Search results for "polypeptide"

showing 10 items of 51 documents

A constitutively active pituitary adenylate cyclase activating polypeptide (PACAP) type I receptor shows enhanced photoaffinity labeling of its highl…

2001

Abstract In the present study, we have analyzed a previously identified constitutively active pituitary adenylate cyclase activating polypeptide (PACAP) type I (PAC1) receptor with a deletion of the single amino acid residue Glu 261 (Y.-J. Cao, G. Gimpl, F. Fahrenholz, A mutation of second intracellular loop of pituitary adenylate cyclase activating polypeptide type I receptor confers constitutive receptor activation, FEBS Lett. 469 (2000)). This glutamic acid residue is highly conserved within the second intracellular loop of class II G protein-coupled receptors and may thus be of importance for many members of this receptor class. To explore the molecular characteristics of this mutant re…

GlycosylationBiophysicsReceptors Pituitary Adenylate Cyclase-Activating PolypeptideBiochemistryCyclaseAmidohydrolasesStructural BiologyEnzyme-linked receptorAnimalsPeptide-N4-(N-acetyl-beta-glucosaminyl) Asparagine Amidase5-HT5A receptorReceptors Pituitary HormoneReceptorMolecular BiologyCOS cellsPhotoaffinity labelingChemistryAffinity LabelsGlutamic acidMolecular biologyRatsMolecular WeightBiochemistryCOS CellsMutationSignal transductionAdenylyl CyclasesPlasmidsReceptors Pituitary Adenylate Cyclase-Activating Polypeptide Type IBiochimica et biophysica acta
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Raman Spectroscopic Signatures of Echovirus 1 Uncoating

2014

ABSTRACT In recent decades, Raman spectroscopy has entered the biological and medical fields. It enables nondestructive analysis of structural details at the molecular level and has been used to study viruses and their constituents. Here, we used Raman spectroscopy to study echovirus 1 (EV1), a small, nonenveloped human pathogen, in two different uncoating states induced by heat treatments. Raman signals of capsid proteins and RNA genome were observed from the intact virus, the uncoating intermediate, and disrupted virions. Transmission electron microscopy data revealed general structural changes between the studied particles. Compared to spectral characteristics of proteins in the intact v…

Hot TemperatureEchovirusEndosomeImmunologyBiologySpectrum Analysis Ramanmedicine.disease_causeMicrobiologyVirusViral Proteinssymbols.namesakeProtein structureMicroscopy Electron TransmissionVirus UncoatingVirologyChlorocebus aethiopsmedicineAnimalsVero CellsStructure and AssemblyVirus UncoatingVirionRNAsecondary structureVirologyEnterovirus B Humanexternalized polypeptideCapsidInsect ScienceBiophysicssymbolsRNA Viralpod mottle virusRaman spectroscopyJournal of Virology
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Modulation of NMDA receptor function by cyclic AMP in cerebellar neurones in culture

2004

The signal transduction pathways involved in NMDA receptor modulation by other receptors remain unclear. cAMP could be involved in this modulation. The aim of this work was to analyse the contribution of cAMP to NMDA receptor modulation in cerebellar neurones in culture. Forskolin increases cAMP and results in increased intracellular calcium and cGMP that are prevented by blocking NMDA receptors. Similar effects were induced by two cAMP analogues, indicating that cAMP leads to NMDA receptor activation. It has been reported that phosphorylation of Ser897 of the NR1 subunit of NMDA receptors by cAMP-dependent protein kinase (PKA) activates the receptors. Forskolin increases Ser897 phosphoryla…

