Search results for "Protease"

showing 10 items of 463 documents

Complex formation between the NS3 serine-type proteinase of the hepatitis C virus and NS4A and its importance for polyprotein maturation

1995

Processing of the hepatitis C virus polyprotein is mediated by host cell signalases and at least two virally encoded proteinases. Of these, the serine-type proteinase encompassing the amino-terminal one-third of NS3 is responsible for cleavage at the four sites carboxy terminal of NS3. The activity of this proteinase is modulated by NS4A, a 54-amino-acid polyprotein cleavage product essential for processing at the NS3/4A, NS4A/4B, and NS4B/5A sites and enhancing cleavage efficiency between NS5A and NS5B. Using the vaccinia virus-T7 hybrid system to express hepatitis C virus polypeptides in BHK-21 cells, we studied the role of NS4A in proteinase activation. We found that the NS3 proteinase a…

Protein ConformationRecombinant Fusion ProteinsvirusesGenetic VectorsMolecular Sequence DataImmunologyVaccinia virusHepacivirusProtein Sorting SignalsViral Nonstructural ProteinsBiologyKidneyTransfectionCleavage (embryo)MicrobiologyAntibodiesCell LineSerineEpitopesViral Proteinschemistry.chemical_compoundProtein structureProteinase 3CricetinaeVirologyAnimalsAmino Acid SequenceProtein PrecursorsNS5BPeptide sequenceNS3Sequence Homology Amino AcidSerine Endopeptidasesvirus diseasesbiochemical phenomena metabolism and nutritiondigestive system diseasesNS2-3 proteaseBiochemistrychemistryInsect ScienceProtein Processing Post-TranslationalAlgorithmsRNA HelicasesResearch ArticleJournal of Virology
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The protease domain of procollagen C-proteinase (BMP1) lacks substrate selectivity, which is conferred by non-proteolytic domains.

2007

Abstract Procollagen C-proteinase (PCP) removes the C-terminal pro-peptides of procollagens and also processes other matrix proteins. The major splice form of the PCP is termed BMP1 (bone morphogenetic protein 1). Active BMP1 is composed of an astacin-like protease domain, three CUB (complement, sea urchin Uegf, BMP1) domains and one EGF-like domain. Here we compare the recombinant human full-length BMP1 with its isolated proteolytic domain to further unravel the functional influence of the CUB and EGF domains. We show that the protease domain alone cleaves truncated procollagen VII within the short telopeptide region into fragments of similar size as the full-length enzyme does. However, u…

Protein FoldingCollagen Type VIIDNA Complementarymedicine.medical_treatmentClinical BiochemistryAmino Acid MotifsGene ExpressionGlutamic AcidBiochemistryBone morphogenetic protein 1Mass SpectrometryBone Morphogenetic Protein 1Cell LineSubstrate SpecificityProtein structuremedicineEscherichia coliAnimalsHumansCysteineDisulfidesMolecular BiologyInclusion BodiesMetalloproteinaseProteasebiologyChemistryMetalloendopeptidasesRecombinant ProteinsProtein Structure TertiaryFibronectinProcollagen peptidaseDrosophila melanogasterBiochemistryBone Morphogenetic ProteinsMutationbiology.proteinProtein foldingAstacinBiological chemistry
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The production of 85 kDa N-terminal fragment of apolipoprotein B in mutant HepG2 cells generated by targeted modification of apoB gene occurs by ALLN…

2010

Abstract To study the mechanism of low levels of full length and truncated apoB in individuals heterozygous for apoB truncation, a non-sense mutation was introduced in one of the three alleles of apob gene of HepG2 cells by homologous recombination. Despite very low levels of apoB-82 (1–2%) in the media, a prominent N-terminal apoB protein of 85 kDa (apoB-15) was secreted that fractionated at d > 1.065 in density gradient ultracentrifugation. The mechanism of production of this short protein was studied by 35S-methionine pulse–chase experiment. Oleate prevented presecretory degradation of apoB-100 in the cell and resulted in increased secretion of newly synthesized apoB-100 with decreases i…

Protein FoldingHepG2Apolipoprotein BLeupeptinsmedicine.medical_treatmentMutantBiophysicsBiologyCysteine Proteinase Inhibitorsdigestive systemBiochemistry85 kDa N-terminalCysteine ProteasesapoBmedicineHumansSecretionMolecular BiologyApolipoproteins BProteasenutritional and metabolic diseasesCell BiologyHep G2 CellsCysteine proteaseMolecular biologyTransmembrane proteinProtein TransportCodon NonsenseHypobetalipoproteinemia Familial Apolipoprotein Bbiology.proteinlipids (amino acids peptides and proteins)Density gradient ultracentrifugationIntracellular
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Calcium negatively regulates meprin β activity and attenuates substrate cleavage

