Ebola virus VP35
The Host E3-Ubiquitin Ligase TRIM6 Ubiquitinates the Ebola Virus VP35 Protein and Promotes Virus Replication
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Ebola Virus VP35 Protein Binds Double-Stranded RNA and Inhibits Alpha/Beta Interferon Production Induced by RIG-I Signaling
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Ebola Virus VP35 Antagonizes PKR Activity through Its C-Terminal Interferon Inhibitory Domain
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Ebola Virus VP35-VP40 Interaction Is Sufficient for Packaging 3E-5E Minigenome RNA into Virus-Like Particles
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Characterization of the RNA Silencing Suppression Activity of the Ebola Virus VP35 Protein in Plants and Mammalian Cells
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Ebola Virus VP35 Interaction with Dynein LC8 Regulates Viral RNA Synthesis
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Different Temporal Effects of Ebola Virus VP35 and VP24 Proteins on Global Gene Expression in Human Dendritic Cells
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The VP35 Protein of Ebola Virus Inhibits the Antiviral Effect Mediated by Double-Stranded RNA-Dependent Protein Kinase PKR
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Crystal Structure of the Marburg Virus VP35 Oligomerization Domain
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Inhibition of IRF-3 Activation by VP35 Is Critical for the High Level of Virulence of Ebola Virus
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Newcastle Disease Virus (NDV)-Based Assay Demonstrates Interferon-Antagonist Activity for the NDV V Protein and the Nipah Virus V, W, and C Proteins
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Curability of Ebola Virus – A Scientometric Approach to Ebola Virus Research
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Assessment of the Potential for Spread of Deadly Ebola Virus across International Borders by Returnee Travelers and Humanitarian Health Workers from West Africa
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Human Ebola virus infection in West Africa: a review of available therapeutic agents that target different steps of the life cycle of Ebola virus
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Reverse Genetics Demonstrates that Proteolytic Processing of the Ebola Virus Glycoprotein Is Not Essential for Replication in Cell Culture
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A Study of the Ebola Virus Glycoprotein: Disruption of Host Surface Protein Function and Evasion of Immune Responses
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Heparan sulfate is an important mediator of Ebola virus infection in polarized epithelial cells
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Mutational Analysis of the Putative Fusion Domain of Ebola Virus Glycoprotein
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Reverse Genetic Generation of Recombinant Zaire Ebola Viruses Containing Disrupted IRF-3 Inhibitory Domains Results in Attenuated Virus Growth In Vitro and Higher Levels of IRF-3 Activation without Inhibiting Viral Transcription or Replication
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The_Impact_of_Culture_on_the_Spread_of_the_Ebola_Virus_Disease.pdf
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