Search results for "Heat-shock response"

showing 10 items of 37 documents

High levels of the molecular chaperone Mdg1/ERdj4 reflect the activation state of endothelial cells

2003

Mdg1/ERdj4, a mammalian chaperone that belongs to the HSP40 protein family, has been reported to be located in the endoplasmic reticulum (ER), is induced by ER stress, and protects ER stressed cells from apoptosis. Here we show that under normal physiological conditions, Mdg1/ERdj4 is expressed at various levels in the vasculature due to different activation states of the endothelium. To elucidate the stimuli that induce ER stress and thus upregulate Mdg1/ERdj4, we investigated the effect of several endothelium specific stressors on its expression. Mdg1/ERdj4 mRNA is induced by activated macrophages, by nitric oxide (NO) and heat shock, and during terminal cell differentiation, whereas shea…

EndotheliumCell SurvivalCellular differentiationApoptosisCell CommunicationEndoplasmic ReticulumNitric OxideMiceStress PhysiologicalmedicineAnimalsHumansRNA MessengerHeat shockEndoplasmic Reticulum Chaperone BiPbiologyMacrophagesEndoplasmic reticulumMembrane ProteinsProteinsCell BiologyHSP40 Heat-Shock ProteinsCoculture TechniquesUp-RegulationHsp70Cell biologyProtein Transportmedicine.anatomical_structureApoptosisChaperone (protein)biology.proteinUnfolded protein responseEndothelium VascularStress MechanicalCarrier ProteinsCell NucleolusHeat-Shock ResponseHeLa CellsMolecular ChaperonesExperimental Cell Research
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In Candida parapsilosis the ATC1 Gene Encodes for an Acid Trehalase Involved in Trehalose Hydrolysis, Stress Resistance and Virulence

2014

An ORF named CPAR2-208980 on contig 005809 was identified by screening a Candida parapsilosis genome data base. Its 67% identity with the acid trehalase sequence from C. albicans (ATC1) led us to designate it CpATC1. Homozygous mutants that lack acid trehalase activity were constructed by gene disruption at the two CpATC1 chromosomal alleles. Phenotypic characterization showed that atc1Δ null cells were unable to grow on exogenous trehalose as carbon source, and also displayed higher resistance to environmental challenges, such as saline exposure (1.2 M NaCl), heat shock (42°C) and both mild and severe oxidative stress (5 and 50 mM H2O2). Significant amounts of intracellular trehalose were …

Fungal PhysiologyMutantGlycobiologyTrehalase activitylcsh:MedicineMicrobiologiaPathogenesisPathology and Laboratory MedicineCandida parapsilosisBiochemistrychemistry.chemical_compoundNucleic AcidsMicrobial PhysiologyMedicine and Health SciencesTrehalaseTrehalaselcsh:ScienceFungal BiochemistryCandida albicansCandidaMultidisciplinaryVirulencebiologyOrganic CompoundsSalt ToleranceCatalaseEnzymesChemistryPhysical SciencesResearch ArticleGenes FungalMolecular Sequence DataCarbohydratesMycologyMicrobiologyMicrobiologyFungal ProteinsAmino Acid SequenceHeat shockGlycoproteinslcsh:ROrganismsFungiChemical CompoundsWild typeTrehaloseBiology and Life Sciencesbiology.organism_classificationTrehaloseYeastOxidative StressMetabolismchemistryProteolysisEnzymologylcsh:QHeat-Shock ResponsePLoS ONE
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Stress-controlled transcription factors, stress-induced genes and stress tolerance in budding yeast.

2000

The transcriptional response to environmental changes is a major topic in both basic and applied research. From a basic point of view, to understand this response includes unravelling how the stress signal is sensed and transduced to the nucleus, to identify which genes are induced under each stress condition and, finally, to establish the phenotypic consequences of this induction in stress tolerance. The possibility of using genetic approaches has made the yeast Saccharomyces cerevisiae a compelling model to study stress response at a molecular level. Moreover, this information can be used to isolate and characterise stress-related proteins in higher eukaryotes and to design strategies to …

GeneticsbiologySaccharomyces cerevisiaeGenes FungalTrehaloseSaccharomyces cerevisiaebiology.organism_classificationMicrobiologyPhenotypeYeastCell biologyOxidative StressInfectious DiseasesOsmotic PressureHeat shock proteinHeat shockSignal transductionGeneTranscription factorHeat-Shock ProteinsHeat-Shock ResponseSignal TransductionTranscription FactorsFEMS microbiology reviews
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Effects of heat and cold on health, with special reference to Finnish sauna bathing.

