Search results for "Non-coding RNA"

showing 10 items of 84 documents

2015

The combination of Reverse Transcription (RT) and high-throughput sequencing has emerged as a powerful combination to detect modified nucleotides in RNA via analysis of either abortive RT-products or of the incorporation of mismatched dNTPs into cDNA. Here we simultaneously analyze both parameters in detail with respect to the occurrence of N-1-methyladenosine (m(1)A) in the template RNA. This naturally occurring modification is associated with structural effects, but it is also known as a mediator of antibiotic resistance in ribosomal RNA. In structural probing experiments with dimethylsulfate, m(1)A is routinely detected by RT-arrest. A specifically developed RNA-Seq protocol was tailored…

BiochemistryTranscription (biology)RNA editingGeneticsRNA polymerase IIntronRNA-dependent RNA polymeraseRNABiologyNon-coding RNAMolecular biologyPost-transcriptional modificationNucleic Acids Research
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CD90+ liver cancer cells modulate endothelial cell phenotype through the release of exosomes containing H19 lncRNA

2015

Background CD90+ liver cancer cells have been described as cancer stem-cell-like (CSC), displaying aggressive and metastatic phenotype. Using two different in vitro models, already described as CD90+ liver cancer stem cells, our aim was to study their interaction with endothelial cells mediated by the release of exosomes. Methods Exosomes were isolated and characterized from both liver CD90+ cells and hepatoma cell lines. Endothelial cells were treated with exosomes, as well as transfected with a plasmid containing the full length sequence of the long non-coding RNA (lncRNA) H19. Molecular and functional analyses were done to characterize the endothelial phenotype after treatments. Results …

Cancer ResearchAngiogenesisAngiogenesis; CD90+ liver cancer cells; Exosomes; Long-non-coding RNA H19; Antigens Thy-1; Cell Adhesion; Cell Line Tumor; Endothelial Cells; Exosomes; Human Umbilical Vein Endothelial Cells; Humans; Liver Neoplasms; RNA Long Noncoding; Phenotype; Molecular Medicine; Oncology; Cancer ResearchBiologyCD90+ liver cancer cellsExosomesCell LineSettore BIO/13 - Biologia ApplicataCancer stem cellCell Line TumormedicineCell AdhesionHuman Umbilical Vein Endothelial CellsHumansCD90AntigensThy-1TumorExosomes Long-non-coding RNA H19 CD90+ liver cancer cells AngiogenesisResearchLiver NeoplasmsCancerEndothelial Cellsmedicine.diseaseMicrovesiclesCell biologyEndothelial stem cellPhenotypeOncologyembryonic structuresThy-1 AntigensRNAMolecular MedicineRNA Long NoncodingLong NoncodingAngiogenesisStem cellLiver cancerLong-non-coding RNA H19Molecular Cancer
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Cell volume homeostatically controls the rDNA repeat copy number and rRNA synthesis rate in yeast

2021

[Abstract] The adjustment of transcription and translation rates to the changing needs of cells is of utmost importance for their fitness and survival. We have previously shown that the global transcription rate for RNA polymerase II in budding yeast Saccharomyces cerevisiae is regulated in relation to cell volume. Total mRNA concentration is constant with cell volume since global RNApol II-dependent nascent transcription rate (nTR) also keeps constant but mRNA stability increases with cell size. In this paper, we focus on the case of rRNA and RNA polymerase I. Contrarily to that found for RNA pol II, we detected that RNA polymerase I nTR increases proportionally to genome copies and cell s…

Cancer ResearchTranscription GeneticCellGene ExpressionRNA polymerase IIYeast and Fungal ModelsProtein SynthesisQH426-470HaploidyBiochemistryPolymerasesSirtuin 2Transcription (biology)RNA Polymerase IHomeostasisCell Cycle and Cell DivisionGenetics (clinical)Silent Information Regulator Proteins Saccharomyces cerevisiaebiologyTranscriptional ControlEukaryotaChemical SynthesisGenomicsCell biologyNucleic acidsmedicine.anatomical_structureExperimental Organism SystemsRibosomal RNARNA polymeraseCell ProcessesRNA Polymerase IIResearch ArticleCell biologyCellular structures and organellesSaccharomyces cerevisiae ProteinsBiosynthetic TechniquesSaccharomyces cerevisiaeSaccharomyces cerevisiaeResearch and Analysis MethodsDNA RibosomalSaccharomycesModel OrganismsCyclinsDNA-binding proteinsmedicineRNA polymerase IGeneticsGene RegulationNon-coding RNAMolecular BiologyEcology Evolution Behavior and SystematicsCell SizeMessenger RNACèl·lules eucariotesOrganismsFungiRNABiology and Life SciencesProteinsGenes rRNARibosomal RNAModels Theoreticalbiology.organism_classificationYeastGenòmicabiology.proteinAnimal StudiesRNARibosomes
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The role of cell interactions in the control of RNA synthesis.

