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Resistance against Echinostoma caproni (Trematoda) secondary infections in mice is not dependent on the ileal protein production

2016

Echinostoma caproni (Trematoda: Echinostomatidae) is an intestinal trematode, which has been widely employed to investigate the factors determining the rejection of intestinal helminths. Protein production patterns of intestinal epithelial cells are related to the infection-induced changes that determine the course of E. caproni infections. Herein, we compare the protein production profiles in the ileum of four experimental groups of mice: control; infected; dewormed and reinfected. Worm burdens were significantly lower in secondary infections, confirming the generation of partial resistance to homologous secondary infections in mice. However, quantitative comparison by 2D-DIGE showed that …

0301 basic medicineSecondary infection030231 tropical medicineBiophysicsIleumBiochemistryMass SpectrometryMice03 medical and health sciences0302 clinical medicineIleumEchinostomaProtein biosynthesismedicineAnimalsHelminthsTissue homeostasisCell ProliferationDisease ResistanceEchinostomiasisCell DeathbiologyCoinfectionEpithelial Cellsbiology.organism_classificationPraziquantel030104 developmental biologymedicine.anatomical_structureProtein BiosynthesisImmunologyTrematodaEchinostomamedicine.drugJournal of Proteomics
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On the origin of BAG(3) and its consequences for an expansion of BAG3's role in protein homeostasis

2021

The B-cell CLL 2-associated athanogene (BAG) protein family in general and BAG3, in particular, are pivotal elements of cellular protein homeostasis, with BAG3 playing a major role in macroautophagy. In particular, in the contexts of senescence and degeneration, BAG3 has exhibited an essential role often related to its capabilities to organize and remove aggregated proteins. Exciting studies in different species ranging from human, murine, zebrafish, and plant samples have delivered vital insights into BAG3s' (and other BAG proteins') functions and their regulations. However, so far no studies have addressed neither BAG3's evolution nor its phylogenetic position in the BAG family.

0301 basic medicineSenescenceProteasome Endopeptidase ComplexProtein family610 MedizinBiologyProtein HomeostasisBAG3BiochemistryEvolution MolecularWW domain03 medical and health sciences0302 clinical medicineProtein Domains610 Medical sciencesAutophagyAnimalsHumansMolecular BiologyZebrafishCellular SenescencePhylogenyAdaptor Proteins Signal TransducingAutophagyFungiCell BiologyPlantsbiology.organism_classificationCell biology030104 developmental biologyProteostasis030220 oncology & carcinogenesisProteolysisProteostasisbiology.proteinApoptosis Regulatory ProteinsSignal TransductionJournal of Cellular Biochemistry
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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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Circadian Rhythm Variations and Nutrition in Children

2018

AbstractCircadian rhythms are the changes in biological processes that occur on a daily basis. Among these processes are reactions involved in metabolic homeostasis. Circadian rhythms are structured by the central clock in the suprachiasmatic nucleus of the hypothalamus via the control of melatonin expression. Circadian rhythms are also controlled by the peripheral clocks, which are intracellular mechanisms composed of the clock genes, whose expression follows a circadian pattern. Circadian rhythms are impacted by signals from the environment called zeitgebers, or time givers, which include light exposure, feeding schedule and composition, sleeping schedule and pattern, temperature, and phy…

0301 basic medicineSuprachiasmatic nucleusMetabolic homeostasisBiologyMelatoninCLOCK03 medical and health sciences030104 developmental biology0302 clinical medicineHypothalamusPediatrics Perinatology and Child HealthZeitgebermedicineSurgeryCircadian rhythmNeuroscience030217 neurology & neurosurgerymedicine.drugLight exposureJournal of Child Science
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Physiological Functions of the β-Site Amyloid Precursor Protein Cleaving Enzyme 1 and 2

2017

BACE1 was discovered as the β-secretase for initiating the cleavage of amyloid precursor protein (APP) at the β-secretase site, while its close homology BACE2 cleaves APP within the β-amyloid (Aβ) domain region and shows distinct cleavage preferences in vivo. Inhibition of BACE1 proteolytic activity has been confirmed to decrease Aβ generation and amyloid deposition, and thus specific inhibition of BACE1 by small molecules is a current focus for Alzheimer’s disease therapy. While BACE1 inhibitors are being tested in advanced clinical trials, knowledge regarding the properties and physiological functions of BACE is highly important and this review summarizes advancements in BACE1 research ov…

