Search results for "Ribosomal protein"

showing 10 items of 36 documents

Analysis of a spatial orientation memory in Drosophila.

2008

Flexible goal-driven orientation requires that the position of a target be stored, especially in case the target moves out of sight. The capability to retain, recall and integrate such positional information into guiding behaviour has been summarized under the term spatial working memory. This kind of memory contains specific details of the presence that are not necessarily part of a long-term memory. Neurophysiological studies in primates indicate that sustained activity of neurons encodes the sensory information even though the object is no longer present. Furthermore they suggest that dopamine transmits the respective input to the prefrontal cortex, and simultaneous suppression by GABA s…

NeuronsMultidisciplinaryRecallfungiModels NeurologicalSensory systemBiologybiology.organism_classificationSpatial memoryRibosomal Protein S6 Kinases 90-kDaDrosophila melanogasterOrientation (mental)MemoryDrosophilidaeOrientationSpace PerceptionPremovement neuronal activityGABAergicAnimalsPrefrontal cortexNeuroscienceLocomotiongamma-Aminobutyric AcidSignal TransductionNature
researchProduct

Nonsense-mediated mRNA decay controls the changes in yeast ribosomal protein pre-mRNAs levels upon osmotic stress.

2013

The expression of ribosomal protein (RP) genes requires a substantial part of cellular transcription, processing and translation resources. Thus, the RP expression must be tightly regulated in response to conditions that compromise cell survival. In Saccharomyces cerevisiae cells, regulation of the RP gene expression at the transcriptional, mature mRNA stability and translational levels during the response to osmotic stress has been reported. Reprogramming global protein synthesis upon osmotic shock includes the movement of ribosomes from RP transcripts to stress-induced mRNAs. Using tiling arrays, we show that osmotic stress yields a drop in the levels of RP pre-mRNAs in S. cerevisiae cell…

OsmosisTranscription GeneticNonsense-mediated decaylcsh:MedicineYeast and Fungal ModelsMolecular cell biologyGene Expression Regulation FungalGene expressionProtein biosynthesisRNA PrecursorsRNA Processing Post-Transcriptionallcsh:ScienceOligonucleotide Array Sequence AnalysisCellular Stress ResponsesRegulation of gene expressionMultidisciplinarybiologyProtein translationExonsGenomicsCell biologyFunctional GenomicsMitogen-activated protein kinaseResearch ArticleRibosomal ProteinsSaccharomyces cerevisiae ProteinsOsmotic shockEstrès oxidatiuSaccharomyces cerevisiaeGenes FungalDNA transcriptionSaccharomyces cerevisiaeModels BiologicalGenètica molecularSaccharomycesModel OrganismsRibosomal proteinStress PhysiologicalBiologylcsh:RRNA stabilitybiology.organism_classificationMolecular biologyIntronsNonsense Mediated mRNA DecayKineticsRNA processingbiology.proteinlcsh:QGene expressionGenome Expression AnalysisProteïnesPloS one
researchProduct

Promoter architecture and transcriptional regulation of Abf1-dependent ribosomal protein genes inSaccharomyces cerevisiae

2016

In Saccharomyces cerevisiae, ribosomal protein gene (RPG) promoters display binding sites for either Rap1 or Abf1 transcription factors. Unlike Rap1-associated promoters, the small cohort of Abf1-dependent RPGs (Abf1-RPGs) has not been extensively investigated. We show that RPL3, RPL4B, RPP1A, RPS22B and RPS28A/B share a common promoter architecture, with an Abf1 site upstream of a conserved element matching the sequence recognized by Fhl1, a transcription factor which together with Ifh1 orchestrates Rap1-associated RPG regulation. Abf1 and Fhl1 promoter association was confirmed by ChIP and/or gel retardation assays. Mutational analysis revealed a more severe requirement of Abf1 than Fhl1 …

Ribosomal Proteins0301 basic medicineSaccharomyces cerevisiae ProteinsTranscription GeneticTelomere-Binding ProteinsRibosome biogenesisSaccharomyces cerevisiaeMechanistic Target of Rapamycin Complex 1Biology03 medical and health sciencesRibosomal proteinTranscription (biology)Gene Expression Regulation FungalGeneticsTranscriptional regulationBinding sitePromoter Regions GeneticTranscription factorGeneGeneticsBinding SitesTOR Serine-Threonine KinasesGene regulation Chromatin and EpigeneticsForkhead Transcription FactorsPromoterDNA-Binding Proteins030104 developmental biologyMultiprotein ComplexesTrans-ActivatorsTranscription FactorsNucleic Acids Research
researchProduct

