Search results for "CoDi"

showing 10 items of 1391 documents

GW-Bodies and P-Bodies Constitute Two Separate Pools of Sequestered Non-Translating RNAs

2015

Non-translating RNAs that have undergone active translational repression are culled from the cytoplasm into P-bodies for decapping-dependent decay or for sequestration. Organisms that use microRNA-mediated RNA silencing have an additional pathway to remove RNAs from active translation. Consequently, proteins that govern microRNA-mediated silencing, such as GW182/Gw and AGO1, are often associated with the P-bodies of higher eukaryotic organisms. Due to the presence of Gw, these structures have been referred to as GW-bodies. However, several reports have indicated that GW-bodies have different dynamics to P-bodies. Here, we use live imaging to examine GW-body and P-body dynamics in the early …

0301 basic medicineCytoplasmEmbryologyTranscription GeneticMolecular biologylcsh:MedicineGene ExpressionRNA-binding proteinsRNA-binding proteinBiochemistryBlastulas0302 clinical medicineRNA interferenceDrosophila ProteinsCell Cycle and Cell DivisionSmall nucleolar RNAlcsh:ScienceRNA structureGeneticsMultidisciplinaryDrosophila MelanogasterAnimal ModelsArgonauteLong non-coding RNACell biologyInsectsNucleic acidsRNA silencingCell ProcessesArgonaute ProteinsRNA InterferenceRNA Long NoncodingDrosophilaCellular Structures and OrganellesResearch ArticleArthropodaBiologyResearch and Analysis Methods03 medical and health sciencesModel OrganismsP-bodiesGeneticsAnimalsBlastodermlcsh:REmbryosOrganismsBiology and Life SciencesProteinsRNACell BiologyInvertebratesMicroRNAsMacromolecular structure analysis030104 developmental biologyProtein BiosynthesisRNAlcsh:QProtein Translation030217 neurology & neurosurgeryDevelopmental BiologyPLOS ONE
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Environmental metabarcoding reveals contrasting microbial communities at two poplar phytomanagement sites

2016

The aim of the present study is to deepen the current understanding of the microbial communities at two poplar phytomanagement sites to reveal the environmental factors that drive the abundance, diversity and composition of microbial communities. A soil analysis revealed that the two soils displayed contrasting physico-chemical characteristics, with significant lower pH and higher Cd, Zn and Mn CaCl2-extractable fractions at Leforest site, compared with Pierrelaye site. The fungal and bacterial community profiles in the poplar roots and soils were assessed through Illumina MiSeq sequencing. Diversity indices and β-diversity measures illustrated that the root microbial communities were well …

0301 basic medicineEnvironmental EngineeringSoil test030106 microbiologyBiologyActinobacteria[ SDV.EE ] Life Sciences [q-bio]/Ecology environment03 medical and health sciencesDiversity indexMycorrhizaeBotanyEnvironmental ChemistryDominance (ecology)DNA Barcoding TaxonomicWaste Management and DisposalSoil MicrobiologyComputingMilieux_MISCELLANEOUS[SDV.EE]Life Sciences [q-bio]/Ecology environment2. Zero hungerAscomycotaBacteriaEcologyMicrobiotaAlphaproteobacteriaFungi15. Life on landbiology.organism_classificationPollutionWaste Disposal Facilities030104 developmental biologyBiodegradation EnvironmentalPopulusSoil waterFranceAcidobacteria
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Integrative analysis of structural variations using short-reads and linked-reads yields highly specific and sensitive predictions.

