Search results for "Dox"

showing 10 items of 1345 documents

Nuclear Factor Kappa B Signaling Complexes in Acute Inflammation.

2020

[Significance]: Nuclear factor kappa B (NF-κB) is a master regulator of the inflammatory response and represents a key regulatory node in the complex inflammatory signaling network. In addition, selective NF-κB transcriptional activity on specific target genes occurs through the control of redox-sensitive NF-κB interactions.

0301 basic medicineRedox signalingPhysiologyClinical BiochemistryRepressorCREBInteractomeBiochemistry03 medical and health sciencesCoactivatorHumansSTAT3Transcription factorMolecular BiologyGeneral Environmental ScienceInflammation030102 biochemistry & molecular biologybiologyChemistryActivator (genetics)NF-kappa BCell Biology3. Good healthCell biology030104 developmental biologyGene Expression RegulationMultiprotein ComplexesAcute DiseaseSTAT proteinbiology.proteinGeneral Earth and Planetary SciencesDisease SusceptibilitySignaling complexesCarrier ProteinsBiomarkersProtein BindingSignal TransductionAntioxidantsredox signaling
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Nutraceutical Supplementation Ameliorates Visual Function, Retinal Degeneration, and Redox Status in rd10 Mice

2021

Background: Retinitis pigmentosa (RP) is a group of inherited retinal dystrophies characterized by progressive degeneration of photoreceptor cells. Ocular redox status is altered in RP suggesting oxidative stress could contribute to their progression. In this study, we investigated the effect of a mixture of nutraceuticals with antioxidant properties (NUT) on retinal degeneration in rd10 mice, a model of RP. Methods: NUT was orally administered to rd10 mice from postnatal day (PD) 9 to PD18. At PD18 retinal function and morphology were examined by electroretinography (ERG) and histology including TUNEL assay, immunolabeling of microglia, Müller cells, and poly ADP ribose polymers. Retinal r…

0301 basic medicineRetinal degenerationgenetic structuresPhysiologyredox statusClinical BiochemistryRM1-950Pharmacologymedicine.disease_causeBiochemistryNeuroprotectionArticleAntioxidants03 medical and health scienceschemistry.chemical_compound0302 clinical medicineretinitis pigmentosaRetinitis pigmentosamedicineUlls InflamacióMolecular BiologyNutriciónutraceuticalsmedicine.diagnostic_testMicrogliaChemistryRetinalCell Biologymedicine.diseaseeye diseasesinflammation nutraceuticals redox status retinitis pigmentosa030104 developmental biologymedicine.anatomical_structureinflammationsense organsTherapeutics. Pharmacology030217 neurology & neurosurgeryOxidative stressRetinal DystrophiesElectroretinography
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Gene expression changes after parental exposure to metals in the sea urchin affect timing of genetic programme of embryo development

2021

Simple Summary Intergenerational and transgenerational effects, in which exposure to stressors in a parental generation affects the phenotype of the offspring have been connected to anthropic impacts on biological systems. Therefore, environmental stress experienced inside a generation, particularly during gametogenesis, may lead to erroneous patterns in their offspring just emerging at early developmental stages. In this scenario, the sea urchin embryo represents a suitable model for integrating analyses of gene expression through embryogenesis with developmental alteration induced by environmental stressors. Herein we provide pieces of evidence for the alteration of the gene regulatory ne…

0301 basic medicineSea urchinanimal structuresOffspringIntergenerational effectsSettore BIO/11 - Biologia Molecolare010501 environmental sciencesEmbryo development01 natural sciencesArticleGeneral Biochemistry Genetics and Molecular BiologyAndrology03 medical and health sciencesbiology.animalGene expressionParental exposureEpigeneticslcsh:QH301-705.5GeneSea urchin0105 earth and related environmental sciencesGeneral Immunology and MicrobiologybiologyEmbryogenesisEmbryoPhenotype030104 developmental biologyGene expression profileslcsh:Biology (General)embryonic structuressea urchin; redox homeostasis; parental exposure; intergenerational effects; embryo development; gene expression profilesGeneral Agricultural and Biological SciencesEmbryo development Gene expression profiles Intergenerational effects Parental exposure Redox homeostasis Sea urchinRedox homeostasis
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Extracellular vesicles and redox modulation in aging