Support for the monophyletic origin of Gnathifera from phylogenomics

2009

The monophyletic origin of Spiralia within the metazoan tree of life is supported by many large-scale phylogenomic data. While there is now substantial molecular evidence for Lophotrochozoa being a monophyletic taxon within Spiralia, the phylogenetic affiliations of many other spiralian phyla remain unclear. Here we focus on the question of a monophyletic taxon Gnathifera, which was originally characterized by jaw morphology as comprising the taxa Rotifera, Acanthocephala and Gnathostomulida. Based on a large-scale molecular sequence dataset of 11,146 amino acid residues, we reconstructed phylogenetic trees of spiralian phyla using maximum-likelihood and Bayesian approaches. We obtain the f…

Ribosomal ProteinsParaphylyLikelihood FunctionsModels GeneticbiologyRotiferaLophotrochozoaZoologyBayes TheoremGenomicsbiology.organism_classificationEvolution MolecularMonophylyTaxonSequence Analysis ProteinPhylogenomicsGeneticsGnathiferaAnimalsSpiraliaCladeSequence AlignmentMolecular BiologyPhylogenyEcology Evolution Behavior and SystematicsMolecular Phylogenetics and Evolution
researchProduct

Proteostasis Deregulation in Neurodegeneration and Its Link with Stress Granules: Focus on the Scaffold and Ribosomal Protein RACK1.

2022

The role of protein misfolding, deposition, and clearance has been the dominant topic in the last decades of investigation in the field of neurodegeneration. The impairment of protein synthesis, along with RNA metabolism and RNA granules, however, are significantly emerging as novel potential targets for the comprehension of the molecular events leading to neuronal deficits. Indeed, defects in ribosome activity, ribosome stalling, and PQC—all ribosome-related processes required for proteostasis regulation—can contribute to triggering stress conditions and promoting the formation of stress granules (SGs) that could evolve in the formation of pathological granules, usually occurring during ne…

Ribosomal ProteinsRACK1neurodegenerationtranslationGeneral MedicineCytoplasmic GranulesReceptors for Activated C KinaseStress GranulesNeoplasm ProteinsSettore BIO/10 - BiochimicaFrontotemporal DementiaProteostasisRNAHumansCells
researchProduct

Evolutionary implications of intron-exon distribution and the properties and sequences of the RPL10A gene in eukaryotes.

2013

The RPL10A gene encodes the RPL10 protein, required for joining 40S and 60S subunits into a functional 80S ribosome. This highly conserved gene, ubiquitous across all eukaryotic super-groups, is characterized by a variable number of spliceosomal introns, present in most organisms. These properties facilitate the recognition of orthologs among distant taxa and thus comparative studies of sequences as well as the distribution and properties of introns in taxonomically distant groups of eukaryotes. The present study examined the multiple ways in which RPL10A conservation vs. sequence changes in the gene over the course of evolution, including in exons, introns, and the encoded proteins, can be…

Ribosomal ProteinsRibosomal Protein L10Molecular Sequence DataBiologyExon shufflingEvolution MolecularExonChlorophytaGeneticsMolecular BiologyGeneEcology Evolution Behavior and SystematicsConserved SequenceDNA PrimersGeneticsBase CompositionLikelihood FunctionsPhylogenetic treeBase SequenceModels GeneticIntronEukaryotaGenetic VariationBayes TheoremGroup II intronExonsSequence Analysis DNAIntronsEukaryotic RibosomeSequence AlignmentGC-contentMolecular phylogenetics and evolution
researchProduct

The mRNA degradation factor Xrn1 regulates transcription elongation in parallel to Ccr4

2019

Abstract Co-transcriptional imprinting of mRNA by Rpb4 and Rpb7 subunits of RNA polymerase II (RNAPII) and by the Ccr4–Not complex conditions its post-transcriptional fate. In turn, mRNA degradation factors like Xrn1 are able to influence RNAPII-dependent transcription, making a feedback loop that contributes to mRNA homeostasis. In this work, we have used repressible yeast GAL genes to perform accurate measurements of transcription and mRNA degradation in a set of mutants. This genetic analysis uncovered a link from mRNA decay to transcription elongation. We combined this experimental approach with computational multi-agent modelling and tested different possibilities of Xrn1 and Ccr4 acti…

Ribosomal ProteinsSaccharomyces cerevisiae ProteinsRNA StabilitymRNAMutantRNA polymerase IISaccharomyces cerevisiaeBiology03 medical and health sciencesGenomic Imprinting0302 clinical medicineRibonucleasesRibosomal proteinTranscription (biology)Gene Expression Regulation FungalGeneticsGenomesGene030304 developmental biologyRegulation of gene expression0303 health sciencesMessenger RNAGene regulation Chromatin and EpigeneticsFungal geneticsCell biologyExoribonucleasesbiology.proteinRNARNA Polymerase IIGenome FungalTranscriptional Elongation Factors030217 neurology & neurosurgery
researchProduct

A Candida albicans 37 kDa polypeptide with homology to the laminin receptor is a component of the translational machinery.

