Search results for "tRNA"

showing 10 items of 63 documents

The Effect of tRNA

2021

Transfer RNA[Ser]Sec carries multiple post-transcriptional modifications. The A37G mutation in tRNA[Ser]Sec abrogates isopentenylation of base 37 and has a profound effect on selenoprotein expression in mice. Patients with a homozygous pathogenic p.R323Q variant in tRNA-isopentenyl-transferase (TRIT1) show a severe neurological disorder, and hence we wondered whether selenoprotein expression was impaired. Patient fibroblasts with the homozygous p.R323Q variant did not show a general decrease in selenoprotein expression. However, recombinant human TRIT1R323Q had significantly diminished activities towards several tRNA substrates in vitro. We thus engineered mice conditionally deficient in Tr…

GPX1medicine.disease_causelaw.inventiontRNA<sup>[Ser]Sec</sup>MiceRNA TransferlawBiology (General)Trit1Selenoproteins<i>Trit1</i>Spectroscopychemistry.chemical_classificationNeuronsMutationChemistryTranslation (biology)General MedicineComputer Science ApplicationsBlotChemistryLiverTransfer RNARecombinant DNAQH301-705.5isopentenylationCatalysisArticleCell LineInorganic ChemistrySeleniumSelenoprotein PmedicineAnimalsHumansCysteinePhysical and Theoretical ChemistrytRNA[Ser]SecMolecular BiologyQD1-999Alkyl and Aryl TransferasesOrganic ChemistryPhosphotransferasesMolecular biologyIn vitroSelenocysteineProtein BiosynthesisHepatocytesSelenoproteinRibosomesInternational journal of molecular sciences
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Basic phenotypic analysis of six novel yeast genes reveals two essential genes and one which affects the growth rate

1999

Phenotypic analysis was performed on six mutants of Saccharomyces cerevisiae deleted in one of the following open reading frames (ORFs), located on chromosome II: YBR254c, YBR255w, YBR257w, YBR258c, YBR259w and YBR266c. Disruption of the ORFs was carried out in the diploid strain FY1679 using the kanMX4 marker flanked by short sequences homologous to the target locus. Tetrad analysis following sporulation of the heterozygous disruptants showed that YBR254c and YBR257w are essential genes. YBR257w was later characterized and renamed POP4, its gene product being involved in 5.8S rRNA and tRNA processing (Chu et al., 1997). The tetrad analysis performed for the heterozygous disruptant for YBR2…

Genetic MarkersGeneticsGenes FungalMutantSaccharomyces cerevisiaeTRNA processingBioengineeringLocus (genetics)Saccharomyces cerevisiaeBiologybiology.organism_classificationPolymerase Chain ReactionApplied Microbiology and BiotechnologyBiochemistryComplementationOpen Reading FramesOpen reading framePhenotypeGeneticsChromosomes FungalORFSGeneGene DeletionBiotechnologyYeast
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&lt;em&gt;In vitro&lt;/em&gt; tRNA Methylation Assay with the &lt;em&gt;Entamoeba histolytica&lt;/em&gt; DNA and tRNA Methyltransferase Dnmt2 (Ehmeth…

2010

Protozoan parasites are among the most devastating infectious agents of humans responsible for a variety of diseases including amebiasis, which is one of the three most common causes of death from parasitic disease. The agent of amebiasis is the amoeba parasite Entamoeba histolytica that exists under two stages: the infective cyst found in food or water and the invasive trophozoite living in the intestine. The clinical manifestations of amebiasis range from being asymptomatic to colitis, dysentery or liver abscesses. E. histolytica is one of the rare unicellular parasite with 5-methylcytosine (5mC) in its genome. 1, 2 It contains a single DNA methyltransferase, Ehmeth, that belongs to the D…

GeneticsMethyltransferaseTRNA methylationbiologyGeneral Immunology and MicrobiologyTRNA methyltransferase activityGeneral Chemical EngineeringGeneral NeuroscienceTRNA MethyltransferaseMethylationbiology.organism_classificationDNA methyltransferaseGeneral Biochemistry Genetics and Molecular BiologyEntamoeba histolyticaTransfer RNAJournal of Visualized Experiments
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Translational adaptation to heat stress is mediated by RNA 5‐methylcytosine in Caenorhabditis elegans

