In vivo analysis of the TSWV cap-snatching mechanism: single base complementarity and primer length requirements
about
Emaravirus: a novel genus of multipartite, negative strand RNA plant virusesAssembly of a functional Machupo virus polymerase complexBunyaviridae RNA Polymerases (L-Protein) Have an N-Terminal, Influenza-Like Endonuclease Domain, Essential for Viral Cap-Dependent TranscriptionComparative Structural and Functional Analysis of Bunyavirus and Arenavirus Cap-Snatching EndonucleasesActinidia chlorotic ringspot-associated virus: a novel emaravirus infecting kiwifruit plants.Hantavirus nucleocapsid protein has distinct m7G cap- and RNA-binding sites.Analysis of the Tomato spotted wilt virus ambisense S RNA-encoded hairpin structure in translation.Heterologous production, purification and characterization of enzymatically active Sindbis virus nonstructural protein nsP1Bunyamwera bunyavirus RNA synthesis requires cooperation of 3'- and 5'-terminal sequences.Storage of cellular 5' mRNA caps in P bodies for viral cap-snatchingIris yellow spot virus (Tospovirus: Bunyaviridae): from obscurity to research priority.An N-terminal region of Lassa virus L protein plays a critical role in transcription but not replication of the virus genome.Deep sequencing reveals the eight facets of the influenza A/HongKong/1/1968 (H3N2) virus cap-snatching process.Sequencing the cap-snatching repertoire of H1N1 influenza provides insight into the mechanism of viral transcription initiation.Bunyaviridae RdRps: structure, motifs, and RNA synthesis machinery.Pigeonpea sterility mosaic virus: a legume-infecting Emaravirus from South Asia.Crucial role of CA cleavage sites in the cap-snatching mechanism for initiating viral mRNA synthesisCharacterization of the genome of a phylogenetically distinct tospovirus and its interactions with the local lesion-induced host Chenopodium quinoa by whole-transcriptome analyses.Molecular characterization of emaraviruses associated with Pigeonpea sterility mosaic disease.Identification of a region of hantavirus nucleocapsid protein required for RNA chaperone activity.Characterization of PA-N terminal domain of Influenza A polymerase reveals sequence specific RNA cleavage.Signatures of host mRNA 5' terminus for efficient hantavirus cap snatching.Role of the conserved nucleotide mismatch within 3'- and 5'-terminal regions of Bunyamwera virus in signaling transcription.A Mechanism for Priming and Realignment during Influenza A Virus Replication.Rice Stripe Tenuivirus Has a Greater Tendency To Use the Prime-and-Realign Mechanism in Transcription of Genomic than in Transcription of Antigenomic Template RNAs.
P2860
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P2860
In vivo analysis of the TSWV cap-snatching mechanism: single base complementarity and primer length requirements
description
2001 nî lūn-bûn
@nan
2001 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
2001 թվականի մայիսին հրատարակված գիտական հոդված
@hy
2001年の論文
@ja
2001年論文
@yue
2001年論文
@zh-hant
2001年論文
@zh-hk
2001年論文
@zh-mo
2001年論文
@zh-tw
2001年论文
@wuu
name
In vivo analysis of the TSWV c ...... and primer length requirements
@ast
In vivo analysis of the TSWV c ...... and primer length requirements
@en
type
label
In vivo analysis of the TSWV c ...... and primer length requirements
@ast
In vivo analysis of the TSWV c ...... and primer length requirements
@en
prefLabel
In vivo analysis of the TSWV c ...... and primer length requirements
@ast
In vivo analysis of the TSWV c ...... and primer length requirements
@en
P2093
P2860
P356
P1433
P1476
In vivo analysis of the TSWV c ...... and primer length requirements
@en
P2093
Duijsings D
Goldbach R
Kormelink R
P2860
P304
P356
10.1093/EMBOJ/20.10.2545
P407
P577
2001-05-01T00:00:00Z