2019

Extracellular vesicles (EVs) are nowadays known to be mediators of cell-to-cell communication involved in physiological and pathological processes. The current expectation is their use as specific biomarkers and therapeutic tools due to their inner characteristics. However, several investigations still need to be done before we can use them in the clinic. First, their categorization is still under debate, although an accurate classification of EVs subtypes should be based on physical characteristics, biochemical composition or condition description of the cell of origin. Second, EVs carry lipids, proteins and nucleic acids that can induce epigenetic modifications on target cells. These carg…

0301 basic medicineSenescenceRedox modulationCell CommunicationOxidative phosphorylationBiologymedicine.disease_causeBiochemistryExtracellular vesiclesRedox statusCell biologyExtracellular Vesicles03 medical and health sciences030104 developmental biology0302 clinical medicinePhysiology (medical)medicineProspective StudiesEpigeneticsOxidation-Reduction030217 neurology & neurosurgeryBiogenesisOxidative stressFree Radical Biology and Medicine
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Identification of microRNAS differentially regulated by water deficit in relation to mycorrhizal treatment in wheat.

2019

Arbuscular mycorrhizal fungi (AMF) are soil microrganisms that establish symbiosis with plants positively influencing their resistance to abiotic stresses. The aim of this work was to identify wheat miRNAs differentially regulated by water deficit conditions in presence or absence of AMF treatment. Small RNA libraries were constructed for both leaf and root tissues considering four conditions: control (irrigated) or water deficit in presence/absence of mycorrhizal (AMF) treatment. A total of 12 miRNAs were significantly regulated by water deficit in leaves: five in absence and seven in presence of AMF treatment. In roots, three miRNAs were water deficit-modulated in absence of mycorrhizal t…

0301 basic medicineSmall RNABiologyPlant Roots03 medical and health sciences0302 clinical medicineSymbiosisTranscription (biology)Gene Expression Regulation PlantStress PhysiologicalMycorrhizaeBotanymicroRNAGeneticsProtein biosynthesisTranscriptional regulationGene Regulatory NetworksMolecular BiologyDurum wheatWater deficitTriticummiRNAPlant ProteinsAbiotic componentGene Expression ProfilingfungiGene Expression Regulation DevelopmentalGeneral MedicineCell redox homeostasisDroughtsPlant LeavesMicroRNAs030104 developmental biologyRootRNA Plant030220 oncology & carcinogenesisWheatMolecular biology reports
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Corrigendum to “European contribution to the study of ROS: A summary of the findings and prospects for the future from the COST action BM1203 (EU-ROS…

2018

The European Cooperation in Science and Technology (COST) provides an ideal framework to establish multi-disciplinary research networks. COST Action BM1203 (EU-ROS) represents a consortium of researchers from different disciplines who are dedicated to providing new insights and tools for better understanding redox biology and medicine and, in the long run, to finding new therapeutic strategies to target dysregulated redox processes in various diseases. This report highlights the major achievements of EU-ROS as well as research updates and new perspectives arising from its members. The EU-ROS consortium comprised more than 140 active members who worked together for four years on the topics b…

0301 basic medicineSocieties ScientificRedox signalingInternational CooperationClinical BiochemistryNanotechnologyReview ArticleBiologyPublic administrationBiochemistryAntioxidantsArticle03 medical and health sciencesmedia_common.cataloged_instanceAnimalsHumansCost actionEuropean UnionEuropean unionMolecular Biologylcsh:QH301-705.5media_commonFunding AgencyRedox therapeuticslcsh:R5-920Organic ChemistryReactive nitrogen species030104 developmental biologyWork (electrical)lcsh:Biology (General)Oxidative stressReactive Oxygen Specieslcsh:Medicine (General)Oxidation-ReductionSignal TransductionRedox Biology
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2016

Urm1 is a unique dual-function member of the ubiquitin protein family and conserved from yeast to man. It acts both as a protein modifier in ubiquitin-like urmylation and as a sulfur donor for tRNA thiolation, which in concert with the Elongator pathway forms 5-methoxy-carbonyl-methyl-2-thio (mcm5s2) modified wobble uridines (U34) in anticodons. Using Saccharomyces cerevisiae as a model to study a relationship between these two functions, we examined whether cultivation temperature and sulfur supply previously implicated in the tRNA thiolation branch of the URM1 pathway also contribute to proper urmylation. Monitoring Urm1 conjugation, we found urmylation of the peroxiredoxin Ahp1 is suppre…

0301 basic medicineTRNA modificationbiologyProtein familySaccharomyces cerevisiaeCell Biologybiology.organism_classificationBiochemistry Genetics and Molecular Biology (miscellaneous)MicrobiologyApplied Microbiology and Biotechnology03 medical and health sciences030104 developmental biologyUbiquitinBiochemistryVirologyTransfer RNAGeneticsbiology.proteinParasitologySite-directed mutagenesisPeroxiredoxinMolecular BiologyProtein urmylationMicrobial Cell
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The Relationship Between Salivary Redox, Diet, and Food Flavor Perception.