2021

Abstract Methylation of carbon‐5 of cytosines (m5C) is a post‐transcriptional nucleotide modification of RNA found in all kingdoms of life. While individual m5C‐methyltransferases have been studied, the impact of the global cytosine‐5 methylome on development, homeostasis and stress remains unknown. Here, using Caenorhabditis elegans, we generated the first organism devoid of m5C in RNA, demonstrating that this modification is non‐essential. Using this genetic tool, we determine the localisation and enzymatic specificity of m5C sites in the RNome in vivo. We find that NSUN‐4 acts as a dual rRNA and tRNA methyltransferase in C. elegans mitochondria. In agreement with leucine and proline bein…

Hot TemperatureProlineRibosomeGeneral Biochemistry Genetics and Molecular BiologyArticle03 medical and health sciencesNSUNCytosine0302 clinical medicineRNA modificationsLeucinem5CAnimalsRNA Processing Post-TranscriptionalCaenorhabditis elegansMolecular BiologytRNACaenorhabditis elegansprotein translation030304 developmental biologyGene Editing0303 health sciencesGeneral Immunology and MicrobiologybiologyGeneral NeuroscienceTRNA MethyltransferaseRNATranslation (biology)MethylationArticlesMethyltransferasesRibosomal RNAbiology.organism_classificationRNA BiologyAdaptation Physiological5‐methylcytosineCell biologyMitochondriatranslation efficiencyProtein BiosynthesisTransfer RNA5-MethylcytosineRNACRISPR-Cas SystemsRibosomes030217 neurology & neurosurgeryHeat-Shock ResponseThe EMBO Journal
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Presence and coding properties of 2'-O-methyl-5-carbamoylmethyluridine (ncm5Um) in the wobble position of the anticodon of tRNA(Leu) (U*AA) from brew…

1992

AbstractThe unknown modified nucleoside U* has been isolated by enzymatic and HPLC protocols from tRNALeu(U*AA) recently discovered in brewer's yeast. The pure U* nucleoside has been characterized by electron impact mass spectroscopy, and comparison of its chromatographic and UV-absorption properties with those of appropriate synthetic compounds. The structure of U* was established as 2′-O-methyl-5-carbamoylmethyluridine (ncm5Um). The yeast tRNALeu (U*AA) is the only tRNA so far sequenced which has been shown to contain ncm5Um. The location of such a modified uridine at the first position of the anticodon restricts the decoding property to A of the leucine UUA codon.

IdentificationRNA Transfer LeuStereochemistryBiophysicsAminoacylationWobble base pairModified nucleosideSaccharomyces cerevisiaeBiochemistryMass SpectrometryFungal Proteinschemistry.chemical_compoundStructural BiologyGeneticsAnticodonMolecular BiologyUridineChromatography High Pressure Liquidchemistry.chemical_classificationMolecular StructureRNA FungalCell BiologyUridineYeastYeastEnzymechemistryBiochemistryTransfer RNAtRNALeu (U*AA)Spectrophotometry UltravioletLeucineNucleosideFEBS letters
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Identification of modifications in microbial, native tRNA that suppress immunostimulatory activity

2012

2′-O-methylation of guanosine 18 is a naturally occurring tRNA modification that can suppress immune TLR7 responses.

ImmunologyMutantfungiBrief Definitive ReportRNAfood and beveragesvirus diseasesContext (language use)Biologybiochemical phenomena metabolism and nutritionmedicine.disease_causeTRNA MethyltransferasesTransplantationchemistry.chemical_compoundBiochemistrychemistryTransfer RNAmedicineImmunology and AllergyEscherichia coliDNAThe Journal of Experimental Medicine
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RNA cytosine methylation by Dnmt2 and NSun2 promotes tRNA stability and protein synthesis.