2020

Genetic diseases are driven by aberrations of the human genome. Identification of such aberrations including structural variations (SVs) is key to our understanding. Conventional short-reads whole genome sequencing (cWGS) can identify SVs to base-pair resolution, but utilizes only short-range information and suffers from high false discovery rate (FDR). Linked-reads sequencing (10XWGS) utilizes long-range information by linkage of short-reads originating from the same large DNA molecule. This can mitigate alignment-based artefacts especially in repetitive regions and should enable better prediction of SVs. However, an unbiased evaluation of this technology is not available. In this study, w…

0301 basic medicineFalse discovery rateComputer scienceArtificial Gene Amplification and ExtensionPolymerase Chain ReactionDatabase and Informatics MethodsSequencing techniques0302 clinical medicineBreast TumorsBasic Cancer ResearchMedicine and Health SciencesDNA sequencingBiology (General)EcologyHigh-Throughput Nucleotide SequencingGenomicsDNA Neoplasm3. Good healthIdentification (information)OncologyComputational Theory and MathematicsModeling and SimulationMCF-7 CellsFemaleSequence AnalysisResearch ArticleBioinformaticsQH301-705.5Breast NeoplasmsGenomicsComputational biologyResearch and Analysis MethodsHuman Genomics03 medical and health sciencesCellular and Molecular NeuroscienceCancer GenomicsGenomic MedicineBreast CancerGeneticsDNA Barcoding TaxonomicHumansMolecular Biology TechniquesMolecular BiologyEcology Evolution Behavior and SystematicsWhole genome sequencingLinkage (software)Whole Genome SequencingGenome HumanDideoxy DNA sequencingGenetic Diseases InbornCancers and NeoplasmsBiology and Life SciencesComputational BiologyStatistical modelSequence Analysis DNARepetitive RegionsLogistic Models030104 developmental biologyGenomic Structural VariationHuman genomeSequence Alignment030217 neurology & neurosurgeryPLoS Computational Biology
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Association of Long Non-Coding RNA Polymorphisms with Gastric Cancer and Atrophic Gastritis

2020

Long non-coding RNAs (lncRNA) play an important role in the carcinogenesis of various tumours, including gastric cancer. This study aimed to assess the associations of lncRNA ANRIL, H19, MALAT1, MEG3, HOTAIR single-nucleotide polymorphisms (SNPs) with gastric cancer and atrophic gastritis. SNPs were analyzed in 613 gastric cancer patients, 118 patients with atrophic gastritis and 476 controls from three tertiary centers in Germany, Lithuania and Latvia. Genomic DNA was extracted from peripheral blood leukocytes. SNPs were genotyped by the real-time polymerase chain reaction. Results showed that carriers of MALAT1 rs3200401 CT genotype had the significantly higher odds of atrophic gastritis …

0301 basic medicineGastritis AtrophicMalemedicine.medical_specialtylcsh:QH426-470GenotypeAtrophic gastritisSingle-nucleotide polymorphismmedicine.disease_causeGastroenterologyPolymorphism Single NucleotideArticleTertiary Care Centers03 medical and health sciences0302 clinical medicineGene FrequencyStomach NeoplasmsInternal medicineGermanyatrophic gastritisGenotypeGeneticsmedicineOdds RatioHumansGenetic Predisposition to DiseaseRNA NeoplasmGenetics (clinical)AllelesAgedMALAT1long non-coding RNAbusiness.industrylong non-coding RNA ; single-nucleotide polymorphism ; gastric cancer ; atrophic gastritisgastric cancerCancerHOTAIRMiddle Agedsingle-nucleotide polymorphismmedicine.diseaseLong non-coding RNAlcsh:Genetics030104 developmental biology030220 oncology & carcinogenesisFemaleRNA Long NoncodingCarcinogenesisbusinessGenes
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Measuring the clustering effect of BWT via RLE

2017

Abstract The Burrows–Wheeler Transform (BWT) is a reversible transformation on which are based several text compressors and many other tools used in Bioinformatics and Computational Biology. The BWT is not actually a compressor, but a transformation that performs a context-dependent permutation of the letters of the input text that often create runs of equal letters (clusters) longer than the ones in the original text, usually referred to as the “clustering effect” of BWT. In particular, from a combinatorial point of view, great attention has been given to the case in which the BWT produces the fewest number of clusters (cf. [5] , [16] , [21] , [23] ). In this paper we are concerned about t…

