Mechanism of RNA recombination in carmo- and tombusviruses: evidence for template switching by the RNA-dependent RNA polymerase in vitro
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Hepatitis C Virus NS5B Polymerase Exhibits Distinct Nucleotide Requirements for Initiation and ElongationThe combined effect of environmental and host factors on the emergence of viral RNA recombinantsGlobal organization of a positive-strand RNA virus genomeGenome-wide screen identifies host genes affecting viral RNA recombinationScreening of the yeast yTHC collection identifies essential host factors affecting tombusvirus RNA recombinationPersistent infection and promiscuous recombination of multiple genotypes of an RNA virus within a single host generate extensive diversityTranslation elongation factor 1A facilitates the assembly of the tombusvirus replicase and stimulates minus-strand synthesis.Norovirus proteinase-polymerase and polymerase are both active forms of RNA-dependent RNA polymeraseSynergistic roles of eukaryotic translation elongation factors 1Bγ and 1A in stimulation of tombusvirus minus-strand synthesisDefective Interfering RNAs: Foes of Viruses and Friends of Virologists.Suppression of viral RNA recombination by a host exoribonuclease.Efficient in vitro system of homologous recombination in brome mosaic bromovirusCoordinated function of cellular DEAD-box helicases in suppression of viral RNA recombination and maintenance of viral genome integrity.Dissecting the requirement for subgenomic promoter sequences by RNA recombination of brome mosaic virus in vivo: evidence for functional separation of transcription and recombination.A host dicer is required for defective viral RNA production and recombinant virus vector RNA instability for a positive sense RNA virus.In vitro assembly of the Tomato bushy stunt virus replicase requires the host Heat shock protein 70Translation elongation factor 1A is a component of the tombusvirus replicase complex and affects the stability of the p33 replication co-factor.Authentic replication and recombination of Tomato bushy stunt virus RNA in a cell-free extract from yeast.RNA structural elements determine frequency and sites of nonhomologous recombination in an animal plus-strand RNA virusp33-Independent activation of a truncated p92 RNA-dependent RNA polymerase of Tomato bushy stunt virus in yeast cell-free extract.Nonreplicative RNA Recombination of an Animal Plus-Strand RNA Virus in the Absence of Efficient Translation of Viral Proteins.Purification of the cucumber necrosis virus replicase from yeast cells: role of coexpressed viral RNA in stimulation of replicase activity.The AU-rich RNA recombination hot spot sequence of Brome mosaic virus is functional in tombusviruses: implications for the mechanism of RNA recombination.Authentic in vitro replication of two tombusviruses in isolated mitochondrial and endoplasmic reticulum membranes.The proteasomal Rpn11 metalloprotease suppresses tombusvirus RNA recombination and promotes viral replication via facilitating assembly of the viral replicase complex.Tomato bushy stunt virus recombination guided by introduced microRNA target sequences.
P2860
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P2860
Mechanism of RNA recombination in carmo- and tombusviruses: evidence for template switching by the RNA-dependent RNA polymerase in vitro
description
2003 nî lūn-bûn
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2003年の論文
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2003年論文
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2003年論文
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2003年論文
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2003年論文
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2003年論文
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2003年论文
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name
Mechanism of RNA recombination ...... endent RNA polymerase in vitro
@en
type
label
Mechanism of RNA recombination ...... endent RNA polymerase in vitro
@en
prefLabel
Mechanism of RNA recombination ...... endent RNA polymerase in vitro
@en
P2860
P1433
P1476
Mechanism of RNA recombination ...... endent RNA polymerase in vitro
@en
P2093
Chi-Ping Cheng
Peter D Nagy
P2860
P304
12033-12047
P356
10.1128/JVI.77.22.12033-12047.2003
P407
P577
2003-11-01T00:00:00Z