2012

The function of cytosine-C5 methylation, a widespread modification of tRNAs, has remained obscure, particularly in mammals. We have now developed a mouse strain defective in cytosine-C5 tRNA methylation, by disrupting both the Dnmt2 and the NSun2 tRNA methyltransferases. Although the lack of either enzyme alone has no detectable effects on mouse viability, double mutants showed a synthetic lethal interaction, with an underdeveloped phenotype and impaired cellular differentiation. tRNA methylation analysis of the double-knockout mice demonstrated complementary target-site specificities for Dnmt2 and NSun2 and a complete loss of cytosine-C5 tRNA methylation. Steady-state levels of unmethylate…

MaleRNA StabilityMutantBiologyNSun2MethylationCytosineMiceRNA TransferStructural BiologyProtein biosynthesism5CAnimalsDNA (Cytosine-5-)-MethyltransferasesMolecular BiologytRNACells CulturedMice KnockoutTRNA methylationRNACell DifferentiationMethylationMethyltransferasesTRNA MethyltransferasesBiochemistryProtein BiosynthesisTransfer RNADNA methylationDnmt2FemaleGene DeletionNature structuralmolecular biology
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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 &amp; Development
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A New Nuclear Function of the Entamoeba histolytica Glycolytic Enzyme Enolase: The Metabolic Regulation of Cytosine-5 Methyltransferase 2 (Dnmt2) Act…

2009

Cytosine-5 methyltransferases of the Dnmt2 family function as DNA and tRNA methyltransferases. Insight into the role and biological significance of Dnmt2 is greatly hampered by a lack of knowledge about its protein interactions. In this report, we address the subject of protein interaction by identifying enolase through a yeast two-hybrid screen as a Dnmt2-binding protein. Enolase, which is known to catalyze the conversion of 2-phosphoglycerate (2-PG) to phosphoenolpyruvate (PEP), was shown to have both a cytoplasmatic and a nuclear localization in the parasite Entamoeba histolytica. We discovered that enolase acts as a Dnmt2 inhibitor. This unexpected inhibitory activity was antagonized by…

MethyltransferaseQH301-705.5ImmunologyEnolaseProtozoan ProteinsPolymerase Chain ReactionMicrobiologyEntamoeba histolyticaTwo-Hybrid System TechniquesGenetics and Genomics/EpigeneticsVirologyGeneticsImmunoprecipitationDNA (Cytosine-5-)-MethyltransferasesMicrobiology/ParasitologyBiology (General)Molecular BiologyMolecular Biology/DNA MethylationCell Nucleuschemistry.chemical_classificationbiologyEntamoeba histolyticaInfectious Diseases/Protozoal InfectionsMethylationRC581-607biology.organism_classificationTRNA MethyltransferasesEnolase 2EnzymechemistryBiochemistryPhosphopyruvate HydrataseSpectrometry Mass Matrix-Assisted Laser Desorption-IonizationParasitologyImmunologic diseases. AllergyNuclear localization sequenceResearch ArticlePLoS Pathogens
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FICC-Seq: a method for enzyme-specified profiling of methyl-5-uridine in cellular RNA.

2019

AbstractMethyl-5-uridine (m5U) is one the most abundant non-canonical bases present in cellular RNA, and in yeast is found at position U54 of tRNAs where modification is catalysed by the methyltransferase Trm2. Although the mammalian enzymes that catalyse m5U formation are yet to be identified via experimental evidence, based on sequence homology to Trm2, two candidates currently exist, TRMT2A and TRMT2B. Here we developed a genome-wide single-nucleotide resolution mapping method, Fluorouracil-Induced-Catalytic-Crosslinking-Sequencing (FICC-Seq), in order to identify the relevant enzymatic targets. We demonstrate that TRMT2A is responsible for the majority of m5U present in human RNA, and t…

MethyltransferaseSaccharomyces cerevisiae ProteinsCell SurvivalSaccharomyces cerevisiaeBiology03 medical and health scienceschemistry.chemical_compound0302 clinical medicineRNA TransferYeastsGeneticsHumansNucleotideUridine030304 developmental biologychemistry.chemical_classification0303 health sciencestRNA MethyltransferasesDeoxyribonucleasesHEK 293 cellsRNAHigh-Throughput Nucleotide SequencingYeastUridineEnzymeHEK293 CellsBiochemistrychemistry030220 oncology & carcinogenesisTransfer RNARNAMethods OnlineFluorouracilNucleic acids research
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