0301 basic medicineGeneral Computer SciencePermutationComputer Science (all)Binary number0102 computer and information sciencesQuantitative Biology::Genomics01 natural sciencesUpper and lower boundsTheoretical Computer ScienceCombinatorics03 medical and health sciencesPermutation030104 developmental biologyTransformation (function)BWT010201 computation theory & mathematicsRun-length encodingComputer Science::Data Structures and AlgorithmsCluster analysisPrimitive root modulo nBWT; Permutation; Run-length encoding; Theoretical Computer Science; Computer Science (all)Word (computer architecture)Run-length encodingMathematics
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From “Cellular” RNA to “Smart” RNA: Multiple Roles of RNA in Genome Stability and Beyond

2018

Coding for proteins has been considered the main function of RNA since the "central dogma" of biology was proposed. The discovery of noncoding transcripts shed light on additional roles of RNA, ranging from the support of polypeptide synthesis, to the assembly of subnuclear structures, to gene expression modulation. Cellular RNA has therefore been recognized as a central player in often unanticipated biological processes, including genomic stability. This ever-expanding list of functions inspired us to think of RNA as a "smart" phone, which has replaced the older obsolete "cellular" phone. In this review, we summarize the last two decades of advances in research on the interface between RNA…

0301 basic medicineGenome instabilityRegulation of gene expressionRNA UntranslatedTranscription GeneticChemistryRNA-Binding ProteinsRNARNA-binding proteinGeneral ChemistryComputational biologyNon-coding RNAArticleGenomic Instability03 medical and health sciences030104 developmental biologyGene Expression RegulationTranscription (biology)RNA interferenceGene expressionHumans570 Life sciences; biologyDNA Breaks Double-StrandedRNA InterferenceDNA Damage
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Conserved Organisation of 45S rDNA Sites and rDNA Gene Copy Number among Major Clades of Early Land Plants

2016

Genes encoding ribosomal RNA (rDNA) are universal key constituents of eukaryotic genomes, and the nuclear genome harbours hundreds to several thousand copies of each species. Knowledge about the number of rDNA loci and gene copy number provides information for comparative studies of organismal and molecular evolution at various phylogenetic levels. With the exception of seed plants, the range of 45S rDNA locus (encoding 18S, 5.8S and 26S rRNA) and gene copy number variation within key evolutionary plant groups is largely unknown. This is especially true for the three earliest land plant lineages Marchantiophyta (liverworts), Bryophyta (mosses), and Anthocerotophyta (hornworts). In this work…

0301 basic medicineHepatophytaArabidopsisGene Dosagelcsh:MedicinePlant ScienceBryologyPlant GeneticsBiochemistryPlant GenomicsCopy-number variationlcsh:ScienceNonvascular PlantsFlowering PlantsConserved SequenceIn Situ Hybridization FluorescencePhylogenyGeneticsMultidisciplinaryPhylogenetic treeChromosome BiologyGenomicsPlantsNucleic acidsRibosomal RNARNA PlantCytogenetic AnalysisMarchantiophytaResearch ArticleBiotechnologyCell biologyNuclear geneCellular structures and organellesDNA PlantPseudogeneLocus (genetics)AnthocerotophytaBryophytaBiologyGenes PlantReal-Time Polymerase Chain ReactionDNA RibosomalChromosomesChromosomes PlantEvolution Molecular03 medical and health sciencesSpecies SpecificityGeneticsMossesNon-coding RNARibosomal DNAlcsh:ROrganismsBiology and Life Sciences030104 developmental biologyGenetic LociRNA RibosomalRNAEmbryophytalcsh:QBryophytePlant BiotechnologyRibosomesPLoS ONE
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Obstacles and opportunities in the functional analysis of extracellular vesicle RNA - an ISEV position paper