Intracellular Fluidmedicine.medical_specialty8-Bromo Cyclic Adenosine MonophosphateBiologyReceptors N-Methyl-D-AspartateBiochemistryCellular and Molecular Neurosciencechemistry.chemical_compoundCerebellumInternal medicineCyclic AMPmedicineAnimalsCyclic adenosine monophosphateNerve Growth FactorsEnzyme InhibitorsPhosphorylationRats WistarProtein kinase AReceptorLong-term depressionCyclic GMPCells CulturedNeuronsNeurotransmitter AgentsForskolinColforsinNeuropeptidesCyclic AMP-Dependent Protein KinasesRatsPituitary adenylate cyclase-activating peptideEndocrinologynervous systemchemistryPituitary Adenylate Cyclase-Activating PolypeptideNMDA receptorCalciumSignal transductionExcitatory Amino Acid AntagonistsSignal TransductionJournal of Neurochemistry
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Recent advances in 2D and 3D in vitro systems using primary hepatocytes, alternative hepatocyte sources and non-parenchymal liver cells and their use…

2013

This review encompasses the most important advances in liver functions and hepatotoxicity and analyzes which mechanisms can be studied in vitro. In a complex architecture of nested, zonated lobules, the liver consists of approximately 80 % hepatocytes and 20 % non-parenchymal cells, the latter being involved in a secondary phase that may dramatically aggravate the initial damage. Hepatotoxicity, as well as hepatic metabolism, is controlled by a set of nuclear receptors (including PXR, CAR, HNF-4α, FXR, LXR, SHP, VDR and PPAR) and signaling pathways. When isolating liver cells, some pathways are activated, e.g., the RAS/MEK/ERK pathway, whereas others are silenced (e.g. HNF-4α), resulting in…

MAPK/ERK pathwayHealth Toxicology and MutagenesisNF-KAPPA-BReceptors Cytoplasmic and NuclearReview ArticlePharmacologyToxicologyToxicogeneticsNon-parenchymal cells0302 clinical medicineInduced pluripotent stem cellANION-TRANSPORTING POLYPEPTIDECONSTITUTIVE ANDROSTANE RECEPTOR0303 health sciencesGeneral Medicine3. Good healthCell biologymedicine.anatomical_structureLiver030220 oncology & carcinogenesisHepatocyte[SDV.TOX]Life Sciences [q-bio]/ToxicologyInactivation MetabolicClearanceDILIStem cellPLURIPOTENT STEM-CELLSFARNESOID-X-RECEPTORSignal TransductionMechanisms of gene regulationARYL-HYDROCARBON RECEPTORCell signalingPharmacology and ToxicologyHEPATIC STELLATE CELLSBiology03 medical and health sciencesOrgan Culture TechniquesIn vivoCulture TechniquesToxicity TestsmedicineMathematical modeling.AnimalsHumansLiver X receptorDRUG-DRUG INTERACTIONS030304 developmental biologyCryopreservation[INFO.INFO-MO]Computer Science [cs]/Modeling and Simulation3D ModelsCoculture TechniquesHigh-Throughput Screening AssaysSALT EXPORT PUMPGene Expression RegulationHepatic stellate cellHepatocytes[SDV.SP.PHARMA]Life Sciences [q-bio]/Pharmaceutical sciences/PharmacologyPRIMARY RAT HEPATOCYTESMathematical modeling
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Pancreatic polypeptide stimulates mouse gastric motor activity through peripheral neural mechanisms

2016

Background Pancreatic polypeptide (PP) is supposed to be one of the major endogenous agonists of the neuropeptide Y4 receptor. Pancreatic polypeptide can influence gastrointestinal motility, acting mainly through vagal mechanisms, but whether PP acts directly on the stomach has not been explored yet. The aims of this study were to investigate the effects of PP on mouse gastric emptying, on spontaneous tone of whole stomach in vitro and to examine the mechanism of action. Methods Gastric emptying was measured by red phenol method after i.p. PP administration (1–3 nmol per mouse). Responses induced by PP (1–300 mmol L−1) on gastric endoluminal pressure were analyzed in vitro in the presence o…

