Functional analysis of glycosylation of Zika virus envelope protein
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Summary
It is demonstrated that the E glycosylation is critical for ZIKV infection of mammalian and mosquito hosts and knockout of E glycosylation did not significantly affect neurovirulence.
- Type
- article
- Published
- 2017-10-31
- Cited by
- 148
- References
- 42
- Access
- Open access
- OpenAlex
- https://openalex.org/W2766152328
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:7215065
Keywords
Zika virus, Glycosylation, Virology, Biology, Viremia
References
- Extensive nucleotide changes and deletions within the envelope glycoprotein gene of Euro-African West Nile viruses.
- Biology of Zika Virus Infection in Human Skin Cells
- West Nile virus envelope protein glycosylation is required for efficient viral transmission by Culex vectors
- Zika virus. I. Isolations and serological specificity.
- Multiple amino acid changes at the first glycosylation motif in NS1 protein of West Nile virus are necessary for complete attenuation for mouse neuroinvasiveness.
- Glycosylation of the dengue 2 virus E protein at N67 is critical for virus growth in vitro but not for growth in intrathoracically inoculated Aedes aegypti mosquitoes.
- Glycosylation and antigenic variation among Kunjin virus isolates.
- Dendritic Cell-specific Intercellular Adhesion Molecule 3-grabbing Non-integrin (DC-SIGN)-mediated Enhancement of Dengue Virus Infection Is Independent of DC-SIGN Internalization Signals*
- Proteomic Analysis of DC-SIGN on Dendritic Cells Detects Tetramers Required for Ligand Binding but No Association with CD4*
- Genome Sequence and Attenuating Mutations in West Nile Virus Isolate from Mexico
- Composition and Three-Dimensional Architecture of the Dengue Virus Replication and Assembly Sites
- Heterogeneity in envelope protein sequence and N-linked glycosylation among yellow fever virus vaccine strains.
- Transmission-Blocking Antibodies against Mosquito C-Type Lectins for Dengue Prevention
- A C-type lectin collaborates with a CD45 phosphatase homologue to facilitate West Nile virus infection of mosquitoes
- Toll-like receptor 3 mediates West Nile virus entry into the brain causing lethal encephalitis
- Structure of West Nile Virus
- Molecular and biological characterization of a non-glycosylated isolate of St Louis encephalitis virus.
- Interferon Regulatory Factor IRF-7 Induces the Antiviral Alpha Interferon Response and Protects against Lethal West Nile Virus Infection
- Glycosylation of the West Nile Virus envelope protein increases in vivo and in vitro viral multiplication in birds.
- Essential Role of Dengue Virus Envelope Protein N Glycosylation at Asparagine-67 during Viral Propagation
Cited by
- Shortening of Zika virus CD-loop reduces neurovirulence while preserving antigenicity
- Establishment of Micro Droplet Digital Polymerase Chain Reaction and Real-Time Fluorescence Quantitative Polymerase Chain Reaction Technologies for Detecting Zika Virus
- N-glycosylation of Viral E Protein Is the Determinant for Vector Midgut Invasion by Flaviviruses
- Autoimmune Neurological Conditions Associated With Zika Virus Infection
- Probing Molecular Insights into Zika Virus–Host Interactions
- Biochemistry and Molecular Biology of Flaviviruses
- The recognition of glycans by protein receptors. Insights from NMR spectroscopy.
- 14‐3‐3&bgr;/&agr;‐A interacts with glycoprotein of spring viremia of carp virus and positively affects viral entry
- Different footprints of the Zika and dengue surface proteins on viral membranes.
- Micro-droplet Digital Polymerase Chain Reaction and Real-Time Quantitative Polymerase Chain Reaction Technologies Provide Highly Sensitive and Accurate Detection of Zika Virus
- A Single Mutation at Position 156 in the Envelope Protein of Tembusu Virus Is Responsible for Virus Tissue Tropism and Transmissibility in Ducks
- Zika Virus Attenuation by Codon Pair Deoptimization Induces Sterilizing Immunity in Mouse Models
- Potential targets for therapeutic intervention and structure based vaccine design against Zika virus.
- Probing Zika Virus Neutralization Determinants with Glycoprotein Mutants Bearing Linear Epitope Insertions
- Early Events in Japanese Encephalitis Virus Infection: Viral Entry
- Chimeric yellow fever 17D-Zika virus (ChimeriVax-Zika) as a live-attenuated Zika virus vaccine
- A single-dose live-attenuated Zika virus vaccine with controlled infection rounds that protects against vertical transmission
- Multimodal assessments of Zika virus immune pathophysiological responses in marmosets
- Recent Advances in Zika Virus Vaccines
- ZIKA virus entry mechanisms in human cells.
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