Search results for "CHOLERA"

showing 10 items of 67 documents

Repair of a Bacterial Small β-Barrel Toxin Pore Depends on Channel Width

2017

ABSTRACT Membrane repair emerges as an innate defense protecting target cells against bacterial pore-forming toxins. Here, we report the first paradigm of Ca2+-dependent repair following attack by a small β-pore-forming toxin, namely, plasmid-encoded phobalysin of Photobacterium damselae subsp. damselae. In striking contrast, Vibrio cholerae cytolysin, the closest ortholog of phobalysin, subverted repair. Mutational analysis uncovered a role of channel width in toxicity and repair. Thus, the replacement of serine at phobalysin´s presumed channel narrow point with the bulkier tryptophan, the corresponding residue in Vibrio cholerae cytolysin (W318), modulated Ca2+ influx, lysosomal exocytosi…

0301 basic medicineBacterial ToxinsAerolysinmedicine.disease_causeMicrobiologySerine03 medical and health sciencesNanoporesVirologyExtracellularmedicineHumansVibrio choleraeChemistryToxinPerforinCell MembraneQR1-502Transmembrane proteinCell biology030104 developmental biologyPhotobacterium damselaeVibrio choleraeCalciumCytolysinResearch ArticlemBio
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2017

Coastal marine Vibrio cholerae populations usually exhibit high genetic diversity. To assess the genetic diversity of abundant V. cholerae non-O1/non-O139 populations in the Central European lake Neusiedler See, we performed a phylogenetic analysis based on recA, toxR, gyrB and pyrH loci sequenced for 472 strains. The strains were isolated from three ecologically different habitats in a lake that is a hot-spot of migrating birds and an important bathing water. We also analyzed 76 environmental and human V. cholerae non-O1/non-O139 isolates from Austria and other European countries and added sequences of seven genome-sequenced strains. Phylogenetic analysis showed that the lake supports a un…

0301 basic medicineGenetic diversityPhylogenetic treeEcology030106 microbiologyBiologymedicine.disease_causeMicrobiologyGenetic recombination03 medical and health sciencesMonophylyVibrio choleraePhylogeneticsGenetic variationmedicineCladeEcology Evolution Behavior and SystematicsEnvironmental Microbiology
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Behavioral fragmentation in the D1CT-7 mouse model of Tourette's syndrome.

2017

Aim The transgenic D1CT-7 mouse is one of the best-characterized animal models of Tourette's syndrome (TS), exhibiting spontaneous tic-like Head-Body Twitches (HBT) and deficits in sensorimotor gating. This study is aimed at evaluating the behavioral dynamics of these mutants and their potential relevance to TS. Methods The behavior of D1CT-7 and Wild Type littermates was firstly assessed by considering frequencies and durations. To detect recurrent real-time behavioral sequences, the multivariate T-pattern analysis was employed. Analyses of transition probabilities among behaviors further provided an overall picture of the behavioral dynamics. Results T-patterns and transition matrices rev…

0301 basic medicineGenetically modified mouseMaleCholera ToxinTransgeneTourette's syndromeMice Transgenictransition matriceBiologyMotor ActivityTourette syndromeOpen fieldStatistics Nonparametric03 medical and health sciencesMice0302 clinical medicineSniffingPhysiology (medical)medicineAnimalsPharmacology (medical)tic disorderGait Disorders NeurologicPharmacologyMice Inbred BALB CD1CT-7Behavior AnimalReceptors Dopamine D1Wild typeBehavioral patternT-pattern analysiOriginal Articlesmedicine.diseasePhenotypeDisease Models Animal030104 developmental biologyPsychiatry and Mental HealthMotor SkillsExploratory BehaviorNeuroscience030217 neurology & neurosurgeryTourette SyndromeCNS neurosciencetherapeutics
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Biofilms of Lactobacillus plantarum and Lactobacillus fermentum: Effect on stress responses, antagonistic effects on pathogen growth and immunomodula…

2016

IF 3.682; International audience; Few studies have extensively investigated probiotic functions associated with biofilms. Here, we show that strains of Lactobacillus plantarum and Lactobacillus fermentum are able to grow as biofilm on abiotic surfaces, but the biomass density differs between strains. We performed microtiter plate biofilm assays under growth conditions mimicking to the gastrointestinal environment. Osmolarity and low concentrations of bile significantly enhanced Lactobacillus spatial organization. Two L. plantarum strains were able to form biofilms under high concentrations of bile and mucus. We used the agar well-diffusion method to show that supernatants from all Lactobaci…

