during intracellular transportBroadly neutralizing antibodies against influenza viruses.Regulation of N-linked core glycosylation: use of a site-directed mutagenesis approach to identify Asn-Xaa-Ser/Thr sequons that are poor oligosaccharide acceptors.From Variation of Influenza Viral Proteins to Vaccine Development.Oligosaccharides in the stem region maintain the influenza virus hemagglutinin in the metastable form required for fusion activity.Substrate specificity of the oxidoreductase ERp57 is determined primarily by its interaction with calnexin and calreticulin.Rescue of vector-expressed fowl plague virus hemagglutinin in biologically active form by acidotropic agents and coexpressed M2 protein.Proteolytic cleavage of wild type and mutants of the F protein of human parainfluenza virus type 3 by two subtilisin-like endoproteases, furin and Kex2.Influence of N-glycans on processing and biological activity of the nipah virus fusion protein.Expression of stable human O-glycan core 2 beta-1,6-N-acetylglucosaminyltransferase in Sf9 insect cells.Maturation of the trans-Golgi network protease furin: compartmentalization of propeptide removal, substrate cleavage, and COOH-terminal truncation.The role of single N-glycans in proteolytic processing and cell surface transport of the Lassa virus glycoprotein GP-C.Site-specific glycosylation profile of influenza A (H1N1) hemagglutinin through tandem mass spectrometry.Glycosylation of Hemagglutinin and Neuraminidase of Influenza A Virus as Signature for Ecological Spillover and Adaptation among Influenza Reservoirs.
P2860
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P2860
Role of conserved glycosylation sites in maturation and transport of influenza A virus hemagglutinin.
description
1993 nî lūn-bûn
@nan
1993年の論文
@ja
1993年論文
@yue
1993年論文
@zh-hant
1993年論文
@zh-hk
1993年論文
@zh-mo
1993年論文
@zh-tw
1993年论文
@wuu
1993年论文
@zh
1993年论文
@zh-cn
name
Role of conserved glycosylatio ...... fluenza A virus hemagglutinin.
@en
type
label
Role of conserved glycosylatio ...... fluenza A virus hemagglutinin.
@en
prefLabel
Role of conserved glycosylatio ...... fluenza A virus hemagglutinin.
@en
P2860
P1433
P1476
Role of conserved glycosylatio ...... nfluenza A virus hemagglutinin
@en
P2093
P2860
P304
P407
P577
1993-06-01T00:00:00Z