0301 basic medicineamyloid plaquessecretaseReviewamyloid precursor proteinBiology03 medical and health sciencesCellular and Molecular Neurosciencemental disordersAmyloid precursor proteinaspartic proteaseBACE substratesGlucose homeostasisMolecular Biologychemistry.chemical_classificationNeurogenesisBACE2P3 peptideBACE1Biochemistry of Alzheimer's disease030104 developmental biologyEnzymechemistryBiochemistrySynaptic plasticitybiology.proteinAmyloid precursor protein secretaseAlzheimer’s diseaseNeuroscienceFrontiers in Molecular Neuroscience
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Enzymatic Activity of HPGD in Treg Cells Suppresses Tconv Cells to Maintain Adipose Tissue Homeostasis and Prevent Metabolic Dysfunction.

2019

Summary Regulatory T cells (Treg cells) are important for preventing autoimmunity and maintaining tissue homeostasis, but whether Treg cells can adopt tissue- or immune-context-specific suppressive mechanisms is unclear. Here, we found that the enzyme hydroxyprostaglandin dehydrogenase (HPGD), which catabolizes prostaglandin E2 (PGE2) into the metabolite 15-keto PGE2, was highly expressed in Treg cells, particularly those in visceral adipose tissue (VAT). Nuclear receptor peroxisome proliferator-activated receptor-γ (PPARγ)-induced HPGD expression in VAT Treg cells, and consequential Treg-cell-mediated generation of 15-keto PGE2 suppressed conventional T cell activation and proliferation. C…

0301 basic medicineanalogs & derivatives [Dinoprostone]Malemetabolism [Diabetes Mellitus Type 2]Adipose tissueLymphocyte Activation15-ketoprostaglandin E2T-Lymphocytes RegulatoryJurkat cellsJurkat CellsMice0302 clinical medicineimmunology [Lymphocyte Activation]genetics [Insulin Resistance]STAT5 Transcription FactorHomeostasisImmunology and AllergyTissue homeostasisgenetics [Hydroxyprostaglandin Dehydrogenases]Mice Knockoutcytology [Intra-Abdominal Fat]enzymology [T-Lymphocytes Regulatory]FOXP3hemic and immune systems3T3 CellsCell biologyInfectious Diseases030220 oncology & carcinogenesisHydroxyprostaglandin Dehydrogenasesmedicine.symptomimmunology [T-Lymphocytes Regulatory]metabolism [STAT5 Transcription Factor]Immunologymetabolism [Dinoprostone]chemical and pharmacologic phenomenaInflammationIntra-Abdominal FatBiologyDinoprostoneCell Line03 medical and health sciencesmetabolism [Hydroxyprostaglandin Dehydrogenases]immunology [Homeostasis]medicineAnimalsHumansddc:610immunology [Intra-Abdominal Fat]HEK 293 cells030104 developmental biologyHEK293 CellsDiabetes Mellitus Type 2Cell cultureInsulin ResistanceHomeostasis
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ceRNA Network Regulation of TGF-β, WNT, FOXO, Hedgehog Pathways in the Pharynx of Ciona robusta

2021

The transforming growth factor-β (TGF-β) family of cytokines performs a multifunctional signaling, which is integrated and coordinated in a signaling network that involves other pathways, such as Wintless, Forkhead box-O (FOXO) and Hedgehog and regulates pivotal functions related to cell fate in all tissues. In the hematopoietic system, TGF-β signaling controls a wide spectrum of biological processes, from immune system homeostasis to the quiescence and self-renewal of hematopoietic stem cells (HSCs). Recently an important role in post-transcription regulation has been attributed to two type of ncRNAs: microRNAs and pseudogenes. Ciona robusta, due to its philogenetic position close to verte…

0301 basic medicineascidianpseudogenepseudogeneslcsh:ChemistryTransforming Growth Factor betaProtein Interaction MappingHomeostasisRNA-Seqlcsh:QH301-705.53' Untranslated RegionsSpectroscopyTissue homeostasisForkhead Box Protein O1Wnt signaling pathwayHigh-Throughput Nucleotide Sequencingvirus diseasesGeneral Medicinefemale genital diseases and pregnancy complicationsComputer Science ApplicationsCell biologyNGSStem cellTGF-βCell fate determinationBiologyCatalysisArticleInorganic ChemistryWNT03 medical and health sciencesmicroRNAAnimalsCell LineageHedgehog ProteinsTGF-Physical and Theoretical ChemistryMolecular BiologyHedgehogneoplasmsmiRNA030102 biochemistry & molecular biologyCompeting endogenous RNAOrganic ChemistryfungiComputational BiologyHematopoiesisWnt ProteinsMicroRNAs030104 developmental biologylcsh:Biology (General)lcsh:QD1-999Gene Expression RegulationImmune SystemPharynxFOXOCionaTransforming growth factorInternational Journal of Molecular Sciences
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Complex Destabilization in the Mitochondrial Chaperonin Hsp60 Leads to Disease.

