Search results for "Astacin"

showing 10 items of 21 documents

Handling Metalloproteinases.

2016

Substrate cleavage by metalloproteinases involves nucleophilic attack on the scissile peptide bond by a water molecule that is polarized by a catalytic metal, usually a zinc ion, and a general base, usually the carboxyl group of a glutamic acid side chain. The zinc ion is most often complexed by imidazole nitrogens of histidine side chains. This arrangement suggests that the physiological pH optimum of most metalloproteinases is in the neutral range. In addition to their catalytic metal ion, many metalloproteinases contain additional transition metal or alkaline earth ions, which are structurally important or modulate the catalytic activity. As a consequence, these enzymes are generally sen…

0301 basic medicineMetal ions in aqueous solutionGlutamic AcidMatrix metalloproteinaseHydrogen-Ion ConcentrationBiochemistryCombinatorial chemistryCatalysisMetal03 medical and health scienceschemistry.chemical_compoundZinc030104 developmental biologychemistryStructural Biologyvisual_artvisual_art.visual_art_mediumMetalloproteasesMoleculeImidazolePeptide bondAnimalsHumansAstacinHistidineCurrent protocols in protein scienceLiterature Cited
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The C-terminal region of human plasma fetuin-B is dispensable for the raised-elephant-trunk mechanism of inhibition of astacin metallopeptidases

2019

© The Author(s) 2019.

0301 basic medicineProteasesProtein Conformationlcsh:MedicineAstacoideaCrystallography X-RayCleavage (embryo)Protein Structure SecondaryArticleMice03 medical and health sciencesScissile bondHydrolaseAnimalsHumansAmino Acid Sequencelcsh:ScienceProtein secondary structureX-ray crystallographyBinding SitesMultidisciplinary030102 biochemistry & molecular biologyChemistrylcsh:RMetalloendopeptidasesProteasesFetuinFetuin-BCell biologyZincFertility030104 developmental biologyProteolysisMetalloproteaseslcsh:QAstacinLinkerScientific Reports
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2019

Mammalian fetuin-A and fetuin-B are abundant serum proteins with pleiotropic functions. Fetuin-B is a highly selective and potent inhibitor of metallopeptidases (MPs) of the astacin family, which includes ovastacin in mammals. By inhibiting ovastacin, fetuin-B is essential for female fertility. The crystal structure of fetuin-B was determined unbound and in complex with archetypal astacin, and it was found that the inhibitor has tandem cystatin-type modules (CY1 and CY2). They are connected by an exposed linker with a rigid, disulfide-linked `CPDCP-trunk', and are followed by a C-terminal region (CTR) with little regular secondary structure. The CPDCP-trunk and a hairpin of CY2 form a bipar…

0303 health sciencesMetallopeptidaseChemistry030302 biochemistry & molecular biologyMutantGeneral ChemistryCondensed Matter PhysicsBiochemistryCell biology03 medical and health sciencesProtein structureHydrolaseGeneral Materials ScienceAstacinProtein secondary structureLinker030304 developmental biologyCysteineIUCrJ
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A Wnt-specific astacin proteinase controls head formation inHydra

2020

AbstractTheHydrahead organizer acts as a signaling center that initiates and maintains the primary body axis in steady state polyps and during budding or regeneration. Wnt/beta-Catenin signaling functions as a primary cue controlling this process, but how Wnt ligand activity is locally restricted at the protein level is poorly understood.Here we report the identification of an astacin family proteinase as a Wnt processing factor.Hydraastacin-7 (HAS-7) is expressed from gland cells as an apical-distal gradient in the body column, peaking close beneath the tentacle zone.HAS-7siRNA knockdown abrogates HyWnt3 proteolysis in the head tissue and induces a robust double axis phenotype, which is re…

BuddingGene knockdownbiologyChemistryRegeneration (biology)XenopusWnt signaling pathwayLernaean HydraAstacinbiology.organism_classificationActinCell biology
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Astacin

2013

ChemistryEvolutionary biologyAstacin
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Astacins: proteases in development and tissue differentiation

2013

Capítulo en: Stöker, Walter; Brix, Klaudia (eds.). Proteases: structure and function. Wien: Springer, 2013

GastrulationProteasesanimal structuresOntogenyExtracellular matrix assemblyembryonic structuresBiophysicsAstacinBiologyBlastulaPolyspermyEmbryonic stem cellCell biology
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Other astacin homologs

2013

Publisher Summary This chapter describes the activity, specificity and structural chemistry of astacin homologs. The astacins are members of the metzincin superfamily such as the serralysins, the reprolysins/adamalysins, the matrixins, the leishmanolysins, the pregnancy-associated plasma proteins, the snapalysins and the fragilysins. Proteins of the hatching subfamily have been shown to be important for the cleavage of membranes coating developing embryos of invertebrates and vertebrates. Other members of this subfamily have varying or even several functions. UVS.2 from Xenopus, originally shown to play a role in dorso-anterior development, has been identified as the frog hatching enzyme. T…

