Search results for "0301 basic medicine"

showing 10 items of 10380 documents

Regulation of the Transferrin Receptor Recycling in Hepatitis C Virus-Replicating Cells

2020

After binding of its ligand transferrin, the transferrin receptor (TfR) is internalized via early endosomes. Ligand and receptor can be recycled. α-Taxilin was identified as an essential factor for TfR recycling. Apart from its role for iron uptake, TfR is a coreceptor for hepatitis C virus (HCV) infection. In HCV-replicating cells, the amount of a-taxilin is decreased. This study aims to investigate the effect of decreased α-taxilin levels in HCV-replicating cells on recycling of TfR, its amount on the cell surface, on iron uptake, and the impact of a disturbed TfR recycling on HCV superinfection exclusion. TfR amount and localization were determined by CLSM and surface biotinylation. α-ta…

hepatitis C virus0301 basic medicineEndosomemedia_common.quotation_subjectTransferrin receptorSuperinfection exclusionCell and Developmental Biology03 medical and health sciences0302 clinical medicineiron metabolismInternalizationReceptorlcsh:QH301-705.5iron metabolism ; transferrin receptor ; α-taxilin ; HCV superinfection ; Hepatitis C ; hepatitis C virusOriginal Researchmedia_commonchemistry.chemical_classificationα-taxilinHCV superinfectionvirus diseasesCell Biologytransferrin receptorLigand (biochemistry)Cell biology030104 developmental biologylcsh:Biology (General)chemistryTransferrin030220 oncology & carcinogenesisIntracellularDevelopmental BiologyFrontiers in Cell and Developmental Biology
researchProduct

Femtosecond‑LASIK outcomes using the VisuMax®‑MEL® 80 platform for hyperopia and hyperopic astigmatism refractive surgery

2021

The present study evaluated the efficacy, the safety and the predictability of the Femtosecond laser-assisted in situ keratomileusis (Femto-LASIK) procedure for hyperopia and hyperopic astigmatism. We retrospectively analyzed the postoperative 12-month evolution of 593 eyes with hyperopia and hyperopic astigmatism that underwent Femto-LASIK treatment. The procedure was predictable and effective. No eye lost 2 lines of corrected distance visual acuity (CDVA), demonstrating a safety profile of the procedure. Nine percent of the eyes gained at least one line of CDVA. The accuracy of the spherical equivalent after 12 months was 74% within ±1.0 diopter (D) of emmetropia. The refractive outcomes …

hyperopia0301 basic medicineCancer Researchmedicine.medical_specialtyDistance visual acuitygenetic structuresmedicine.medical_treatmentEmmetropiaKeratomileusis03 medical and health sciences0302 clinical medicineImmunology and Microbiology (miscellaneous)Refractive surgeryOphthalmologymedicineFemto-LASIKDioptrebusiness.industryLASIKArticlesGeneral Medicinehyperopic astigmatismeye diseasesfemtosecond-LASIK030104 developmental biology030220 oncology & carcinogenesisFemtosecondrefractive surgeryHyperopic astigmatismsense organsbusinessExperimental and Therapeutic Medicine
researchProduct

Analysis of Multilocus Sequence Typing and Virulence Characterization of Listeria monocytogenes Isolates from Chinese Retail Ready-to-Eat Food

2016

Eighty Listeria monocytogenes isolates were obtained from Chinese retail ready-to-eat (RTE) food and were previously characterized with serotyping and antibiotic susceptibility tests. The aim of this study was to characterize the subtype and virulence potential of these L. monocytogenes isolates by multilocus sequence typing (MLST), virulence-associate genes, epidemic clones (ECs), and sequence analysis of the important virulence factor: internalin A (inlA). The result of MLST revealed that these L. monocytogenes isolates belonged to 14 different sequence types (STs). With the exception of four new STs (ST804, ST805, ST806, and ST807), all other STs observed in this study have been associat…

inlA0301 basic medicineMicrobiology (medical)SerotypeSequence analysis030106 microbiologylcsh:QR1-502Virulenceepidemic clonesBiologymedicine.disease_causeMicrobiologylcsh:MicrobiologyVirulence factorEpidemic cloneMicrobiology03 medical and health sciencesListeria monocytogenesmedicineInternalinPathogenOriginal ResearchPMSCvirulence genesbacterial infections and mycosesListeria monocytogenes030104 developmental biologyMultilocus sequence typingMLSTFrontiers in Microbiology
researchProduct

Pneumococcal histidine triads – involved not only in Zn2+, but also Ni2+ binding?

