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Eukaryotic transient-expression system based on recombinant vaccinia virus that synthesizes bacteriophage T7 RNA polymerase.
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Isolation of a biologically active soluble form of the hemagglutinin-neuraminidase protein of Sendai virus.
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Folding and oligomerization properties of a soluble and secreted form of the paramyxovirus hemagglutinin-neuraminidase glycoprotein.
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Molecular cloning and sequence analysis of the fusion glycoprotein gene of human parainfluenza virus type 2.
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Post-translational processing and oligomerization of the fusion glycoprotein of human respiratory syncytial virus.
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Functional interactions between the fusion protein and hemagglutinin-neuraminidase of human parainfluenza viruses.
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Mutations in the fusion peptide and heptad repeat regions of the Newcastle disease virus fusion protein block fusion.
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Regions on the hemagglutinin-neuraminidase proteins of human parainfluenza virus type-1 and Sendai virus important for membrane fusion.
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Intracellular processing of the paramyxovirus F protein: critical role of the predicted amphipathic alpha helix adjacent to the fusion domain.
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Biological activity of paramyxovirus fusion proteins: factors influencing formation of syncytia.
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A leucine zipper structure present in the measles virus fusion protein is not required for its tetramerization but is essential for fusion.
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Crystallization of biologically active hemagglutinin-neuraminidase glycoprotein dimers proteolytically cleaved from human parainfluenza virus type 1.
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Cell fusion by the envelope glycoproteins of persistent measles viruses which caused lethal human brain disease.
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Folding and assembly of viral membrane proteins.
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The attachment function of the Newcastle disease virus hemagglutinin-neuraminidase protein can be separated from fusion promotion by mutation.
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Mutations in the transmembrane domain of the HN protein of Newcastle disease virus affect the structure and activity of the protein.
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The fusion promotion activity of the NDV HN protein does not correlate with neuraminidase activity.
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Paramyxovirus fusion: a hypothesis for changes.
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Cell fusion activity of the simian immunodeficiency virus envelope protein is modulated by the intracytoplasmic domain.
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