2015

The meprin β metalloproteinase is an important enzyme in extracellular matrix turnover, inflammation, and neurodegeneration in humans and mice. Previous studies showed a diminished cleavage of certain meprin β substrates in the presence of calcium, although the mechanism was not clear. With the help of a specific fluorogenic peptide assay and the human amyloid precursor protein as substrate, we demonstrated that the influence of calcium is most likely a direct effect on human meprin β itself. Analyzing the crystal structures of pro- and mature meprin β helped to identify a cluster of negatively charged amino acids forming a potential calcium binding site. Mutation of 2 of these residues (D2…

Protein Foldingchemistry.chemical_elementCalciumEndoplasmic ReticulumBiochemistryCell LineSubstrate SpecificityAmyloid beta-Protein PrecursorChlorocebus aethiopsGeneticsAmyloid precursor proteinAnimalsHumansAmino Acid SequenceBinding siteProtein precursorMolecular BiologyCellular localizationSecretory pathwayMetalloproteinaseAmyloid beta-PeptidesBinding SitesbiologyEndoplasmic reticulumMetalloendopeptidasesCell biologyHEK293 CellschemistryCOS CellsMutationMetalloproteasesbiology.proteinCalciumAmyloid Precursor Protein SecretasesSequence AlignmentBiotechnologyThe FASEB Journal
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Analyzing the protease web in skin: meprin metalloproteases are activated specifically by KLK4, 5 and 8 vice versa leading to processing of proKLK7 t…

2010

Abstract The metalloproteases meprin α and β are expressed in several tissues, leukocytes, and cancer cells. In skin, meprins are located in separate layers of human epidermis indicating distinct physiological functions, supported by effects on cultured keratinocytes. Meprin β induces a dramatic change in cell morphology and a significant reduction in cell number, whereas in vitro evidence suggests a role for meprin α in basal keratinocyte proliferation. Meprins are secreted as zymogens that are activated by tryptic proteolytical processing. Here, we identify human kallikrein-related peptidases (KLKs) 4, 5, and 8 to be specific activators of meprins. KLK5 is capable of activating both metal…

Proteolysismedicine.medical_treatmentClinical BiochemistryBiologyBiochemistrySubstrate SpecificitymedicineHumansAmino Acid SequenceProtein precursorMolecular BiologySkinSerine proteaseEnzyme PrecursorsMetalloproteinaseProteasemedicine.diagnostic_testMetalloendopeptidasesKLK5Trypsinddc:Enzyme Activationmedicine.anatomical_structureBiochemistrybiology.proteinKallikreinsKeratinocytemedicine.drug
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Unraveling the SARS-CoV-2 Main Protease Mechanism Using Multiscale Methods

2020

We present a detailed theoretical analysis of the reaction mechanism of proteolysis catalyzed by the main protease of SARS-CoV-2. Using multiscale simulation methods, we have characterized the interactions established by a peptidic substrate in the active site, and then we have explored the free energy landscape associated with the acylation and deacylation steps of the proteolysis reaction, characterizing the transition states of the process. Our mechanistic proposals can explain most of the experimental observations made on the highly similar ortholog protease of SARS-CoV. We point to some key interactions that may facilitate the acylation process and thus can be crucial in the design of …

Proteolysismedicine.medical_treatmentComputational biology010402 general chemistry01 natural sciencesQM/MMCatalysisAcylationQM/MM3CL proteaseMolecular dynamicsminimum free energy pathmedicineacylationProteasebiologymedicine.diagnostic_test010405 organic chemistryChemistrySARS-CoV-2deacylationfungiActive siteEnergy landscapeGeneral ChemistryTransition statemolecular dynamics0104 chemical sciencesbiology.proteinResearch ArticleACS Catalysis
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Sialotranscriptomics of the argasid tick ornithodoros moubata along the trophogonic cycle

2021

32 páginas, 8 tablas, 6 figuras

Proteomics0301 basic medicineSwinePhysiologyRC955-962Gene ExpressionDisease VectorsProteomicsBiochemistryTranscriptomeMedical Conditions0302 clinical medicineTicksArctic medicine. Tropical medicineGene expressionMedicine and Health SciencesHuman relapsing feverGeneticsbiologyEukaryotaGenomicsProteasesBody FluidsEnzymesBloodInfectious DiseasesFemaleMetabolic PathwaysAnatomyPublic aspects of medicineRA1-1270Transcriptome analysisVitellogeninsMetabolic Networks and PathwaysResearch ArticleIxodidaeArthropoda030231 tropical medicineTickSalivary glandsArthropod Proteins03 medical and health sciencesExocrine GlandsOrnithodoros moubataArachnidaGeneticsAnimalsXenobiotic MetabolismTick ControlOrnithodorosSalivaIllumina dye sequencingIxodesAsfarviridaeImmunityOrganismsPublic Health Environmental and Occupational HealthBiology and Life SciencesComputational BiologyProteinsGenome Analysisbiology.organism_classificationInvertebratesOrnithodoros moubataPhospholipases A2Species InteractionsMetabolism030104 developmental biologyAfricaEnzymologyMetalloproteasesAfrican swine feverTranscriptomeDigestive SystemZoology
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Identification of Rothia Bacteria as Gluten-Degrading Natural Colonizers of the Upper Gastro-Intestinal Tract