2020

Several neurological disorders have been linked to mutations in chaperonin genes and more specifically to the HSPD1 gene. In humans, HSPD1 encodes for the mitochondrial Heat Shock Protein 60 (mtHsp60) chaperonin, which carries out essential protein refolding reactions that help maintain mitochondrial and cellular homeostasis. It functions as a macromolecular complex that provides client proteins an environment that favors proper folding in an ATP dependent manner. It has been established that mtHsp60 plays a crucial role in the proper folding of mitochondrial proteins involved in ATP producing pathways. Recently, various single-point mutations in the mtHsp60 encoding gene have been directly…

0301 basic medicinechaperoninMini ReviewCellular homeostasisBiologyBiochemistry Genetics and Molecular Biology (miscellaneous)BiochemistryGroELChaperonin03 medical and health sciences0302 clinical medicineHeat shock proteinprotein foldingmtHsp60Molecular BiosciencesMolecular Biologylcsh:QH301-705.5Point mutationGroELFKBP5 GeneCell biology030104 developmental biologylcsh:Biology (General)030220 oncology & carcinogenesisHSP60Protein foldingchaperonopathyFrontiers in molecular biosciences
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Influence of glucagon-like peptide 2 on energy homeostasis

2016

Glucagon like peptide-2 (GLP-2) is a gastrointestinal hormone released from enteroendocrine L-type cells together with glucagon like peptide-1 in response to dietary nutrients. GLP-2 acts through a specific receptor, the GLP-2 receptor, mainly located in the gut and in the brain. Classically, GLP-2 is considered a trophic hormone involved in the maintenance of intestinal epithelial morphology and function. This role has been targeted for therapies promoting repair and adaptive growth of the intestinal mucosa. Recently, GLP-2 has been shown to exert beneficial effects on glucose metabolism specially in conditions related to increased uptake of energy, such as obesity. Several actions of GLP-…

0301 basic medicineendocrine systemmedicine.medical_specialtyPhysiologyAppetiteEnteroendocrine cellBiologyCarbohydrate metabolismSettore BIO/09 - FisiologiaBiochemistryGlucagonEnergy homeostasis03 medical and health sciencesCellular and Molecular NeuroscienceEndocrinologyIntestinal mucosaFood intakeInternal medicineGlucagon-Like Peptide 2medicineAnimalsHomeostasisHumansObesitydigestive oral and skin physiologyInsulin resistanceGlucagon-like peptide-2Gastrointestinal TractGlucose030104 developmental biologyEndocrinologyGastrointestinal hormoneGastrointestinal AbsorptionL-type enteroendocrine cellEnergy IntakeEnergy MetabolismGLP-2hormones hormone substitutes and hormone antagonistsHomeostasisPeptides
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2018

OBJECTIVE The lack of pro-opiomelanocortin (POMC)-derived melanocortin peptides results in hypoadrenalism and severe obesity in both humans and rodents that is treatable with synthetic melanocortins. However, there are significant differences in POMC processing between humans and rodents, and little is known about the relative physiological importance of POMC products in the human brain. The aim of this study was to determine which POMC-derived peptides are present in the human brain, to establish their relative concentrations, and to test if their production is dynamically regulated. METHODS We analysed both fresh post-mortem human hypothalamic tissue and hypothalamic neurons derived from …

0301 basic medicineendocrine systemmedicine.medical_specialtyintegumentary systemChemistryLeptindigestive oral and skin physiologyNeuropeptideCell BiologyHuman brainEnergy homeostasis03 medical and health sciences030104 developmental biology0302 clinical medicineEndocrinologymedicine.anatomical_structureInternal medicineHypoadrenalismmedicineMelanocortinReceptorMolecular Biologyhormones hormone substitutes and hormone antagonists030217 neurology & neurosurgeryMelanocortinsMolecular Metabolism
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