1967

CytoplasmChemistryCellular differentiation5.8S ribosomal RNACellRNAPhosphorus IsotopesCell DifferentiationRNA integrity numberNon-coding RNABiochemistry Genetics and Molecular Biology (miscellaneous)RNA polymerase IIICell biologymedicine.anatomical_structureRNA editingmedicineCentrifugation Density GradientAnimalsRNAUltracentrifugationEchinodermataBiochimica et biophysica acta
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Non-coding RNAs and Coronary Artery Disease

2020

Coronary artery disease (CAD) is the leading death cause worldwide. Non-coding RNA (ncRNA) are key regulators of genetic expression and thus can affect directly or indirectly the development and progression of different diseases. ncRNA can be classified in several types depending on the length or structure, as long non-coding RNA (lncRNA), microRNA (miRNA) and circularRNA (circRNA), among others. These types of RNA are present within cells or in circulation, and for this reason they have been used as biomarkers of different diseases, therefore revolutionizing precision medicine. Recent research studied the capability of circulating ncRNA to inform about CAD presence and predict the outcome …

Enfermedad cardiovascularRNABiomarkerDiseaseComputational biologyGenética humanaBiologyNon-coding RNAPrecision medicinemedicine.diseaseARNCoronary artery disease (CAD)Coronary artery disease03 medical and health scienceslncRNA0302 clinical medicineBiomarker; Coronary artery disease (CAD); circRNA; lncRNA; miRNAGene expressionmicroRNAmedicineBiomarker (medicine)Cardiopatía coronariacircRNA030212 general & internal medicinemiRNA
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2015

Piwi-interacting (pi-) RNAs guide germline-expressed Piwi proteins in order to suppress the activity of transposable elements (TEs). But notably, the majority of pachytene piRNAs in mammalian testes is not related to TEs. This raises the question of whether the Piwi/piRNA pathway exerts functions beyond TE silencing. Although gene-derived piRNAs were described many times, a possible gene-regulatory function was doubted due to the absence of antisense piRNAs. Here we sequenced and analyzed piRNAs expressed in the adult testis of the pig, as this taxon possesses the full set of mammalian Piwi paralogs while their spermatozoa are marked by an extreme fitness due to selective breeding. We provi…

GeneticsTransposable elementendocrine systemMultidisciplinaryurogenital systemRNA interferencePseudogenePiwi-interacting RNARasiRNAArgonauteBiologyNon-coding RNAConserved sequencePLOS ONE
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Arthropod 7SK RNA

2008

The 7SK small nuclear RNA (snRNA) is a key player in the regulation of polymerase (pol) II transcription. The 7SK RNA was long believed to be specific to vertebrates where it is highly conserved. Homologs in basal deuterostomes and a few lophotrochozoan species were only recently reported. On longer timescales, 7SK evolves rapidly with only few conserved sequence and structure motifs. Previous attempts to identify the Drosophila homolog thus have remained unsuccessful despite considerable efforts. Here we report on the discovery of arthropod 7SK RNAs using a novel search strategy based on pol III promoters, as well as the subsequent verification of its expression. Our results demonstrate th…

GeneticsbiologyComputational BiologyGene Expression7SK Small Nuclear RNAPrp24RNA polymerase IINon-coding RNARNA polymerase IIIConserved sequenceDrosophila melanogasterEvolutionary biologyRNA Small NuclearSequence Homology Nucleic AcidDatabases GeneticGeneticsbiology.proteinAnimalsNucleic Acid ConformationsnRNPArthropodsMolecular BiologyEcology Evolution Behavior and SystematicsSmall nuclear RNAMolecular Biology and Evolution
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5-methylcytosine modification of an Epstein–Barr virus noncoding RNA decreases its stability