2018

Environmental stress such as extremely warm or cold temperature is often considered a challenge to human health and body homeostasis. However, the human body can adapt relatively well to heat and cold environments, and recent studies have also elucidated that particularly heat stress might be even highly beneficial for human health. Consequently, the aim of the present brief review is first to discuss general cardiovascular and other responses to acute heat stress, followed by a review of beneficial effects of Finnish sauna bathing on general and cardiovascular health and mortality as well as dementia and Alzheimer's disease risk. Plausible mechanisms included are improved endothelial and …

Hot TemperatureBathingPhysiologyHealth Status030204 cardiovascular system & hematologyEnvironmental stressHot TemperatureSteam BathCardiovascular Physiological Phenomena03 medical and health sciencesHuman health0302 clinical medicinePhysiology (medical)Environmental healthMedicineAnimalsHumansbusiness.industryCold-Shock ResponseHemodynamicsarchitecture.styleAdaptation PhysiologicalCold shock responseCold TemperaturearchitectureFinnish Saunabusiness030217 neurology & neurosurgeryHeat-Shock ResponseBody Temperature RegulationAmerican journal of physiology. Regulatory, integrative and comparative physiology
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Mild Heat Stress Enhances Angiogenesis in a Co-culture System Consisting of Primary Human Osteoblasts and Outgrowth Endothelial Cells

2013

The repair and regeneration of large bone defects, including the formation of functional vasculature, represents a highly challenging task for tissue engineering and regenerative medicine. Recent studies have shown that vascularization and ossification can be stimulated by mild heat stress (MHS), which would offer the option to enhance the bone regeneration process by relatively simple means. However, the mechanisms of MHS-enhanced angiogenesis and osteogenesis, as well as potential risks for the treated cells are unclear. We have investigated the direct effect of MHS on angiogenesis and osteogenesis in a co-culture system of human outgrowth endothelial cells (OECs) and primary osteoblasts …

Hot TemperatureCell SurvivalAngiogenesisCellular differentiationBiomedical EngineeringNeovascularization PhysiologicMedicine (miscellaneous)ApoptosisBioengineeringBiologyRegenerative medicineArticleTissue engineeringOsteogenesisHeat shock proteinHumansRNA MessengerHeat shockBone regenerationCells CulturedCaspase 7OsteoblastsCaspase 3Regeneration (biology)Endothelial CellsCell DifferentiationCoculture TechniquesCapillariesUp-RegulationCell biologyImmunologyHeat-Shock ResponseTissue Engineering Part C: Methods
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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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Sponge Bcl-2 homologous protein (BHP2-GC) confers distinct stress resistance to human HEK-293 cells

2001

It is established that sponges, the phylogenetically oldest still extant phylum of Metazoa, possess key molecules of the apoptotic pathways, that is members from the Bcl-2 family and a pro-apoptotic molecule with death domains. Here we report on transfection studies of human cells with a sponge gene, GCBHP2. Sponge tissue was exposed to heat shock and tributyltin, which caused an upregulation of gene expression of GCBHP2. The cDNA GCBHP2 was introduced into human HEK-293 cells and mouse NIH-3T3 cells; the stable transfection was confirmed by the identification of the transcripts, by Western blotting as well as by immunofluorescence using antibodies raised against the recombinant polypeptide…

Hot Temperatureanimal structuresCell SurvivalvirusesMolecular Sequence DataDrug ResistanceApoptosisAntibodiesCell LineMiceComplementary DNAGene expressionAnimalsHumansAmino Acid SequenceRNA MessengerCloning MolecularMolecular BiologyPhylogenySequence Homology Amino AcidbiologyCaspase 3ChemistryfungiHEK 293 cellsCell BiologyTransfectionbiology.organism_classificationMolecular biologyPoriferaProtein Structure TertiaryUp-RegulationEnzyme ActivationBlotSpongeProto-Oncogene Proteins c-bcl-2Cell cultureCaspasesembryonic structuresbiology.proteinTrialkyltin CompoundsAntibodySequence AlignmentHeat-Shock ResponseCell Death & Differentiation
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Rapid inactivation and proteasome-mediated degradation of OGG1 contribute to the synergistic effect of hyperthermia on genotoxic treatments