0301 basic medicineLimosilactobacillus fermentum[SDV]Life Sciences [q-bio][ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionProbiotic bacteriaResistanceEscherichia-coliZebrafish modelProbioticmedicine.disease_causeMonocyteslaw.inventionIn-vitroProbioticlawLactobacillusBileVibrio-choleraeZebrafishComputingMilieux_MISCELLANEOUSbiologySalmonella entericafood and beveragesInterleukin-10Salmonella entericaSulfonic-acidLactobacillus fermentum030106 microbiologyLactic-acid bacteriaMicrobiologyMicrobiologyImmunomodulation03 medical and health sciencesAntibiosisEscherichia coliPseudomonas-aeruginosa biofilmsmedicineAnimalsHumansEscherichia coliImmunomodulatory effectsTumor Necrosis Factor-alphaProbioticsBile-salt hydrolaseCommunitiesAntibiosisBiofilmbiochemical phenomena metabolism and nutritionbiology.organism_classificationImmunity InnateCulture MediaLactobacillus biofilmsMucus030104 developmental biologyBiofilms[SDV.AEN]Life Sciences [q-bio]/Food and NutritionLactobacillus plantarumLactobacillus plantarumFood ScienceFood Microbiology
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Wild eel microbiome reveals that skin mucus of fish could be a natural niche for aquatic mucosal pathogen evolution

2017

Background Fish skin mucosal surfaces (SMS) are quite similar in composition and function to some mammalian MS and, in consequence, could constitute an adequate niche for the evolution of mucosal aquatic pathogens in natural environments. We aimed to test this hypothesis by searching for metagenomic and genomic evidences in the SMS-microbiome of a model fish species (Anguilla Anguilla or eel), from different ecosystems (four natural environments of different water salinity and one eel farm) as well as the water microbiome (W-microbiome) surrounding the host. Results Remarkably, potentially pathogenic Vibrio monopolized wild eel SMS-microbiome from natural ecosystems, Vibrio anguillarum/Vibr…

0301 basic medicineMicrobiology (medical)DNA BacterialVibrio anguillarumGenomic IslandsZoologyAnimals WildVibrio vulnificusmedicine.disease_causeMicrobiologylcsh:Microbial ecologyEvolution Molecular03 medical and health sciencesMicrobial ecologymedicineAnimalsHumansMicrobiomeVibrioSkin mucusSkinbiologyBacteriaResearchMicrobiotaAttached microbiotaGenomicsbiology.organism_classificationAnguillaPathogenicity islandMucusVibrioMucusGenòmica030104 developmental biologyVibrio choleraeBacteris patògenslcsh:QR100-130MicrobiomeMetagenomicsWater Microbiology
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Centrifugal projections to the main olfactory bulb revealed by trans‐synaptic retrograde tracing in mice

2020

A wide range of evidence indicates that olfactory perception is strongly involved in food intake. However, the polysynaptic circuitry linking the brain areas involved in feeding behavior to the olfactory regions is not well known. The aim of this article was to examine such circuits. Thus, we described, using hodological tools such as transsynaptic viruses (PRV152) transported in a retrograde manner, the long-distance indirect projections (two to three synapses) onto the main olfactory bulb (MOB). The ß-subunit of the cholera toxin which is a monosynaptic retrograde tracer was used as a control to be able to differentiate between direct and indirect projections. Our tracing experiments show…

0301 basic medicineRRID:AB_142754RRID:AB_141521Lateral hypothalamus[SDV.NEU.NB]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/NeurobiologyRRID:AB_956454feeding behaviorNucleus accumbensBiologyRRID:AB_2534069choleratoxin b subunitMice03 medical and health sciences0302 clinical medicineRRID:AB_2650474RRID:AB_2636803Arcuate nucleusRRID:AB_2534091Animals[SDV.NEU] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]ComputingMilieux_MISCELLANEOUSrewardFluorescent DyesRRID:AB_297689General NeuroscienceSolitary nucleusOlfactory Pathwayspseudorabies virusOlfactory BulbRetrograde tracingOlfactory bulbOrexinMice Inbred C57BLodor processing[SDV.AEN] Life Sciences [q-bio]/Food and Nutrition030104 developmental biologyMicroscopy FluorescenceHypothalamusRRID:AB_300798[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]RRID:AB_2302603RRID:AB_2269954RRID:AB_726859Neuroscience[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgery
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Cholera Toxin Subunit B for Sensitive and Rapid Determination of Exosomes by Gel Filtration.

2020

We developed a sensitive fluorescence-based assay for determination of exosome concentration. In our assay, Cholera toxin subunit B (CTB) conjugated to a fluorescence probe and a gel filtration technique (size-exclusion chromatography) are used. Exosomal membranes are particularly enriched in raft-forming lipids (cholesterol, sphingolipids, and saturated phospholipids) and in GM1 ganglioside. CTB binds specifically and with high affinity to exosomal GM1 ganglioside residing in rafts only, and it has long been the probe of choice for membrane rafts. The CTB-gel filtration assay allows for detection of as little as 3 × 108 isolated exosomes/mL in a standard fluorometer, which has a sensitivit…

0301 basic medicineliposomesgel chromatographySize-exclusion chromatographyFiltration and Separationexosomesmedicine.disease_causelcsh:Chemical technologyExosomeGel permeation chromatography03 medical and health sciences0302 clinical medicineFluorometermedicineChemical Engineering (miscellaneous)lcsh:TP1-1185lcsh:Chemical engineeringcholera toxin subunit BQuantitation RangeLiposomeChromatographyChemistryGM1 ganglioside; cholera toxin subunit B; cholesterol; exosomes; gel chromatography; liposomesProcess Chemistry and TechnologyCommunicationCholera toxinlcsh:TP155-156cholesterol030104 developmental biologyMembrane030220 oncology & carcinogenesislipids (amino acids peptides and proteins)GM1 gangliosideMembranes
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Learning from the past in the COVID-19 era: rediscovery of quarantine, previous pandemics, origin of hospitals and national healthcare systems, and e…