2020

Many cellular noncoding RNAs contain chemically modified nucleotides that are essential for their function. The Epstein–Barr virus expresses two highly abundant noncoding RNAs called EBV-encoded RNA 1 (EBER1) and EBER2. To examine whether these viral RNAs contain modified nucleotides, we purified native EBERs from EBV-infected cells and performed mass spectrometry analysis. While EBER2 contains no modified nucleotides at stoichiometric amounts, EBER1 was found to carry 5-methylcytosine (m5C) modification. Bisulfite sequencing indicated that a single cytosine of EBER1 is methylated in ∼95% of molecules, and the RNA methyltransferase NSUN2 was identified as the EBER1-specific writer. Intrigui…

Herpesvirus 4 HumanRNA StabilityRNA UntranslatedRNase PRNA StabilityBisulfite sequencingBiologyArticle03 medical and health scienceschemistry.chemical_compoundhemic and lymphatic diseasesHumansNucleotideMolecular Biology030304 developmental biologychemistry.chemical_classification0303 health sciences030302 biochemistry & molecular biologyvirus diseasesRNAMethyltransferasesNon-coding RNA5-MethylcytosineBiochemistrychemistry5-MethylcytosineRNA ViralCytosineRNA
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Nouvelles perspectives concernant la structure et la fonction du domaine carboxyl terminal de Hfq

2015

Accumulating evidence indicates that RNA metabolism components assemble into supramolecular cellular structures to mediate functional compartmentalization within the cytoplasmic membrane of the bacterial cell. This cellular compartmentalization could play important roles in the processes of RNA degradation and maturation. These components include Hfq, the RNA chaperone protein, which is involved in the post-transcriptional control of protein synthesis mainly by the virtue of its interactions with several small regulatory ncRNAs (sRNA). The Escherichia coli Hfq is structurally organized into two domains. An N-terminal domain that folds as strongly bent β-sheets within individual protomers to…

IDP intrinsically-disordered proteinslcsh:Lifelcsh:QR1-502sub-membrane macromolecular assemblyPlasma protein bindingsRNA small non-coding RNABiochemistrylcsh:Microbiologyamyloid fibrilsProtein biosynthesis0303 health sciences[SDV.BBM.BS]Life Sciences [q-bio]/Biochemistry Molecular Biology/Structural Biology [q-bio.BM]Escherichia coli Proteins030302 biochemistry & molecular biologyHfqCTRp Hfq C-terminal peptideFTIR Fourier transform infrared spectroscopyNTR N-terminal regionCompartmentalization (psychology)Cell biology[SDV.BBM.BP]Life Sciences [q-bio]/Biochemistry Molecular Biology/BiophysicsRNA Bacterialsmall non-coding ribonucleic acid (RNA)BiochemistryFSD Fourier self-deconvolutionTransfer RNAAmyloid fibrilProtein BindingBiophysicsBiologyHost Factor 1 Protein03 medical and health sciencesEscherichia coliThT thioflavin T[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyProtein Structure QuaternaryncRNA regulatory non-coding RNAPost-transcriptional regulationMolecular Biology030304 developmental biologyOriginal PaperC-terminusRNA[SDV.BBM.BM]Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyCell Biologycellular compartmentalizationWT wild-typeProtein Structure Tertiarylcsh:QH501-531Host Factor 1 ProteinCTR Hfq C-terminal regionribonucleic acid (RNA) processing and degradationBiophysicpost-transcriptional regulationBioscience Reports
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Eukaryotic snoRNAs: a paradigm for gene expression flexibility.

2009

AbstractSmall nucleolar RNAs (snoRNAs) are one of the most ancient and numerous families of non-protein-coding RNAs (ncRNAs). The main function of snoRNAs – to guide site-specific rRNA modification – is the same in Archaea and all eukaryotic lineages. In contrast, as revealed by recent genomic and RNomic studies, their genomic organization and expression strategies are the most varied. Seemingly snoRNA coding units have adopted, in the course of evolution, all the possible ways of being transcribed, thus providing a unique paradigm of gene expression flexibility. By focusing on representative fungal, plant and animal genomes, we review here all the documented types of snoRNA gene organizati…

IntronAdaptation BiologicalGene ExpressionGenomicsComputational biologyBiologyGenomeEvolution MolecularRRNA modificationsnoRNA genesGeneticsAnimalsHumansRNA Small NucleolarSmall nucleolar RNAsSmall nucleolar RNAGeneGenomic organizationGeneticsGenomeurogenital systemRNAPromoterncRNAsNon-coding RNAEukaryotic CellsTranscriptionGenomics
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