2013

Inhibition of DNA repair has been proposed as a mechanism underlying heat-induced sensitization of tumour cells to some anticancer treatments. Base excision repair (BER) constitutes the main pathway for the repair of DNA lesions induced by oxidizing or alkylating agents. Here, we report that mild hyperthermia, without toxic consequences per se, affects cellular DNA glycosylase activities, thus impairing BER. Exposure of cells to mild hyperthermia leads to a rapid and selective inactivation of OGG1 (8-oxoguanine DNA glycosylase) associated with the relocalisation of the protein into a detergent-resistant cellular fraction. Following its inactivation, OGG1 is ubiquitinated and directed to pro…

HyperthermiaProteasome Endopeptidase ComplexPyrrolidinesDNA RepairDNA repairUbiquitin-Protein Ligases[SDV.BC.BC]Life Sciences [q-bio]/Cellular Biology/Subcellular Processes [q-bio.SC]BiochemistryDNA Glycosylases03 medical and health scienceschemistry.chemical_compound0302 clinical medicineUbiquitinEnzyme StabilitymedicineHumans[SDV.BBM.BC]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biochemistry [q-bio.BM]Molecular BiologyComputingMilieux_MISCELLANEOUSCell Proliferation030304 developmental biologyCell Nucleus0303 health sciencesPhotosensitizing AgentsbiologyCell growthUbiquitinationCell BiologyBase excision repairmedicine.diseaseMolecular biology[SDV.BBM.BC]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biomolecules [q-bio.BM]Protein TransportProteasomechemistryDNA glycosylase030220 oncology & carcinogenesisProteolysisCancer researchbiology.proteinHeat-Shock ResponseQuinolizinesDNADNA DamageHeLa Cells
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Heat shock response in yeast involver changes in both transcription rates and mRNA stabilities

2011

We have analyzed the heat stress response in the yeast Saccharomyces cerevisiae by determining mRNA levels and transcription rates for the whole transcriptome after a shift from 25uC to 37uC. Using an established mathematical algorithm, theoretical mRNA decay rates have also been calculated from the experimental data. We have verified the mathematical predictions for selected genes by determining their mRNA decay rates at different times during heat stress response using the regulatable tetO promoter. This study indicates that the yeast response to heat shock is not only due to changes in transcription rates, but also to changes in the mRNA stabilities. mRNA stability is affected in 62% of …

Llevat de cervesaTranscription GeneticEstrès oxidatiuRNA StabilitySaccharomyces cerevisiaeGene Expressionlcsh:MedicineYeast and Fungal ModelsRNA-binding proteinSaccharomyces cerevisiaeModels BiologicalGenètica molecularModel OrganismsTranscripció genèticaGenome Analysis ToolsTranscription (biology)Gene Expression Regulation FungalYeastsHeat shock proteinMolecular Cell BiologyGeneticsCluster AnalysisRNA MessengerHeat shocklcsh:ScienceBiologyGeneTranscription factorHeat-Shock ProteinsMultidisciplinaryBase SequenceOrganisms Genetically ModifiedbiologySystems Biologylcsh:RRNA FungalLlevats -- GenèticaGenomicsbiology.organism_classificationMolecular biologyFunctional GenomicsCell biologyRegulonRNAlcsh:QGenome Expression AnalysisHeat-Shock ResponseResearch ArticleTranscription Factors
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Independent and interactive effects of thermal stress and mental fatigue on manual dexterity

2020

Many occupations and sports require high levels of manual dexterity under thermal stress and mental fatigue. Yet, multistressor studies remain scarce. We quantified the interactive effects of thermal stress and mental fatigue on manual dexterity. Seven males (21.1 ± 1.3 yr) underwent six separate 60-min trials characterized by a combination of three air temperatures (hot, 37°C; neutral, 21°C; cold, 7°C) and two mental fatigue states (MF, mental fatigue induced by a 35-min cognitive battery; no-MF, no mental fatigue). Participants performed complex (O’Connor test) and simple (hand-tool test) manual tasks pre- and posttrial to determine stressor-induced performance changes. We monitored part…

Malemedicine.medical_specialtyHot TemperatureTime FactorsPhysiologyMental fatigue03 medical and health sciencesYoung Adult0302 clinical medicinePhysical medicine and rehabilitationPhysiology (medical)Physical functional performanceTask Performance and AnalysismedicineReaction TimeHumansSingle-Blind MethodCold-Shock Response030229 sport sciencesHandMental FatigueCold TemperatureInteractive effectsMotor SkillsPsychology030217 neurology & neurosurgeryHeat-Shock Response
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