2017

The release of RNA-containing extracellular vesicles (EV) into the extracellular milieu has been demonstrated in a multitude of different in vitro cell systems and in a variety of body fluids. RNA-containing EV are in the limelight for their capacity to communicate genetically encoded messages to other cells, their suitability as candidate biomarkers for diseases, and their use as therapeutic agents. Although EV-RNA has attracted enormous interest from basic researchers, clinicians, and industry, we currently have limited knowledge on which mechanisms drive and regulate RNA incorporation into EV and on how RNA-encoded messages affect signalling processes in EV-targeted cells. Moreover, EV-R…

0301 basic medicineHistologymedia_common.quotation_subjectmRNAnon-coding RNAexosomesBiologyExosomesArticle03 medical and health sciencesQuantificationSettore BIO/10 - BiochimicaJournal ArticleMRNAexosomeOriginal Research Articleddc:610Functionlcsh:QH573-671Function (engineering)Non-coding RNAmedia_commonfunctionlcsh:CytologySortingRNAExtracellular vesicleCell BiologyExtracellular vesiclesNon-coding RNAData scienceRNA binding proteinquantificationExtracellular vesicles; RNA binding proteins; exosomes; function; mRNA; non-coding RNA; quantification; sortingCell biologyVariety (cybernetics)030104 developmental biologySignallingPosition paperRNA binding proteinsExtracellular vesicleExtracellular vesicles; Exosomes; Non-coding RNA; mRNA; Function; Sorting; RNA binding proteins; QuantificationFunctional analysis (psychology)sortingJournal of Extracellular Vesicles
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Role of Microbiota-Derived Extracellular Vesicles in Gut-Brain Communication

2021

Human intestinal microbiota comprise of a dynamic population of bacterial species and other microorganisms with the capacity to interact with the rest of the organism and strongly influence the host during homeostasis and disease. Commensal and pathogenic bacteria coexist in homeostasis with the intestinal epithelium and the gastrointestinal tract’s immune system, or GALT (gut-associated lymphoid tissue), of the host. However, a disruption to this homeostasis or dysbiosis by different factors (e.g., stress, diet, use of antibiotics, age, inflammatory processes) can cause brain dysfunction given the communication between the gut and brain. Recently, extracellular vesicles (EVs) derived from …

0301 basic medicineLipopolysaccharideQH301-705.5brainReviewBiologymedicine.disease_causeCatalysisInorganic ChemistryNeuroblastoma03 medical and health scienceschemistry.chemical_compound0302 clinical medicineImmune systemmedicinemicrobiotaAnimalsHumansPhysical and Theoretical ChemistryBiology (General)ReceptorbacteriaMolecular BiologyQD1-999SpectroscopyGastrointestinal tractneuropathologyOrganic ChemistryPathogenic bacteriaGeneral Medicinemedicine.diseaseIntestinal epitheliumComputer Science ApplicationsCell biologyChemistry030104 developmental biologychemistryRNA Long Noncodingextracellular vesiclesDysbiosis030217 neurology & neurosurgeryHomeostasisInternational Journal of Molecular Sciences
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Exosomes: Nanocarriers of Biological Messages

2017

Cell-cell communication is crucial to maintain homeostasis in multicellular organism. Cells communicate each other by direct contact or by releasing factors that, soluble or packaged in membrane vesicles, can reach different regions of the organism. To date numerous studies highlighted the existence of several types of extracellular vesicles that, differing for dimension, origin and contents, play a role in physiological and/or pathological processes. Among extracellular vesicles, exosomes are emerging as efficient players to modulate target cells phenotype and as new non-invasive diagnostic and prognostic tools in multiple diseases. They, in fact, strictly reflect the type and functional s…

0301 basic medicineLong non coding RNACellExosomes contentDNABiologyPhenotypeMicrovesiclesLong non-coding RNACell biology03 medical and health sciencesMulticellular organism030104 developmental biologymedicine.anatomical_structureProteomic profile of exosomemicroRNAmedicineNanocarriersOrganismmiRNA
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