2011

Background Gluten proteins, prominent constituents of barley, wheat and rye, cause celiac disease in genetically predisposed subjects. Gluten is notoriously difficult to digest by mammalian proteolytic enzymes and the protease-resistant domains contain multiple immunogenic epitopes. The aim of this study was to identify novel sources of gluten-digesting microbial enzymes from the upper gastro-intestinal tract with the potential to neutralize gluten epitopes. Methodology/Principal Findings Oral microorganisms with gluten-degrading capacity were obtained by a selective plating strategy using gluten agar. Microbial speciations were carried out by 16S rDNA gene sequencing. Enzyme activities wer…

ProteomicsApplied Microbiologylcsh:MedicineBiochemistryGliadinEpitopeSubstrate SpecificityUpper Gastrointestinal Tractlcsh:ScienceBifidobacterium2. Zero hungerchemistry.chemical_classification0303 health sciencesAniline CompoundsMultidisciplinarymedicine.diagnostic_testbiologyHydrolysisProteolytic enzymesfood and beveragesHydrogen-Ion ConcentrationEnzymes3. Good healthSolutionsBiochemistryMedical MicrobiologyMedicineSmall IntestineResearch ArticleProteasesGlutensProteolysisMolecular Sequence DataDental PlaqueGastroenterology and HepatologyMicrobiologydigestive systemMicrobiology03 medical and health sciencesAntigenmedicineHumansAmino Acid SequenceSalivaBiology030304 developmental biologyBinding Sites030306 microbiologylcsh:Rnutritional and metabolic diseasesbiology.organism_classificationGlutenPeptide Fragmentsdigestive system diseasesMolecular WeightCeliac DiseasechemistryProteolysisbiology.proteinlcsh:QGliadinMicrococcaceaePLoS ONE
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Bioassays to monitor taspase1 function for the identification of pharmacogenetic inhibitors

2011

Background Threonine Aspartase 1 (Taspase1) mediates cleavage of the mixed lineage leukemia (MLL) protein and leukemia provoking MLL-fusions. In contrast to other proteases, the understanding of Taspase1's (patho)biological relevance and function is limited, since neither small molecule inhibitors nor cell based functional assays for Taspase1 are currently available. Methodology/Findings Efficient cell-based assays to probe Taspase1 function in vivo are presented here. These are composed of glutathione S-transferase, autofluorescent protein variants, Taspase1 cleavage sites and rational combinations of nuclear import and export signals. The biosensors localize predominantly to the cytoplasm…

ProteomicsCytoplasmHydrolasesmedicine.medical_treatmentThreonine Aspartase 1Drug Evaluation Preclinicallcsh:MedicineBiosensing TechniquesBiochemistryMiceMolecular Cell BiologyBasic Cancer Researchlcsh:ScienceMultidisciplinaryEnzyme ClassesProteomic Databases3T3 CellsSmall moleculeCellular StructuresEnzymesBiochemistryOncologyMedicineBiological AssayBiologieResearch ArticleProteasesCell SurvivalIn silicoBiologyCleavage (embryo)In vivoGenetic Mutationddc:570EndopeptidasesChemical BiologyConsensus sequencemedicineGeneticsAnimalsHumansProtease InhibitorsBiologyCell NucleusProteaselcsh:RProteinsPharmacogeneticsSmall MoleculesMutagenesislcsh:Q
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The Metalloprotease Meprin β Generates Amino Terminal-truncated Amyloid β Peptide Species

2012

The amyloid β (Aβ) peptide, which is abundantly found in the brains of patients suffering from Alzheimer disease, is central in the pathogenesis of this disease. Therefore, to understand the processing of the amyloid precursor protein (APP) is of critical importance. Recently, we demonstrated that the metalloprotease meprin β cleaves APP and liberates soluble N-terminal APP (N-APP) fragments. In this work, we present evidence that meprin β can also process APP in a manner reminiscent of β-secretase. We identified cleavage sites of meprin β in the amyloid β sequence of the wild type and Swedish mutant of APP at positions p1 and p2, thereby generating Aβ variants starting at the first or seco…

ProteomicsMolecular Sequence DataMutantPeptideBiologyHydroxamic AcidsCleavage (embryo)BiochemistryCatalysis03 medical and health sciences0302 clinical medicineAlzheimer Diseasemental disordersmedicineAmyloid precursor proteinHumansProtein IsoformsAmino Acid SequenceMolecular Biology030304 developmental biologychemistry.chemical_classification0303 health sciencesMetalloproteinaseAmyloid beta-PeptidesWild typeBrainMetalloendopeptidasesMolecular Bases of DiseaseCell Biologymedicine.diseaseMolecular biologyProtein Structure TertiaryKineticsHEK293 CellsEnzymechemistryBiochemistryMutationMetalloproteasesbiology.proteinAmyloid Precursor Protein SecretasesAlzheimer's diseasePeptides030217 neurology & neurosurgeryJournal of Biological Chemistry
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