Proteome diversification by adenosine to inosine RNA editing.
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Transcriptome-wide sequencing reveals numerous APOBEC1 mRNA-editing targets in transcript 3' UTRsTranscriptome complexity in cardiac development and diseases--an expanding universe between genome and phenomeProteomics and Transcriptomics of BJAB Cells Expressing the Epstein-Barr Virus Noncoding RNAs EBER1 and EBER2The dynamic epitranscriptome: A to I editing modulates genetic informationTheory of the origin, evolution, and nature of lifeConstraint and opportunity in genome innovationComprehensive analysis of RNA-Seq data reveals extensive RNA editing in a human transcriptome.Potent and selective inhibition of A-to-I RNA editing with 2'-O-methyl/locked nucleic acid-containing antisense oligoribonucleotides.RNA editing changes the lesion specificity for the DNA repair enzyme NEIL1A novel computational strategy to identify A-to-I RNA editing sites by RNA-Seq data: de novo detection in human spinal cord tissueF11R expression upon hypoxia is regulated by RNA editingOne hundred million adenosine-to-inosine RNA editing sites: hearing through the noise.Using REDItools to Detect RNA Editing Events in NGS Datasets.ADAR proteins: double-stranded RNA and Z-DNA binding domains.A Fluorescent Adenosine Analogue as a Substrate for an A-to-I RNA Editing Enzyme.RNA editing of protein sequences: a rare event in human transcriptomesTrans and cis factors affecting A-to-I RNA editing efficiency of a noncoding editing target in C. elegans.Characterization and comparison of human nuclear and cytosolic editomesWhen you can't trust the DNA: RNA editing changes transcript sequences.ADAR-mediated RNA editing in non-coding RNA sequences.Dynamic regulation of RNA editing in human brain development and disease.Formation and processing of DNA damage substrates for the hNEIL enzymes.RNA editing generates cellular subsets with diverse sequence within populations.Uncovering RNA Editing Sites in Long Non-Coding RNAs.A strategy for developing a hammerhead ribozyme for selective RNA cleavage depending on substitutional RNA editing.A-to-I RNA editing promotes developmental stage-specific gene and lncRNA expressionAdenosine to Inosine editing frequency controlled by splicing efficiencyThe Other Face of an Editor: ADAR1 Functions in Editing-Independent Ways.A-to-I RNA editing is developmentally regulated and generally adaptive for sexual reproduction in Neurospora crassa.Adenosine Deaminase That Acts on RNA 3 (ADAR3) Binding to Glutamate Receptor Subunit B Pre-mRNA Inhibits RNA Editing in Glioblastoma.Pre-reproductive stress and fluoxetine treatment in rats affect offspring A-to-I RNA editing, gene expression and social behaviorRNA editing of Filamin A pre-mRNA regulates vascular contraction and diastolic blood pressure
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P2860
Proteome diversification by adenosine to inosine RNA editing.
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
@pt
bilimsel makale
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scientific article published on 25 March 2010
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Proteome diversification by adenosine to inosine RNA editing.
@en
Proteome diversification by adenosine to inosine RNA editing.
@nl
type
label
Proteome diversification by adenosine to inosine RNA editing.
@en
Proteome diversification by adenosine to inosine RNA editing.
@nl
prefLabel
Proteome diversification by adenosine to inosine RNA editing.
@en
Proteome diversification by adenosine to inosine RNA editing.
@nl
P356
P1433
P1476
Proteome diversification by adenosine to inosine RNA editing.
@en
P2093
Dieter Pullirsch
Michael F Jantsch
P304
P356
10.4161/RNA.7.2.11286
P577
2010-03-25T00:00:00Z