2020

Abstract After the dramatic coronavirus outbreak at the end of 2019 in Wuhan, Hubei province, China, on 11 March 2020, a pandemic was declared by the WHO. Most countries worldwide imposed a quarantine or lockdown to their citizens, in an attempt to prevent uncontrolled infection from spreading. Historically, quarantine is the 40-day period of forced isolation to prevent the spread of an infectious disease. In this educational paper, a historical overview from the sacred temples of ancient Greece—the cradle of medicine—to modern hospitals, along with the conceive of healthcare systems, is provided. A few foods for thought as to the conflict between ethics in medicine and shortage of personne…

2474Economic growth030204 cardiovascular system & hematologyHistory 18th Centurylaw.invention0302 clinical medicineCholeralawPandemicechocardiographyMedicine030212 general & internal medicineHealth WorkforceHistory AncientEthics and LawHistory 15th CenturyHealth Care RationingHistory 19th CenturyGeneral Medicinecongenital heart diseaseHospitalsHistory 16th CenturyQuarantinesymbolsCoronavirus InfectionsHealthcare systemCoronavirus disease 2019 (COVID-19)Pneumonia ViralCardiologyHistory 21st CenturyResource AllocationHistory 17th Century03 medical and health sciencessymbols.namesakeBetacoronavirusLeprosyQuarantineHumansEthics MedicalChinaPandemicsHippocratic OathPlaguepaediatric cardiologybusiness.industrySARS-CoV-2OutbreakCOVID-19History 20th CenturyHistory MedievalUnited StatesInfectious disease (medical specialty)Hippocratic OathbusinessPostgraduate medical journal
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The Vibrio choleare haemolysin anion channel is required for cell vacuolation and death

2002

SummarySeveral strains of Vibrio cholerae secrete ahaemolytic toxin of 63kDa, termed V. cholerae cytolysin (VCC). This toxin causes extensive vacuo-lation and death of cells in culture and forms ananion-selective channel in planar lipid bilayers and incells. Here, we identify inhibitors of the VCC anionchannel and show that the formation of the anionchannel is necessary for the development of the vacuoles and for the cell death induced by this toxin. Using markers of cell organelles, we show that vacuoles derive from different intracellular com-partments and we identify the contribution of lateendosomes and of the trans -Golgi network in vacuolebiogenesis.Introduction The Gram-negative bact…

4-Acetamido-4'-isothiocyanatostilbene-22'-disulfonic AcidImmunologyLipid BilayersVirulenceGolgi ApparatusVacuoleEndosomesBiology44'-Diisothiocyanostilbene-22'-Disulfonic AcidIn Vitro Techniquesmedicine.disease_causeTransfectionMicrobiologyModels BiologicalAmmonium ChlorideIon ChannelsMicrobiologyCell LineHemolysin ProteinsBacterial ProteinsVirologyOrganelleChlorocebus aethiopsmedicineAnimalsHumansSecretionVero CellsVibrio choleraeCell DeathCytotoxinsHemolysinAnti-Bacterial AgentsVibrio choleraeVacuolesCytolysinMacrolidesIntracellular
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New insights regarding Acinetobacter genomic island-related elements

2020

The objective of this study was to mobilize the Acinetobacter genomic island 1-A (AGI1-A) from Enterobacter hormaechei EclCSP2185 (E. cloacae complex) and to search for the distribution and structure of AGI1-related elements in the NCBI database. AGI1-A was transferred to Escherichia coli. Analysis of the attachment (att) sites could locate the possible recombination crossover in the att sequences at position 10-11 (GG) in the last 18 bp of trmE. In silico detection of AGI backbones in the wgs database identified AGI variants in Salmonella enterica (83 strains), Vibrio cholerae (33), E. hormaechei (12), Acinetobacter baumannii (2), most belonging to prevalent clones (ST40, ST69, ST114 and S…

Acinetobacter baumanniiDNA Bacterial0301 basic medicineMicrobiology (medical)Genomic IslandsKlebsiella pneumoniae[SDV]Life Sciences [q-bio]030106 microbiologyEnterobactermedicine.disease_causeIntegronIntegrons03 medical and health sciences0302 clinical medicineDrug Resistance Multiple BacterialGenomic islandEscherichia colimedicineHumansPharmacology (medical)030212 general & internal medicineProteus mirabilisVibrio choleraeEscherichia coliGeneticsbiologySalmonella entericaSequence Analysis DNAGeneral MedicineAcinetobacterbiology.organism_classificationAnti-Bacterial AgentsAcinetobacter baumanniiInfectious DiseasesSalmonella entericaVibrio choleraebiology.protein
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