Introduction of site-specific mutations into the genome of influenza virus
about
Pandemic Threat Posed by Avian Influenza A VirusesFluorescent and Bioluminescent Reporter MyxovirusesReverse genetics system for Uukuniemi virus (Bunyaviridae): RNA polymerase I-catalyzed expression of chimeric viral RNAsTransgenic cell lines for detection of animal virusesThe polyadenylation signal of influenza virus RNA involves a stretch of uridines followed by the RNA duplex of the panhandle structureSite-specific mutagenesis identifies three cysteine residues in the cytoplasmic tail as acylation sites of influenza virus hemagglutininGeneration of recombinant rotavirus with an antigenic mosaic of cross-reactive neutralization epitopes on VP4Reverse genetics system for introduction of site-specific mutations into the double-stranded RNA genome of infectious rotavirusGeneration of influenza A viruses entirely from cloned cDNAsA DNA transfection system for generation of influenza A virus from eight plasmidsNew aspects of influenza viruses.Development of a mucosal vaccine for influenza viruses: preparation for a potential influenza pandemic.Developing vaccines to combat pandemic influenzaReverse genetics of negative-strand RNA viruses: closing the circleReverse genetics approach towards understanding pathogenesis of H5N1 Hong Kong influenza A virus infection.Attenuation of influenza A virus mRNA levels by promoter mutations.The role of influenza A virus hemagglutinin residues 226 and 228 in receptor specificity and host range restriction.Immunization with a single major histocompatibility complex class I-restricted cytotoxic T-lymphocyte recognition epitope of herpes simplex virus type 2 confers protective immunity.Mutation of neuraminidase cysteine residues yields temperature-sensitive influenza viruses.The morphology and composition of influenza A virus particles are not affected by low levels of M1 and M2 proteins in infected cells.Rescue of influenza A virus from recombinant DNA.Influenza virus hemagglutinin and neuraminidase cytoplasmic tails control particle shape.In vitro assembly of infectious nucleocapsids of bacteriophage phi 6: formation of a recombinant double-stranded RNA virus.RNA virus reverse genetics and vaccine design.Efficient recovery of infectious vesicular stomatitis virus entirely from cDNA clones.Recombinant vesicular stomatitis viruses from DNA.Generation of influenza A virus from cloned cDNAs--historical perspective and outlook for the new millenium.Influenza vaccines: present and future.Postexposure vaccination massively increases the prevalence of gamma-herpesvirus-specific CD8+ T cells but confers minimal survival advantage on CD4-deficient mice.Intranasal vaccination with an engineered influenza virus expressing the receptor binding subdomain of botulinum neurotoxin provides protective immunity against botulism and influenza.Taming influenza viruses.A gamma-herpesvirus sneaks through a CD8(+) T cell response primed to a lytic-phase epitopeExtent of terminal complementarity modulates the balance between transcription and replication of vesicular stomatitis virus RNA.Reverse genetics system for generation of an influenza A virus mutant containing a deletion of the carboxyl-terminal residue of M2 protein.Mutations within noncoding terminal sequences of model RNAs of Sendai virus: influence on reporter gene expressionMucosal model of immunization against human immunodeficiency virus type 1 with a chimeric influenza virusThe cytoplasmic tail of influenza A virus neuraminidase (NA) affects NA incorporation into virions, virion morphology, and virulence in mice but is not essential for virus replication.Mutational analysis identifies functional domains in the influenza A virus PB2 polymerase subunitNeuraminidase hemadsorption activity, conserved in avian influenza A viruses, does not influence viral replication in ducks.Positive strands to the rescue again: a segmented negative-strand RNA virus derived from cloned cDNAs.
P2860
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P2860
Introduction of site-specific mutations into the genome of influenza virus
description
1990 nî lūn-bûn
@nan
1990 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
1990 թվականի մայիսին հրատարակված գիտական հոդված
@hy
1990年の論文
@ja
1990年論文
@yue
1990年論文
@zh-hant
1990年論文
@zh-hk
1990年論文
@zh-mo
1990年論文
@zh-tw
1990年论文
@wuu
name
Introduction of site-specific mutations into the genome of influenza virus
@ast
Introduction of site-specific mutations into the genome of influenza virus
@en
Introduction of site-specific mutations into the genome of influenza virus.
@nl
type
label
Introduction of site-specific mutations into the genome of influenza virus
@ast
Introduction of site-specific mutations into the genome of influenza virus
@en
Introduction of site-specific mutations into the genome of influenza virus.
@nl
prefLabel
Introduction of site-specific mutations into the genome of influenza virus
@ast
Introduction of site-specific mutations into the genome of influenza virus
@en
Introduction of site-specific mutations into the genome of influenza virus.
@nl
P2093
P2860
P356
P1476
Introduction of site-specific mutations into the genome of influenza virus
@en
P2093
P2860
P304
P356
10.1073/PNAS.87.10.3802
P407
P577
1990-05-01T00:00:00Z