Search results for "post-transcriptional regulation"

showing 10 items of 26 documents

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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Knockout of the KH-Type Splicing Regulatory Protein Drives Glomerulonephritis in MRL-Faslpr Mice

2021

KH-type splicing regulatory protein (KSRP) is an RNA-binding protein that promotes mRNA decay and thereby negatively regulates cytokine expression at the post-transcriptional level. Systemic lupus erythematosus (SLE) is an autoimmune disease characterized by dysregulated cytokine expression causing multiple organ manifestations

MaleChemokineMice Inbred MRL lprQH301-705.5medicine.medical_treatmentLupus nephritisBiologyKidneyArticleImmune systemsystemic lupus erythematosusimmune system diseasesmedicinecytokineAnimalsCD11a AntigenRNA MessengerKSRPBiology (General)skin and connective tissue diseasesRegulation of gene expressionMice KnockoutSystemic lupus erythematosusFOXP3RNA-Binding ProteinsGlomerulonephritisGeneral Medicinemedicine.diseaseMice Inbred C57BLCytokineCancer researchbiology.proteinTrans-ActivatorsFemaleLymph NodesChemokinesBiomarkersglomerulonephritispost-transcriptional regulationCells
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Iron regulatory mechanisms in Saccharomyces cerevisiae

2020

Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox cofactor in many cellular processes. However, excess iron can damage cells since it promotes the generation of reactive oxygen species. The budding yeast Saccharomyces cerevisiae has been used as a model organism to study the adaptation of eukaryotic cells to changes in iron availability. Upon iron deficiency, yeast utilizes two transcription factors, Aft1 and Aft2, to activate the expression of a set of genes known as the iron regulon, which are implicated in iron uptake, recycling and mobilization. Moreover, Aft1 and Aft2 activate the expression of Cth2, an mRNA-binding protein that limits t…

Microbiology (medical)DNA damageSaccharomyces cerevisiaelcsh:QR1-502Saccharomyces cerevisiaeMicroorganismesyeastMicrobiologylcsh:Microbiology03 medical and health sciencesTranscriptional regulationiron deficiencyFongsiron metabolismPost-transcriptional regulationTranscription factorGene030304 developmental biology0303 health sciencesbiology030306 microbiologyChemistryPost-transcriptional regulationiron excessbiology.organism_classificationYeastCell biologyCytosolReguloniron homeostasisFerro
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Gadd45α modulates aversive learning through post‐transcriptional regulation of memory‐related mRNA s

2018

Abstract Learning is essential for survival and is controlled by complex molecular mechanisms including regulation of newly synthesized mRNAs that are required to modify synaptic functions. Despite the well‐known role of RNA‐binding proteins (RBPs) in mRNA functionality, their detailed regulation during memory consolidation is poorly understood. This study focuses on the brain function of the RBP Gadd45α (growth arrest and DNA damage‐inducible protein 45 alpha, encoded by the Gadd45a gene). Here, we find that hippocampal memory and long‐term potentiation are strongly impaired in Gadd45a‐deficient mice, a phenotype accompanied by reduced levels of memory‐related mRNAs. The majority of the Ga…

Pain ThresholdUntranslated regionRegulatorGene ExpressionCell Cycle ProteinsHippocampusBiochemistryArticlememoryMice03 medical and health sciences0302 clinical medicineGeneticsAnimalsLearningRNA MessengerMolecular BiologyPost-transcriptional regulationGrin2a030304 developmental biologyMice Knockout0303 health sciencesMessenger RNANeuronal PlasticityBehavior AnimalbiologyLong-term potentiationArticlesRNA stabilityAmygdalaRNA BiologyCell biologyGene Expression Regulationbiology.proteinGRIN2ARNA InterferenceMemory consolidationGADD45A030217 neurology & neurosurgeryGadd45aNeuroscienceEMBO reports
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Proteins participating to the post-transcriptional regulation of the mitochondrial cytochrome c oxidase subunit IV via elements located in the 3′UTR

2009

Abstract In developing rat brain cytochrome c oxidase subunit IV (COXIV) expression is also regulated at post-transcriptional level and two 3′UTR-COXIV RNA-binding factors have been identified. Here, we report the enrichment and identification of the factors from just born rat brains by affinity chromatography of biotinylated 3′UTR-COXIV RNA–protein complexes on streptavidin-conjugated paramagnetic particles. We successfully isolated two main proteins of about 86 and 42 kDa, whose sequences were highly attributable to Hsp90 and Actin. The purified proteins maintain RNA-binding ability and specificity for COXIV messenger and, interacting with the 3′UTR, then could negatively modulate mRNA tr…

Protein subunitRNA-binding proteinMitochondrionChromatography AffinityElectron Transport Complex IVMitochondrial ProteinsRats Sprague-DawleySequence Analysis ProteinSerineAnimalsCytochrome c oxidaseHSP90 Heat-Shock ProteinsPhosphorylationPost-transcriptional regulation RNA-binding proteins Mitochondria Cytochrome c oxidase COXIV 3'UTR3' Untranslated RegionsMolecular BiologyPost-transcriptional regulationMessenger RNAbiologyThree prime untranslated regionBrainRNA-Binding ProteinsTranslation (biology)Cell BiologyActinsRatsMolecular WeightAnimals NewbornGene Expression RegulationBiochemistrybiology.proteinMolecular MedicineProtein BindingMitochondrion
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mRNA as a versatile tool for exogenous protein expression.