2018

Polyhistidine triad proteins, which participate in Zn2+ uptake in Streptococcus pneumoniae, contain multiple copies of the HxxHxH (histidine triad motif) sequence. We focus on three such motifs from one of the most common and well-conserved polyhistidine triad proteins, PhtA, in order to understand their bioinorganic chemistry; particular focus is given to (i) understanding which of the PhtA triads binds Zn2+ with the highest affinity (and why) and (ii) explaining whether Ni2+ (also crucial for bacterial survival and virulence) could potentially outcompete Zn2+ at its native binding site. There is no significant difference in the stability of zinc(II) complexes with the three studied protei…

inorganic chemicals0301 basic medicineChemistry030106 microbiologySignificant differenceMetals and AlloysBiophysicsVirulenceBioinorganic chemistrymedicine.disease_causeBiochemistryBiomaterials03 medical and health sciencesBiochemistryChemistry (miscellaneous)Streptococcus pneumoniaemedicineBinding siteHistidineMetallomics
researchProduct

Mechanism of sulfur transfer across protein-protein interfaces: The cysteine desulfurase model system

2016

CsdA cysteine desulfurase (the sulfur donor) and the CsdE sulfur acceptor are involved in biological sulfur trafficking and in iron-sulfur cluster assembly in the model bacterium Escherichia coli. CsdA and CsdE form a stable complex through a polar interface that includes CsdA Cys328 and CsdE Cys61, the two residues known to be involved in the sulfur transfer reaction. Although mechanisms for the transfer of a sulfur moiety across protein-protein interfaces have been proposed based on the IscS-IscU and IscS-TusA structures, the flexibility of the catalytic cysteine loops involved has precluded a high resolution view of the active-site geometry and chemical environment for sulfur transfer. H…

inorganic chemicals0301 basic medicineChemistryCysteine desulfuraseInorganic chemistrychemistry.chemical_elementIsothermal titration calorimetryGeneral Chemistry010402 general chemistry01 natural sciencesCombinatorial chemistryAcceptorSulfurCatalysis0104 chemical sciences03 medical and health sciences030104 developmental biologyMoietyTransferaseBiogenesisCysteine
researchProduct

Complement C5 but not C3 is expendable for tissue factor activation by cofactor-independent antiphospholipid antibodies

2018

The complement and coagulation cascades interact at multiple levels in thrombosis and inflammatory diseases. In venous thrombosis, complement factor 3 (C3) is crucial for platelet and tissue factor (TF) procoagulant activation dependent on protein disulfide isomerase (PDI). Furthermore, C5 selectively contributes to the exposure of leukocyte procoagulant phosphatidylserine (PS), which is a prerequisite for rapid activation of monocyte TF and fibrin formation in thrombosis. Here, we show that monoclonal cofactor-independent antiphospholipid antibodies (aPLs) rapidly activate TF on myelomonocytic cells. TF activation is blocked by PDI inhibitor and an anti-TF antibody interfering with PDI bin…

inorganic chemicals0301 basic medicineComplement factor I030204 cardiovascular system & hematologyMonocytesImmunoglobulin GThromboplastinThrombosis and HemostasisMice03 medical and health sciencesTissue factor0302 clinical medicineimmune system diseasesmedicineAnimalsPlateletneoplasmsBlood CoagulationMice KnockoutVenous ThrombosisComplement component 5biologyChemistryMonocyteComplement C5Complement C3Hematologynervous system diseasesbody regions030104 developmental biologymedicine.anatomical_structureCoagulationAntibodies Antiphospholipidbiology.proteinCancer researchAntibodyBlood Advances
researchProduct

Structural Origin of Metal Specificity in Isatin Hydrolase from Labrenzia aggregata Investigated by Computer Simulations.

2017

We performed quantum-chemical calculations, ab initio molecular dynamics, hybrid quantum mechanics/molecular mechanics (QM/MM) and enhanced sampling metadynamics simulations to investigate the origin of metal specificity in isatin hydrolase from Labrenzia aggregata. The peculiar octahedral binding geometry of the Mn2+ ion in the Michaelis complex includes both the isatin substrate and the catalytic water within the first coordination shell of the cation. Our calculations show that the same arrangement of the ligands cannot be efficiently achieved in the presence of other small divalent metal cations such as Zn2+ or Cu2+ . On the contrary, bulkier alkaline-earth cations such as Mg2+ , which …

inorganic chemicals0301 basic medicineIsatinCations DivalentHydrolasesMolecular Dynamics SimulationLigands01 natural sciencesCatalysisQM/MMMetal03 medical and health sciencesMolecular dynamicschemistry.chemical_compoundNucleophileBacterial Proteins0103 physical sciencesHydrolaseMoietyComputer SimulationRhodobacteraceae010306 general physicsIsatinOrganic ChemistryMetadynamicsWaterGeneral ChemistryCrystallography030104 developmental biologychemistryMetalsvisual_artvisual_art.visual_art_mediumQuantum TheoryThermodynamicsProtein BindingChemistry (Weinheim an der Bergstrasse, Germany)
researchProduct