2021

The mouth is the gateway for entrance of food and microorganisms into the organism. The oral cavity is bathed by saliva, which is thus the first fluid that food and microorganisms will face after their entrance. As a result, saliva plays different functions, including lubrication, predigestion, protection, detoxification, and even transport of taste compounds to chemoreceptors located in the taste buds. To ensure its function of protection, saliva contains reactive harmful compounds such as reactive oxygen species that are controlled and neutralized by the antioxidant activity of saliva. Several antioxidant molecules control the production of molecules such as reactive oxygen compounds, neu…

0301 basic medicineTasteSalivaAntioxidantantioxidantmedicine.medical_treatmentEndocrinology Diabetes and Metabolismsalivary proteinslcsh:TX341-641Reviewantioxidant capacityperceptionRedox03 medical and health sciences0302 clinical medicineIn vivoDetoxificationmedicineFood scienceFlavorNutritionchemistry.chemical_classificationReactive oxygen speciessalivaNutrition and DieteticsflavorChemistry030104 developmental biology030220 oncology & carcinogenesisredoxdietlcsh:Nutrition. Foods and food supply[SDV.AEN]Life Sciences [q-bio]/Food and NutritionFood ScienceFrontiers in nutrition
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Yeast thioredoxin reductase Trr1p controls TORC1-regulated processes

2018

The thioredoxin system plays a predominant role in the control of cellular redox status. Thioredoxin reductase fuels the system with reducing power in the form of NADPH. The TORC1 complex promotes growth and protein synthesis when nutrients, particularly amino acids, are abundant. It also represses catabolic processes, like autophagy, which are activated during starvation. We analyzed the impact of yeast cytosolic thioredoxin reductase TRR1 deletion under different environmental conditions. It shortens chronological life span and reduces growth in grape juice fermentation. TRR1 deletion has a global impact on metabolism during fermentation. As expected, it reduces oxidative stress tolerance…

0301 basic medicineThioredoxin Reductase 1Estrès oxidatiuThioredoxin reductaseScienceMicrobiologiaMechanistic Target of Rapamycin Complex 1Grape Juice FermentationArticleAntioxidants03 medical and health scienceschemistry.chemical_compoundTORC1 PathwayYeastsAmino AcidsMultidisciplinary030102 biochemistry & molecular biologyKinaseAutophagyChronological Life SpanQFungal geneticsRGlutathioneMetabolismTORC1 ComplexThioredoxin SystemYeastCell biology030104 developmental biologychemistryMedicineThioredoxinGene DeletionSignal TransductionScientific Reports
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Structural Analysis of Phosphoserine Aminotransferase (Isoform 1) From Arabidopsis thaliana– the Enzyme Involved in the Phosphorylated Pathway of Ser…

2018

Phosphoserine aminotransferase (PSAT) is a pyridoxal 5'-phosphate (PLP)-dependent enzyme that catalyzes the conversion of 3-phosphohydroxypyruvate (3-PHP) to 3-phosphoserine (PSer) in an L-glutamate (Glu)-linked reversible transamination reaction. This process proceeds through a bimolecular ping-pong mechanism and in plants takes place in plastids. It is a part of the phosphorylated pathway of serine biosynthesis, one of three routes recognized in plant organisms that yield serine. In this three-step biotransformation, 3-phosphoglycerate (3-PGA) delivered from plastidial glycolysis and Calvin cycle is oxidized by 3-PGA dehydrogenase. Then, 3-PHP is subjected to transamination with Glu to yi…

0301 basic medicineTransaminationpyridoxal 5′-phosphategeminal diaminePSATPlant Sciencelcsh:Plant cultureCofactorPLPSerine03 medical and health scienceschemistry.chemical_compoundBiosynthesisTransferaselcsh:SB1-1110Phosphoserine AminotransferaseOriginal Researchchemistry.chemical_classificationtransaminasebiologyserine metabolismPhosphoserine phosphatase030104 developmental biologychemistryBiochemistrybiology.proteinPhosphorylationFrontiers in Plant Science
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