2012

Several viral and non-viral vectors have been developed for exogenous protein expression in specific cells. Conventionally, this purpose is achieved through the use of recombinant DNA. But mainly due to the risks associated with permanent genetic alteration of cells, safety and ethical concerns have been raised for the use of DNA-based vectors in human clinical therapy. In the last years, synthetic messenger RNA has emerged as powerful tool to deliver genetic information. RNA vectors exhibit several advantages compared to DNA and are particularly interesting for applications that require transient gene expression. RNA stability and translation efficiency can be increased by cis-acting struc…

RNA StabilityGenetic VectorsGene ExpressionComputational biologyBiologySmall hairpin RNADrug DiscoveryGene expressionGeneticsAnimalsHumansVector (molecular biology)RNA MessengerMolecular BiologyPost-transcriptional regulationGenetics (clinical)GeneticsMessenger RNAGene Transfer TechniquesRNAGenetic TherapyImmunity InnateRNA silencingRegulatory sequenceMolecular MedicineProtein Processing Post-TranslationalCurrent gene therapy
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The polypyrimidine tract-binding protein (PTB) is involved in the post-transcriptional regulation of human inducible nitric oxide synthase expression.

2006

Human inducible nitric oxide synthase (iNOS) expression is regulated by transcriptional and post-transcriptional mechanisms. We have recently shown that the multifunctional RNA-binding proteins KH-type splicing regulatory protein and tristetraprolin are critically involved in the post-transcriptional regulation of human iNOS expression. Several reports have shown that KH-type splicing regulatory protein colocalizes with the polypyrimidine tract-binding protein (PTB), and both RNA-binding proteins seem to interact with the same mRNAs. Therefore we analyzed the involvement of PTB in human iNOS expression. In human DLD-1 cells, cytokine incubation necessary to induce iNOS expression did not ch…

Recombinant Fusion ProteinsTristetraprolinGreen Fluorescent ProteinsNitric Oxide Synthase Type IImacromolecular substancesBiologyIn Vitro TechniquesTransfectionenvironment and public healthBiochemistryGene Expression Regulation EnzymologicCell LineCell Line TumorHumansPolypyrimidine tract-binding proteinRNA MessengerEnzyme InhibitorsPromoter Regions GeneticMolecular BiologyPost-transcriptional regulationRegulation of gene expressionMessenger RNAintegumentary systemCarcinomaEpithelial CellsCell BiologyTransfectionMolecular biologyNitric oxide synthaseRNA splicingColonic Neoplasmsbiology.proteinCytokinesRNA InterferenceProtein Processing Post-TranslationalDichlororibofuranosylbenzimidazolePolypyrimidine Tract-Binding ProteinThe Journal of biological chemistry
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H1° mRNA-containing complexes in rat brain cells. In: Proceedings of the Abstracts

2015

Post-transcriptional regulation of gene expression depends on RNA-binding proteins (RBPs), which are able to regulate translation, stability and subcellular localization of mRNAs [1]. RNA-protein complexes start to be built up since transcription; some proteins remain then bound to the transcript, while others behave as only transient components. In the developing nervous system of mammals, the postnatal production of the histone variants H1° and H3.3 is mainly regulated at the post-transcriptional level. Synthesis and incorporation into chromatin of the two histone proteins has been suggested to be involved in the epigenetic regulation of gene expression, both in normal brain development a…

Settore BIO/10 - BiochimicaHistone H1.0 Histone H3.3 Post-transcriptional regulation RNA-binding proteins (RBPs) rat brain maturationSettore BIO/06 - Anatomia Comparata E Citologia
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Expression and intracellular localization of H1° mRNA-containing complexes in developing rat brain and astrocytes

2015

INTRODUCTION: Post-transcriptional regulation of gene expression relies on RNA-binding proteins (RBPs), which regulate intracellular transport, stability, and translation of mRNAs [1]. We previously identified a set of proteins which interact with mRNAs encoding H1° and H3.3 histones [2-5]. All these proteins are probably part of a ribonucleoprotein particle [6]. Here we report more details on the expression and intracellular localization of some of these RBPs, during rat brain development and in isolated rat astrocytes. METHODS: Affinity chromatography was performed as already described [6]. Preparation of total lysates and cellular sub-fractions was done as reported in [3]. Possible co-lo…

Settore BIO/10 - BiochimicaPost-transcriptional regulation RNA-binding proteins (RBPs) H1° and H3.3 histones variants CSD-C2.Settore BIO/06 - Anatomia Comparata E Citologia
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Post-Transcriptional Regulation of Human Inducible Nitric-Oxide Synthase Expression by the Jun N-terminal Kinase

2007

Human inducible nitric-oxide synthase (iNOS) expression is regulated both at transcriptional and post-transcriptional levels. In the present study, the effect of Jun N-terminal kinase (JNK) on human iNOS expression was investigated. In A549/8 human alveolar epithelial cells, both the inhibition of JNK by a pharmacological inhibitor anthra[1,9-cd]pyrazol-6(2H)-one1,9-pyrazoloanthrone (SP600125) and small interfering RNA (siRNA)-mediated down-regulation of JNK led to a reduction of iNOS mRNA and protein expression. iNOS promoter activity was not affected by these treatments. Hence, JNK seems to regulate iNOS expression through post-transcriptional mechanisms by stabilizing iNOS mRNA. Our labo…

Small interfering RNARNA Stabilityp38 mitogen-activated protein kinasesDown-RegulationNitric Oxide Synthase Type IIRNA-binding proteinNitric Oxidep38 Mitogen-Activated Protein KinasesGene Expression Regulation EnzymologicCell LineTristetraprolinHumansPhosphorylationRNA Small InterferingPromoter Regions GeneticPost-transcriptional regulationAnthracenesPharmacologyRegulation of gene expressionMessenger RNAbiologyChemistryKinaseJNK Mitogen-Activated Protein KinasesEpithelial Cellsrespiratory systemMolecular biologyPulmonary AlveoliNitric oxide synthasebiology.proteinCytokinesMolecular MedicineSignal TransductionMolecular Pharmacology
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