Viroid processing: switch from cleavage to ligation is driven by a change from a tetraloop to a loop E conformation.
about
Viroids: from genotype to phenotype just relying on RNA sequence and structural motifsDesign of multistable RNA moleculesUsing an RNA secondary structure partition function to determine confidence in base pairs predicted by free energy minimizationViroids: an Ariadne's thread into the RNA labyrinthEfficient ligation of the Schistosoma hammerhead ribozymeCharacterization of the RNA motif responsible for the specific interaction of potato spindle tuber viroid RNA (PSTVd) and the tomato protein Virp1RNA conformational changes in the life cycles of RNA viruses, viroids, and virus-associated RNAsThe discovery and eradication of potato spindle tuber viroid in CanadaProcessing of nuclear viroids in vivo: an interplay between RNA conformations.Arabidopsis thaliana has the enzymatic machinery for replicating representative viroid species of the family PospiviroidaeViroids with hammerhead ribozymes: some unique structural and functional aspects with respect to other members of the group.Predicting secondary structural folding kinetics for nucleic acids.Nonreplicative RNA recombination in poliovirusRNA editing in hepatitis delta virus genotype III requires a branched double-hairpin RNA structure.Conformational changes involved in initiation of minus-strand synthesis of a virus-associated RNA.Tertiary structural and functional analyses of a viroid RNA motif by isostericity matrix and mutagenesis reveal its essential role in replication.Evidence for the existence of the loop E motif of Potato spindle tuber viroid in vivoA structured viroid RNA serves as a substrate for dicer-like cleavage to produce biologically active small RNAs but is resistant to RNA-induced silencing complex-mediated degradation.Viroids: the minimal non-coding RNAs with autonomous replication.RNA Structures as Mediators of Neurological Diseases and as Drug Targets.Mapping the molecular determinant of pathogenicity in a hammerhead viroid: a tetraloop within the in vivo branched RNA conformation.Cis and trans requirements for rolling circle replication of a satellite RNA.A current overview of two viroids that infect chrysanthemums: Chrysanthemum stunt viroid and Chrysanthemum chlorotic mottle viroid.Precisely full length, circularizable, complementary RNA: an infectious form of potato spindle tuber viroidViroid-specific small RNA in plant disease.Viroid replication: rolling-circles, enzymes and ribozymes.Transcription of potato spindle tuber viroid by RNA polymerase II starts predominantly at two specific sites.Detection and analysis of hairpin II, an essential metastable structural element in viroid replication intermediates.Chemical mapping of co-existing RNA structuresA mini-RNA containing the tetraloop, wobble-pair and loop E motifs of the central conserved region of potato spindle tuber viroid is processed into a minicircle.Dissecting the secondary structure of the circular RNA of a nuclear viroid in vivo: A "naked" rod-like conformation similar but not identical to that observed in vitro.BarMap: RNA folding on dynamic energy landscapes.Viroid RNA turnover: characterization of the subgenomic RNAs of potato spindle tuber viroid accumulating in infected tissues provides insights into decay pathways operating in vivo.Structural differences within the loop E motif imply alternative mechanisms of viroid processing.The RNA strands of the plus and minus polarities of peach latent mosaic viroid fold into different structures.Correlation between bending of the VM region and pathogenicity of different Potato Spindle Tuber Viroid strains.An element of the tertiary structure of Peach latent mosaic viroid RNA revealed by UV irradiationExperimental transmission of pospiviroid populations to weed species characteristic of potato and hop fields.NOVOMIR: De Novo Prediction of MicroRNA-Coding Regions in a Single Plant-Genome.Modelling the three-dimensional structure of the right-terminal domain of pospiviroids.
P2860
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P2860
Viroid processing: switch from cleavage to ligation is driven by a change from a tetraloop to a loop E conformation.
description
1997 nî lūn-bûn
@nan
1997年の論文
@ja
1997年論文
@yue
1997年論文
@zh-hant
1997年論文
@zh-hk
1997年論文
@zh-mo
1997年論文
@zh-tw
1997年论文
@wuu
1997年论文
@zh
1997年论文
@zh-cn
name
Viroid processing: switch from ...... loop to a loop E conformation.
@en
Viroid processing: switch from ...... loop to a loop E conformation.
@nl
type
label
Viroid processing: switch from ...... loop to a loop E conformation.
@en
Viroid processing: switch from ...... loop to a loop E conformation.
@nl
prefLabel
Viroid processing: switch from ...... loop to a loop E conformation.
@en
Viroid processing: switch from ...... loop to a loop E conformation.
@nl
P2093
P356
P1433
P1476
Viroid processing: switch from ...... loop to a loop E conformation.
@en
P2093
Baumstark T
Schröder AR
P304
P356
10.1093/EMBOJ/16.3.599
P407
P577
1997-02-01T00:00:00Z