Search results for "RNA methylation"

showing 10 items of 20 documents

RNA methylation by Dnmt2 protects transfer RNAs against stress-induced cleavage

2010

The covalent modification of nucleic acids plays an important role in regulating the functions of DNA and RNA. DNA modifications have been analyzed in considerable detail, and the characterization of (cytosine-5) DNA methylation has been crucial for understanding the molecular basis of epigenetic gene regulation (Klose and Bird 2006). (Cytosine-5) methylation has also been documented in various RNA species, including tRNA, but the function of RNA methylation has not been firmly established yet (Motorin et al. 2010). Dnmt2 proteins were originally assigned to the DNA methyltransferase family, because of their strong sequence conservation of catalytic DNA methyltransferase motifs (Okano et al…

MaleRNA methylationBiologyMethylationDNA methyltransferaseResearch CommunicationMiceRNA TransferStress PhysiologicalGeneticsAnimalsDrosophila ProteinsDNA (Cytosine-5-)-MethyltransferasesRNA-Directed DNA MethylationSequence DeletionTRNA methylationTRNA methyltransferase activityTRNA MethyltransferaseRibonuclease PancreaticMethylationSurvival AnalysisMolecular biologyDrosophila melanogasterDNA methylationRNAFemaleDevelopmental BiologyGenes & Development
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Mapping the tRNA binding site on the surface of human DNMT2 methyltransferase.

2012

The DNMT2 enzyme methylates tRNA-Asp at position C38. Because there is no tRNA–Dnmt2 cocrystal structure available, we have mapped the tRNA binding site of DNMT2 by systematically mutating surface-exposed lysine and arginine residues to alanine and studying the tRNA methylation activity and binding of the corresponding variants. After mutating 20 lysine and arginine residues, we identified eight of them that caused large (>4-fold) decreases in catalytic activity. These residues cluster within and next to a surface cleft in the protein, which is large enough to accommodate the tRNA anticodon loop and stem. This cleft is located next to the binding pocket for the cofactor S-adenosyl-l-methion…

Models MolecularMethyltransferaseProtein ConformationLysineMolecular Sequence DataBiologyBiochemistryMethylationCofactorRNA TransferAnimalsHumansAmino Acid SequenceDNA (Cytosine-5-)-MethyltransferasesCloning MolecularAlaninechemistry.chemical_classificationTRNA methylationBinding SitesCircular DichroismTRNA bindingEnzymeDrosophila melanogasterchemistryBiochemistryAmino Acid SubstitutionTransfer RNAbiology.proteinMutagenesis Site-DirectedNucleic Acid ConformationSequence AlignmentBiochemistry
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RNA nucleotide methylation

2011

Methylation of RNA occurs at a variety of atoms, nucleotides, sequences and tertiary structures. Strongly related to other posttranscriptional modifications, methylation of different RNA species includes tRNA, rRNA, mRNA, tmRNA, snRNA, snoRNA, miRNA, and viral RNA. Different catalytic strategies are employed for RNA methylation by a variety of RNA-methyltransferases which fall into four superfamilies. This review outlines the different functions of methyl groups in RNA, including biophysical, biochemical and metabolic stabilization of RNA, quality control, resistance to antibiotics, mRNA reading frame maintenance, deciphering of normal and altered genetic code, selenocysteine incorporation,…

Models MolecularRNA methylationRNA-dependent RNA polymeraseRNA ArchaealBiologyMethylationBiochemistryRNA TransferDrug Resistance BacterialRNA Processing Post-TranscriptionalMolecular BiologyGeneticstRNA MethyltransferasesBinding SitesIntronRNANon-coding RNARNA BacterialRNA silencingRNA RibosomalRNA editingProtein BiosynthesisBiocatalysisNucleic Acid ConformationRNARNA ViralSmall nuclear RNAWIREs RNA
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An epigenetic ‘extreme makeover’: the methylation of flaviviral RNA (and beyond)