Chemical and physical characterization of thermal aggregation of model proteins modulated by zinc(II) and copper(II) ions

2016

BACKGROUND: Metal ions are implicated in protein aggregation processes of several neurodegenerative pathologies, where the protein deposition occurs, and in the biotechnology field like the food technology where many processes in food manufacturing are based on thermal treatments. OBJECTIVE: The influence of Cu2+ or Zn2+ ions on the thermal aggregation process of Bovine beta-lactoglobulin (BLG) and Bovine Serum Albumin (BSA), two protein models, was studied with the aim of delineating the role of these ions in the protein aggregation kinetics and to clarify the related molecular mechanisms. METHODS: The protein structure changes were monitored by Raman spectroscopy, whereas the aggregate gr…

inorganic chemicals0301 basic medicineMetal ions in aqueous solutionKineticsInorganic chemistryBeta-lactoglobulinchemistry.chemical_elementZincProtein aggregation010402 general chemistry01 natural sciencesBovine Serum Albumin (BSA)Beta-lactoglobulin bovine serum albumin (BSA) copper and zinc ionsRaman spectroscopy dynamic light scatteringMetal03 medical and health sciencesProtein structureDynamic light scatteringcopper and zinc ionRadiology Nuclear Medicine and imagingcopper and zinc ionsBovine serum albuminBeta-lactoglobulin; Bovine Serum Albumin (BSA); copper and zinc ions; Raman spectroscopy; dynamic light scatteringbiologydigestive oral and skin physiologydynamic light scattering0104 chemical sciences030104 developmental biologychemistryvisual_artRaman spectroscopyBiophysicsbiology.proteinvisual_art.visual_art_medium
researchProduct

The effect of nanoparticle size and NLS density on nuclear targeting in cancer and normal cells; impaired nuclear import and aberrant nanoparticle in…

2017

The cell nucleus is an interesting target in many diseases with particular interest in cancer. Previously, nuclear targeted small and large chitosan nanoparticles (S-NPs≈25nm, and L-NPs≈150nm respectively), modified with low, intermediate and high densities of NLS (L-NLS, I-NLS and H-NLS) were developed and assessed in L929 fibroblasts. However, to evade apoptosis and stimulate tumor growth cancer cells are capable of manipulating the nuclear-cytoplasmic transport on many levels, making NPs that are capable of nuclear targeting in normal cells incapable of doing so in cancer. For such reason, here, the nuclear delivery efficiency of S-NPs and L-NPs was assessed as a function of their NLS de…

inorganic chemicals0301 basic medicineNuclear Localization SignalsPharmaceutical Science02 engineering and technologyImportinBiologyenvironment and public healthCell Line03 medical and health sciencesCell Line TumormedicineHumansNLSParticle SizeCells Culturedhealth care economics and organizationsChitosanHEK 293 cellstechnology industry and agricultureBiological TransportGliomaFibroblastsrespiratory system021001 nanoscience & nanotechnologyVirologyCell biologyCell nucleus030104 developmental biologymedicine.anatomical_structureApoptosisCancer cellNanoparticlesNuclear transport0210 nano-technologyNuclear localization sequenceJournal of Controlled Release
researchProduct

Nitrated Fatty Acids Modulate the Physical Properties of Model Membranes and the Structure of Transmembrane Proteins

2017

Nitrated fatty acids (NO2 -FAs) act as anti-inflammatory signal mediators, albeit the molecular mechanisms behind NO2 -FAs' influence on diverse metabolic and signaling pathways in inflamed tissues are essentially elusive. Here, we combine fluorescence measurements with surface-specific sum frequency generation vibrational spectroscopy and coarse-grained computer simulations to demonstrate that NO2 -FAs alter lipid organization by accumulation at the membrane-water interface. As the function of membrane proteins strongly depends on both, protein structure as well as membrane properties, we consecutively follow the structural dynamics of an integral membrane protein in presence of NO2 -FAs. …

inorganic chemicals0301 basic medicineProtein Conformationcomplex mixturesPhase TransitionCatalysisPhysical Phenomena03 medical and health sciences0302 clinical medicineProtein structureJournal ArticleFluorescence Resonance Energy TransferMembrane fluidityComputer SimulationLipid bilayerIntegral membrane proteinNitratesChemistryCircular DichroismCell MembraneFatty AcidsOrganic ChemistryPeripheral membrane proteinMembrane ProteinsGeneral Chemistryrespiratory systemLipidsTransmembrane protein030104 developmental biologyMembraneMembrane proteinBiochemistryBiophysics030217 neurology & neurosurgerySignal TransductionChemistry – A European Journal
researchProduct