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Mammalian WTAP is a regulatory subunit of the RNA N6-methyladenosine methyltransferaseN6-methyladenosine marks primary microRNAs for processingm(6)A RNA modification controls cell fate transition in mammalian embryonic stem cells.Structure of human RNA N6-methyladenine demethylase ALKBH5 provides insights into its mechanisms of nucleic acid recognition and demethylationModify or die?--RNA modification defects in metazoansExpression analysis of genes and pathways associated with liver metastases of the uveal melanoma.ToNER: A tool for identifying nucleotide enrichment signals in feature-enriched RNA-seq dataUnderstanding RNA modifications: the promises and technological bottlenecks of the 'epitranscriptome'.Milk: an epigenetic amplifier of FTO-mediated transcription? Implications for Western diseases.Deposition of 5-Methylcytosine on Enhancer RNAs Enables the Coactivator Function of PGC-1α.The Cardiomyocyte RNA-Binding Proteome: Links to Intermediary Metabolism and Heart Disease.A regulatory loop between miR-132 and miR-125b involved in gonadotrope cells desensitization to GnRH.Clinical and ethical considerations of massively parallel sequencing in transplantation science.Distinct 5-methylcytosine profiles in poly(A) RNA from mouse embryonic stem cells and brain.Elevated expression of RNA methyltransferase BCDIN3D predicts poor prognosis in breast cancer.A system of RNA modifications and biased codon use controls cellular stress response at the level of translation.Functional implications of ribosomal RNA methylation in response to environmental stress.The humankind genome: from genetic diversity to the origin of human diseases.miRNA and methylation: a multifaceted liaison.N (6)-Methyladenosine (m(6)A) Methylation in mRNA with A Dynamic and Reversible Epigenetic Modification.Nucleotide modifications within bacterial messenger RNAs regulate their translation and are able to rewire the genetic code.m(6)A-LAIC-seq reveals the census and complexity of the m(6)A epitranscriptome.Fingerprints of Modified RNA Bases from Deep Sequencing Profiles.m6A RNA Methylation Regulates the Self-Renewal and Tumorigenesis of Glioblastoma Stem Cells.MicroRNA-145 Modulates N6-Methyladenosine Levels by Targeting the 3'-Untranslated mRNA Region of the N6-Methyladenosine Binding YTH Domain Family 2 Protein.N6-Methyladenosine modification of lincRNA 1281 is critically required for mESC differentiation potential.A census of human RNA-binding proteinsThe fat mass and obesity-associated FTO rs9939609 polymorphism is associated with elevated homocysteine levels in patients with multiple sclerosis screened for vascular risk factors
P2860
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P2860
description
article científic
@ca
article scientifique
@fr
articol științific
@ro
articolo scientifico
@it
artigo científico
@gl
artigo científico
@pt
artigo científico
@pt-br
artikel ilmiah
@id
artikull shkencor
@sq
artículo científico
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name
Mapping and significance of the mRNA methylome.
@en
type
label
Mapping and significance of the mRNA methylome.
@en
prefLabel
Mapping and significance of the mRNA methylome.
@en
P2860
P356
P1476
Mapping and significance of the mRNA methylome
@en
P2093
Tennille Sibbritt
P2860
P304
P356
10.1002/WRNA.1166
P577
2013-05-16T00:00:00Z