2020

Beyond their high clinical relevance worldwide, flaviviruses (comprising dengue and Zika viruses) are of particular interest to understand the spatiotemporal control of RNA metabolism. Indeed, their positive single-stranded viral RNA genome (vRNA) undergoes in the cytoplasm replication, translation and encapsidation, three steps of the flavivirus life cycle that are coordinated through a fine-tuned equilibrium. Over the last years, RNA methylation has emerged as a powerful mechanism to regulate messenger RNA metabolism at the posttranscriptional level. Not surprisingly, flaviviruses exploit RNA epigenetic strategies to control crucial steps of their replication cycle as well as to evade sen…

RNA methylationvirusesGenome ViralReviewDengue virusVirus Replicationmedicine.disease_causeMethylationEpigenesis GeneticDengue feverZika virus03 medical and health scienceschemistry.chemical_compound0302 clinical medicinemedicineAnimalsHumansEpigeneticsMolecular Biology030304 developmental biologyGenetics0303 health sciencesbiologyZika Virus InfectionFlavivirusRNAZika VirusCell Biologybiochemical phenomena metabolism and nutritionmedicine.diseasebiology.organism_classificationFlaviviruschemistry030220 oncology & carcinogenesisRNA ViralN6-MethyladenosineRNA Biology
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Dynamic modulation of Dnmt2-dependent tRNA methylation by the micronutrient queuine

2015

Dnmt2 enzymes are cytosine-5 methyltransferases that methylate C38 of several tRNAs. We report here that the activities of two Dnmt2 homologs, Pmt1 from Schizosaccharomyces pombe and DnmA from Dictyostelium discoideum, are strongly stimulated by prior queuosine (Q) modification of the substrate tRNA. In vivo tRNA methylation levels were stimulated by growth of cells in queuine-containing medium; in vitro Pmt1 activity was enhanced on Q-containing RNA; and queuine-stimulated in vivo methylation was abrogated by the absence of the enzyme that inserts queuine into tRNA, eukaryotic tRNA-guanine transglycosylase. Global analysis of tRNA methylation in S. pombe showed a striking selectivity of Pm…

RNA Transfer AspTRNA modificationGuanineMethyltransferaseTRNA methylationbiologyQueuosineQueuineMethylationbiology.organism_classificationMethylationchemistry.chemical_compoundRNA TransferchemistryBiochemistrySchizosaccharomycesTransfer RNAGeneticsRNADictyosteliumDNA (Cytosine-5-)-MethyltransferasesMicronutrientsPentosyltransferasesSchizosaccharomyces pombe ProteinsSchizosaccharomycesNucleic Acids Research
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m6A RNA methylation regulates promoter proximal pausing of RNA Polymerase II

2021

AbstractRNA Polymerase II (RNAP II) pausing is essential to precisely control gene expression and is critical for development of metazoans. Here, we show that the m6A RNA modification regulates promoter-proximal RNAP II pausing. The m6A methyltransferase complex (MTC), with the nuclear reader Ythdc1, are recruited to gene promoters. Depleting the m6A MTC leads to a decrease in RNAP II pause release and in Ser2P occupancy on the gene body, and affects nascent RNA transcription. Tethering Mettl3 to a heterologous gene promoter is sufficient to increase RNAP II pause release, an effect that relies on its m6A catalytic domain. Collectively, our data reveal an important link between RNAP II paus…

Regulation of gene expression0303 health sciencesbiologyRNA methylationChemistryMethyltransferase complex[SDV]Life Sciences [q-bio]030302 biochemistry & molecular biologyHeterologousRNA polymerase IIPromoterCell BiologyCell biology[SDV] Life Sciences [q-bio]enzymes and coenzymes (carbohydrates)03 medical and health sciencesGene expressionbiology.proteinbacteriaMolecular BiologyGeneComputingMilieux_MISCELLANEOUS030304 developmental biology
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Aberrant methylation of tRNAs links cellular stress to neuro-developmental disorders.

