Molecular determinants of species specificity in the coronavirus receptor aminopeptidase N (CD13): influence of N-linked glycosylation.
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CD209L (L-SIGN) is a receptor for severe acute respiratory syndrome coronavirusThe envelope glycoprotein of human endogenous retrovirus type W uses a divergent family of amino acid transporters/cell surface receptors.Phosphatidylserine treatment relieves the block to retrovirus infection of cells expressing glycosylated virus receptors.Conformational reorganization of the SARS coronavirus spike following receptor binding: implications for membrane fusionStructural basis for multifunctional roles of mammalian aminopeptidase NPorcine epidemic diarrhea virus (PEDV) co-infection induced chlamydial persistence/stress does not require viral replication.Thrombocytopenia in patients with severe acute respiratory syndrome (review).Chimeric feline coronaviruses that encode type II spike protein on type I genetic background display accelerated viral growth and altered receptor usageIdentification of NCAM that interacts with the PHE-CoV spike protein.Murine coronavirus evolution in vivo: functional compensation of a detrimental amino acid substitution in the receptor binding domain of the spike glycoprotein.T-cell epitopes in severe acute respiratory syndrome (SARS) coronavirus spike protein elicit a specific T-cell immune response in patients who recover from SARS.The natural host range shift and subsequent evolution of canine parvovirus resulted from virus-specific binding to the canine transferrin receptorCoronavirus pathogenesis and the emerging pathogen severe acute respiratory syndrome coronavirus.The role of multifunctional M1 metallopeptidases in cell cycle progressionResidues in the apical domain of the feline and canine transferrin receptors control host-specific binding and cell infection of canine and feline parvoviruses.Discovery of novel human and animal cells infected by the severe acute respiratory syndrome coronavirus by replication-specific multiplex reverse transcription-PCR.Infection of human alveolar macrophages by human coronavirus strain 229E.Characterization of a recombinant canine coronavirus with a distinct receptor-binding (S1) domainRole of receptor polymorphism and glycosylation in syncytium induction and host range variation of ecotropic mouse gammaretroviruses.Genome organization and reverse genetic analysis of a type I feline coronavirusSARS-coronavirus spike S2 domain flanked by cysteine residues C822 and C833 is important for activation of membrane fusion.Link of a ubiquitous human coronavirus to dromedary camels.Genetic analysis of determinants for spike glycoprotein assembly into murine coronavirus virions: distinct roles for charge-rich and cysteine-rich regions of the endodomain.Canine enteric coronaviruses: emerging viral pathogens with distinct recombinant spike proteins.CD13 mediates phagocytosis in human monocytic cells.TMPRSS2 activates the human coronavirus 229E for cathepsin-independent host cell entry and is expressed in viral target cells in the respiratory epithelium.Identification of a receptor-binding domain of the spike glycoprotein of human coronavirus HCoV-229E.The N-terminal region of the murine coronavirus spike glycoprotein is associated with the extended host range of viruses from persistently infected murine cells.Permissivity of Dipeptidyl Peptidase 4 Orthologs to Middle East Respiratory Syndrome Coronavirus Is Governed by Glycosylation and Other Complex Determinants.Mutational analysis of aminopeptidase N, a receptor for several group 1 coronaviruses, identifies key determinants of viral host range.Identification and characterization of a Penaeus monodon lymphoid cell-expressed receptor for the yellow head virus.Glycosylation of mouse DPP4 plays a role in inhibiting Middle East respiratory syndrome coronavirus infection.Targeting non-human coronaviruses to human cancer cells using a bispecific single-chain antibody.Porcine deltacoronavirus engages the transmissible gastroenteritis virus functional receptor porcine aminopeptidase N for infectious cellular entry.
P2860
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P2860
Molecular determinants of species specificity in the coronavirus receptor aminopeptidase N (CD13): influence of N-linked glycosylation.
description
2001 nî lūn-bûn
@nan
2001 թուականի Հոկտեմբերին հրատարակուած գիտական յօդուած
@hyw
2001 թվականի հոտեմբերին հրատարակված գիտական հոդված
@hy
2001年の論文
@ja
2001年論文
@yue
2001年論文
@zh-hant
2001年論文
@zh-hk
2001年論文
@zh-mo
2001年論文
@zh-tw
2001年论文
@wuu
name
Molecular determinants of spec ...... ence of N-linked glycosylation
@nl
Molecular determinants of spec ...... nce of N-linked glycosylation.
@ast
Molecular determinants of spec ...... nce of N-linked glycosylation.
@en
Molecular determinants of spec ...... nce of N-linked glycosylation.
@en-gb
type
label
Molecular determinants of spec ...... ence of N-linked glycosylation
@nl
Molecular determinants of spec ...... nce of N-linked glycosylation.
@ast
Molecular determinants of spec ...... nce of N-linked glycosylation.
@en
Molecular determinants of spec ...... nce of N-linked glycosylation.
@en-gb
prefLabel
Molecular determinants of spec ...... ence of N-linked glycosylation
@nl
Molecular determinants of spec ...... nce of N-linked glycosylation.
@ast
Molecular determinants of spec ...... nce of N-linked glycosylation.
@en
Molecular determinants of spec ...... nce of N-linked glycosylation.
@en-gb
P2860
P1433
P1476
Molecular determinants of spec ...... ence of N-linked glycosylation
@en
P2093
K V Holmes
P2860
P304
P356
10.1128/JVI.75.20.9741-9752.2001
P407
P577
2001-10-01T00:00:00Z