1998

A cDNA encoding a 37 kDa protein was isolated from an expression library using antibodies raised against mycelial cell walls fromCandida albicans.The 37 kDa protein has over 60% sequence identity with the 37 kDa laminin-binding protein (LBP) from humans and over 80% identity with the Yst proteins ofSaccharomyces cerevisiae. TheC. albicansprotein was named CaYst1. It was found in membrane and ribosome fractions but surprisingly, was not found in cell walls. Unlike the human LBP, CaYst1p does not bind laminin. These data indicate that CaYst1p is not a cell-surface receptor for laminin as has been proposed for the human LBP. Instead, like theS. cerevisiaeYst proteins, it appears to be a riboso…

Ribosomal ProteinsSaccharomyces cerevisiae ProteinsSaccharomyces cerevisiaeBlotting WesternMolecular Sequence DataMicrobiologyFungal ProteinsReceptors LamininRibosomal proteinComplementary DNACandida albicansAnimalsHumansCandida albicansAntibodies Fungalchemistry.chemical_classificationFungal proteinbiologyBase SequenceBinding proteinMembrane Proteinsbiology.organism_classificationBlotting NorthernMolecular biologyBlotting SouthernCytoskeletal ProteinsBiochemistrychemistryMembrane proteinProtein BiosynthesisRabbitsGlycoproteinSequence AlignmentMicrobiology (Reading, England)
researchProduct

Molecular cloning of the RPS0 gene from Candida tropicalis.

2001

The Saccharomyces cerevisiae RPS0 A and B genes encode proteins essential for maturation of the 40S ribosomal subunit precursors. We have isolated a homologue of the RPS0 gene from Candida tropicalis, which we named CtRPS0. The C. tropicalisRPS0 encodes a protein of 261 amino acid residues with a predicted molecular weight of 28.65 kDa and an isoelectric point of 4.79. CtRps0p displays significant amino acid sequence homology with Rps0p from C. albicans, S. cerevisiae, Neurospora crassa, Schizosaccharomyces pombe, Pneumocystis carinii and higher organisms, such as human, mouse and rat. CtRPS0 on a high copy number vector can complement the lethal phenotype linked to the disruption of both R…

Ribosomal ProteinsSaccharomyces cerevisiaeGenes FungalMolecular Sequence DataBioengineeringSaccharomyces cerevisiaeBiologyApplied Microbiology and BiotechnologyBiochemistryNeurospora crassaCandida tropicalisFungal ProteinsRibosomal proteinGeneticsAmino Acid SequenceCloning MolecularGeneSouthern blotCandidaGeneticsBase SequenceSequence Homology Amino AcidGenetic Complementation TestNucleic acid sequencebiology.organism_classificationSchizosaccharomyces pombeProtein Processing Post-TranslationalBiotechnologyYeast (Chichester, England)
researchProduct

The complete set of ribosomal proteins from the marine sponge Suberites domuncula

2005

The siliceous marine sponge Suberites domuncula is a member of the most ancient and simplest extant phylum of multicellular animals-Porifera, which have branched off first from the common ancestor of all Metazoa. We have determined primary structures of 79 ribosomal proteins (r-proteins) from S. domuncula: 32 proteins from the small ribosomal subunit and 47 proteins from the large ribosomal subunit. Only L39 and L41 polypeptides (51 and 25 residues long in rat, respectively) are missing. The sponge S. domuncula is, after nematode Caenorhabditis elegans and insect Drosophila melanogaster the third representative of invertebrates with known amino acid sequences of all r-proteins. The comparis…

Ribosomal ProteinsSequence Homology Amino AcidbiologyPorifera; ribosome; metazoan r-proteins; SSU proteins; LSU proteins; evolutionSaccharomyces cerevisiaeGeneral Medicinebiology.organism_classificationRibosomeRatsEvolution MolecularSuberites domunculaSpongeBiochemistrySequence Analysis ProteinRibosomal proteinLarge ribosomal subunitBotanyGeneticsMelanogasterAnimalsDrosophila melanogasterSuberitesRibosomes
researchProduct