GeneticsMessenger RNASubfamilyEmbryogenesisXenopusEmbryoProtein superfamilyBiologybiology.organism_classificationMolecular biologyCell biologyembryonic structuresHomologous chromosomeAstacin
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Proteomic Analyses Reveal an Acidic Prime Side Specificity for the Astacin Metalloprotease Family Reflected by Physiological Substrates

2011

Astacins are secreted and membrane-bound metalloproteases with clear associations to many important pathological and physiological processes. Yet with only a few substrates described their biological roles are enigmatic. Moreover, the lack of knowledge of astacin cleavage site specificities hampers assay and drug development. Using PICS (proteomic identification of protease cleavage site specificity) and TAILS (terminal amine isotopic labeling of substrates) degradomics approaches >3000 cleavage sites were proteomically identified for five different astacins. Such broad coverage enables family-wide determination of specificities N- and C-terminal to the scissile peptide bond. Remarkably, me…

KeratinocytesModels MolecularProteomicsVascular Endothelial Growth Factor AProteasesmedicine.medical_treatmentProteolysisMolecular Sequence DataBiologyCleavage (embryo)BiochemistryCell LineSubstrate SpecificityAnalytical Chemistry03 medical and health sciencesTandem Mass SpectrometrymedicineHumansAmino Acid SequenceMolecular BiologyPeptide sequencePhylogeny030304 developmental biologyEnzyme Precursors0303 health sciencesProteaseStaining and LabelingEdman degradationmedicine.diagnostic_testResearch030302 biochemistry & molecular biologyTioproninMetalloendopeptidasesTerminal amine isotopic labeling of substratesRecombinant ProteinsKineticsBiochemistryProteolysisKallikreinsAstacinPeptidesSequence AlignmentChromatography LiquidMolecular & Cellular Proteomics
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Processing of procollagen III by meprins: new players in extracellular matrix assembly?

2010

Meprins α and β, a subgroup of zinc metalloproteinases belonging to the astacin family, are known to cleave components of the extracellular matrix, either during physiological remodeling or in pathological situations. In this study we present a new role for meprins in matrix assembly, namely the proteolytic processing of procollagens. Both meprins α and β release the N- and C-propeptides from procollagen III, with such processing events being critical steps in collagen fibril formation. In addition, both meprins cleave procollagen III at exactly the same site as the procollagen C-proteinases, including bone morphogenetic protein-1 (BMP-1) and other members of the tolloid proteinase family. …

Keratinocytesmacromolecular substancesDermatologyMatrix metalloproteinaseCleavage (embryo)BiochemistryBone Morphogenetic Protein 1Substrate SpecificityExtracellular matrix03 medical and health sciencesDermismedicineHumansEnhancerMolecular BiologyCells Cultured030304 developmental biology0303 health sciencesExtracellular Matrix Proteinsintegumentary systemChemistryExtracellular matrix assembly030302 biochemistry & molecular biologyMetalloendopeptidasesCell BiologyDermisFibroblastsFibrosisProcollagen peptidasemedicine.anatomical_structureCollagen Type IIIHEK293 CellsBiochemistryKeloidAstacinThe Journal of investigative dermatology
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Proenzyme Structure and Activation of Astacin Metallopeptidase

2010

Proteolysis is regulated by inactive (latent) zymogens, with a prosegment preventing access of substrates to the active-site cleft of the enzyme. How latency is maintained often depends on the catalytic mechanism of the protease. For example, in several families of the metzincin metallopeptidases, a >cysteine switch> mechanism involves a conserved prosegment motif with a cysteine residue that coordinates the catalytic zinc ion. Another family of metzincins, the astacins, do not possess a cysteine switch, so latency is maintained by other means. We have solved the high resolution crystal structure of proastacin from the European crayfish, Astacus astacus. Its prosegment is the shortest struc…

MetallopeptidaseStereochemistrymedicine.medical_treatmentAmino Acid MotifsAstacoideaMatrix metalloproteinaseBiochemistryCatalysis03 medical and health sciencesStructure-Activity RelationshipHydrolasemedicineAnimalsMolecular Biology030304 developmental biology0303 health sciencesMetalloproteinaseEnzyme PrecursorsProteaseChemistry030302 biochemistry & molecular biologyMetalloendopeptidasesHydrogen BondingCell BiologyEnzyme structureProtein Structure TertiaryZincProtein Structure and FoldingAstacinCysteineJournal of Biological Chemistry
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