2014

Mutations in the cytosine-5 RNA methyltransferase NSun2 cause microcephaly and other neurological abnormalities in mice and human. How post-transcriptional methylation contributes to the human disease is currently unknown. By comparing gene expression data with global cytosine-5 RNA methylomes in patient fibroblasts and NSun2-deficient mice, we find that loss of cytosine-5 RNA methylation increases the angiogenin-mediated endonucleolytic cleavage of transfer RNAs (tRNA) leading to an accumulation of 5' tRNA-derived small RNA fragments. Accumulation of 5' tRNA fragments in the absence of NSun2 reduces protein translation rates and activates stress pathways leading to reduced cell siz…

Small RNARNA methylationBiologyNSun2MethylationGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesMisuMice0302 clinical medicineRNA TransferGene expressionAnimalsHumans5‐methylcytidine ; Misu ; Nsun2 ; Rna ModificationMolecular Biology030304 developmental biology5-methylcytidineRegulation of gene expression0303 health sciencesTRNA methylationGeneral Immunology and MicrobiologyGeneral NeuroscienceGene Expression ProfilingRNABrainArticlesMethylationMethyltransferasesRibonuclease PancreaticRNA modificationMolecular biologyOxidative StressGene Expression RegulationTransfer RNANervous System Diseases030217 neurology & neurosurgery5‐methylcytidine
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N6 -Methyladenosine Modification in Chronic Stress Response Due to Social Hierarchy Positioning of Mice

2021

Appropriately responding to stressful events is essential for maintaining health and well-being of any organism. Concerning social stress, the response is not always as straightforward as reacting to physical stressors, e.g., extreme heat, and thus has to be balanced subtly. Particularly, regulatory mechanisms contributing to gaining resilience in the face of mild social stress are not fully deciphered yet. We employed an intrinsic social hierarchy stress paradigm in mice of both sexes to identify critical factors for potential coping strategies. While global transcriptomic changes could not be observed in male mice, several genes previously reported to be involved in synaptic plasticity, l…

Social stressMethyltransferase complexbehaviorQH301-705.5sex differenceStressorCell BiologyBiologydominancechemistry.chemical_compoundtranscriptomicschemistryCorticosteroneepigenetic modificationSynaptic plasticityChronic stressmethyltransferaseMRNA methylationN6-MethyladenosineBiology (General)NeuroscienceDevelopmental BiologyFrontiers in Cell and Developmental Biology
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Cytosine methylation of tRNA-Asp by DNMT2 has a role in translation of proteins containing poly-Asp sequences

2015

AbstractThe Dnmt2 RNA methyltransferase catalyses the methylation of C38 in the anticodon loop of tRNA-Asp, but the molecular role of this methylation is unknown. Here, we report that mouse aspartyl-tRNA synthetase shows a four to fivefold preference for C38-methylated tRNA-Asp. Consistently, a 30% reduced charging level of tRNA-Asp was observed in Dnmt2 knockout (KO) murine embryonic fibroblast cells. Gene expression analysis with fluorescent reporter proteins fused to an N-terminal poly-Asp sequence showed that protein synthesis of poly-Asp-tagged reporter proteins was reduced in Dnmt2 KO cells as well. The same effect was observed with endogenous proteins containing poly-Asp sequences, i…

aminoacylationTRNA methylationRNATranslation (biology)Cell BiologyMethylationBiologyBiochemistryMolecular biologyregulation of translationArticleBiochemistrytRNA methylationTransfer RNADNA methylationGene expressionGeneticsProtein biosynthesisDnmt2Molecular BiologyAsp-rich proteinsCell Discovery
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Effects of 5-Azacitidine on Dnmt2/Trdmt1 expression levels and endoplasmic reticulum stress in cellular models of insulinoma

2021

Diabetes mellitus affects people all over the world of all ages or social groups making it a worldwide healthcare challenge. Moreover, untreated or badly treated diabetes carries a risk of serious complications including premature death (IDF Diabetes Atlas 9th edition, 2019). The main symptom of diabetes is insulin secretion and/or action disorder leading to hyperglycemia what results in impaired carbohydrate, fat, and protein metabolism (“Diagnosis and Classification of Diabetes Mellitus,” 2013). Dnmt2/ Trdmt1 in its structure and sequence is similar to DNA methyltransferases, however, it has been shown that mainly methylates aspartic acid transfer RNA, specifically at the cytosine-38 resi…

insulinoma diabetes mellitus senolytic pancreas senescence ER stress Trdmt1/Dnmt2 tRNA methylation 5-Azacitidine
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