Search results for "1312 Molecular Biology"

showing 5 items of 45 documents

Anti-prothrombin autoantibodies enriched after infection with SARS-CoV-2 and influenced by strength of antibody response against SARS-CoV-2 proteins

2021

Antiphospholipid antibodies (aPL), assumed to cause antiphospholipid syndrome (APS), are notorious for their heterogeneity in targeting phospholipids and phospholipid-binding proteins. The persistent presence of Lupus anticoagulant and/or aPL against cardiolipin and/or β2-glycoprotein I have been shown to be independent risk factors for vascular thrombosis and pregnancy morbidity in APS. aPL production is thought to be triggered by–among other factors–viral infections, though infection-associated aPL have mostly been considered non-pathogenic. Recently, the potential pathogenicity of infection-associated aPL has gained momentum since an increasing number of patients infected with Severe Acu…

RNA virusesPulmonologyCoronavirusesPhysiology2405 ParasitologyAntibody Response030204 cardiovascular system & hematologyBiochemistrychemistry.chemical_compoundMedical Conditions0302 clinical medicineimmune system diseasesImmune PhysiologyMedicine and Health SciencesCardiolipinMedicineBiology (General)skin and connective tissue diseasesImmune ResponsePathology and laboratory medicineCOVIDVirus Testing0303 health sciencesLupus anticoagulantImmune System Proteinsbiologymedicine.diagnostic_test2404 MicrobiologyProteasesMedical microbiologyEnzymes3. Good healthInfectious DiseasesCoagulationVirusesSARS CoV 2PathogensAntibodyResearch ArticleSARS coronavirusQH301-705.5Immunology10208 Institute of Neuropathology610 Medicine & healthSARS-CoV-2; Respiratory infections; Virus testing; serine proteases; Antibody response; Autoantibodies; Blood plasma; ImmunoassaysResearch and Analysis MethodsMicrobiologyAntibodiesRespiratory Disorders03 medical and health sciences1311 GeneticsDiagnostic MedicineAntiphospholipid syndromeVirology1312 Molecular BiologyGeneticsImmunoassaysneoplasmsMolecular BiologyAutoantibodies030304 developmental biology030203 arthritis & rheumatology2403 ImmunologyPregnancyBiology and life sciencesbusiness.industryOrganismsViral pathogensAutoantibodyProteinsRC581-607medicine.diseaseMicrobial pathogenschemistry19ImmunoassayRespiratory InfectionsImmunology2406 VirologyEnzymologyImmunologic Techniquesbiology.protein570 Life sciences; biologyParasitologyImmunologic diseases. AllergySerine ProteasesbusinessPLOS Pathogens
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The membrane anchor of microsomal epoxide hydrolase from human, rat, and rabbit displays an unexpected membrane topology.

1997

The microsomal epoxide hydrolase (mEH) and cytochrome P450s catalyze the sequential formation of carcinogenic metabolites. According to one algorithm for predicting the membrane topology of proteins, the human, the rabbit, and the rat mEH should adopt a type II topology. The type II topology is also predicted by a recently established neuronal network which is trained to recognize signal peptides with very high accuracy. In contrast to these predictions we find, based on N-glycosylation analysis in a cell-free and in a cellular system, that the membrane anchor of human, rat, and rabbit mEH displays a type I topology. This result is correctly predicted by the positive inside rule in which ne…

Signal peptide1303 BiochemistryGlycosylationGlycosylationCytochromeStereochemistryRecombinant Fusion ProteinsImmunoblottingMolecular Sequence DataBiophysics10050 Institute of Pharmacology and Toxicology610 Medicine & healthProtein Sorting SignalsTransfectionBiochemistry1307 Cell BiologyCell membranechemistry.chemical_compoundSpecies Specificity1312 Molecular BiologymedicineElectrochemistryAnimalsHumansAmino Acid SequenceMolecular BiologyPeptide sequenceEpoxide HydrolasesbiologyCell MembraneCell BiologyRatsmedicine.anatomical_structurechemistryMutagenesisMicrosomal epoxide hydrolaseMembrane topologyEpoxide HydrolasesCOS Cellsbiology.protein570 Life sciences; biologyRabbits1304 BiophysicsBiochemical and biophysical research communications
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Degradation of phosphatidylethanol counteracts the apparent phospholipase D-mediated formation in heart and other organs.

2003

Phosphatidylalcohols, such as phosphatidylethanol (PEth), are formed from phosphatidylcholine in the presence of a primary alcohol (e.g., ethanol). This 'transphosphatidylation' reaction is used as specific phospholipase D (PLD) assay. Accumulation of PEth in tissues is recognized as a reliable measure of PLD activity, as PEth is allegedly metabolically stable. The general validity of this assumption was reinvestigated in isolated rat heart, small intestine and brain slices. The half-times of 3H-PEth degradation (labelled with 3H-myristic acid and preformed by ethanol exposure for 30 min) were about 1 h in heart and small intestine, but 17 h in brain. As the formation of PEth is superimpose…

Vasodilator AgentsIschemia610 Medicine & healthGlycerophospholipidsTritium1307 Cell BiologyRats Sprague-Dawleychemistry.chemical_compoundIschemiaPhosphatidylcholineIntestine Small1312 Molecular BiologyDiazoxidemedicinePhospholipase DAnimalsMolecular BiologyEthanolPhospholipase DMyocardiumDiazoxideBrainCell Biologymedicine.diseaseSmall intestineRatsPerfusionmedicine.anatomical_structurechemistryBiochemistry10054 Clinic for Psychiatry Psychotherapy and PsychosomaticsIschemic preconditioningPhosphatidylethanolmedicine.drugHalf-LifeBiochimica et biophysica acta
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Epoxide Hydrolases: Structure, Function, Mechanism, and Assay

2005

Epoxide hydrolases are a class of enzymes important in the detoxification of genotoxic compounds, as well as in the control of physiological signaling molecules. This chapter gives an overview on the function, structure, and enzymatic mechanism of structurally characterized epoxide hydrolases and describes selected assays for the quantification of epoxide hydrolase activity.

chemistry.chemical_classificationCell signaling1303 BiochemistryStereochemistry10050 Institute of Pharmacology and Toxicology610 Medicine & healthEpoxide hydrolase activityEnzymeBiochemistrychemistryDetoxificationEpoxide Hydrolases1312 Molecular Biology570 Life sciences; biologyProtein foldingEpoxide hydrolaseFunction (biology)
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ACKERMANS et al.

2019

One reason for the mammalian clade’s success is the evolutionary diversity of their teeth. In herbivores, this is represented by high‐crowned teeth evolved to compensate for wear caused by dietary abrasives like phytoliths and grit. Exactly how dietary abrasives wear teeth is still not understood completely. We fed four different pelleted diets of increasing abrasiveness (L: Lucerne; G: grass; GR: grass and rice husks; GRS: grass, rice husks, and sand) to four groups of a total of 28 adult goats, all with completely erupted third molars, over a six‐month period. Tooth morphology was captured by medical computed tomography scans at the beginning and end of the controlled feeding experi…

controlled feeding experiment10253 Department of Small Animals630 Agriculture1314 Physiologyruminant teethstomatognathic diseases1105 Ecology Evolution Behavior and Systematics1311 Geneticsstomatognathic system3D imaging11404 Department of Clinical Diagnostics and Services1312 Molecular Biology570 Life sciences; biologytooth volume1103 Animal Science and Zoologydental wearcementum
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