Male0301 basic medicinemedicine.medical_specialtyPhysiologyGastric emptyingMuscarinic AntagonistsBiologyEndocrine and Autonomic SystemMice03 medical and health sciencesOrgan Culture Techniques0302 clinical medicineInternal medicineMuscarinic acetylcholine receptormedicineAnimalsPancreatic polypeptidePeripheral NervesPancreatic polypeptideReceptorAntrumDose-Response Relationship DrugGastric emptyingEndocrine and Autonomic SystemsStomachGastroenterologyMotilityAcetylcholineReceptors Neuropeptide YMice Inbred C57BL030104 developmental biologyEndocrinologymedicine.anatomical_structureMechanism of actionTachykininmedicine.symptomEnteric nervous systemGastrointestinal Motility030217 neurology & neurosurgeryAcetylcholinemedicine.drug
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Neurotransmitters involved in the fast inhibitory junction potentials in mouse distal colon

2003

We investigated, in murine colon circular muscle, the role of adenosine 5′-triphosphate (ATP) and pituitary adenylate cyclase activating peptide (PACAP) as inhibitory neurotransmitters of the fast component of nerve-evoked inhibitory junction potential (fast IJP). Fast IJP was antagonised by apamin or suramin, abolished by desensitisation with the P2Y receptor agonist, adenosine 5′-O-2-thiodiphosphate (ADPβS), unaffected by desensitisation with P2X receptor agonist, α,β-methylene ATP (α,β-meATP), and reduced by PACAP-(6-38), a PACAP receptor antagonist. ATP induced membrane hyperpolarization resistant to tetrodotoxin, Nω-nitro-L-arginine methyl ester (L-NAME) or PACAP-(6-38), but antagonise…

MaleAgonistendocrine systemmedicine.medical_specialtyP2Y receptorColonmedicine.drug_classPurinoceptorNeuromuscular JunctionSuraminTetrodotoxinBiologyApaminSettore BIO/09 - FisiologiaMembrane PotentialsCellular and Molecular NeuroscienceMicechemistry.chemical_compoundAdenosine TriphosphateInternal medicinemedicineAnimalsMurinePharmacologyNeurotransmitter AgentsDose-Response Relationship Drugmusculoskeletal neural and ocular physiologyNeuropeptidesMembrane hyperpolarizationThionucleotidesHyperpolarization (biology)Receptor antagonistAdenosinePeptide FragmentsATPAdenosine DiphosphatePituitary adenylate cyclase-activating peptideNG-Nitroarginine Methyl EsterEndocrinologyApaminchemistryPituitary Adenylate Cyclase-Activating PolypeptideFast inhibitory junction potentialPACAP (pituitary adenylate cyclase activating peptide)hormones hormone substitutes and hormone antagonistsmedicine.drugEuropean Journal of Pharmacology
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Glucagon-like peptide-1 modulates neurally evoked mucosal chloride secretion in guinea pig small intestine in vitro

2011

Glucagon-like peptide-1 (GLP-1) acts at the G protein-coupled receptor, GLP-1R, to stimulate secretion of insulin and to inhibit secretion of glucagon and gastric acid. Involvement in mucosal secretory physiology has received negligible attention. We aimed to study involvement of GLP-1 in mucosal chloride secretion in the small intestine. Ussing chamber methods, in concert with transmural electrical field stimulation (EFS), were used to study actions on neurogenic chloride secretion. ELISA was used to study GLP-1R effects on neural release of acetylcholine (ACh). Intramural localization of GLP-1R was assessed with immunohistochemistry. Application of GLP-1 to serosal or mucosal sides of fla…

MaleCytoplasmendocrine systemmedicine.medical_specialtyReceptors Vasoactive Intestinal Polypeptide Type IPhysiologyGuinea PigsScopolamineVasoactive intestinal peptideHormones and SignalingIleumIn Vitro TechniquesHexamethoniumGlucagonGlucagon-Like Peptide-1 ReceptorCholine O-AcetyltransferaseGuinea pigChloridesGlucagon-Like Peptide 1IleumPhysiology (medical)Internal medicineIntestine SmallReceptors GlucagonmedicineAnimalsNeuropeptide YSecretionIntestinal MucosaNeuronsHepatologyChemistrydigestive oral and skin physiologyElectric ConductivityGastroenterologyAcetylcholineElectric StimulationPeptide FragmentsSmall intestineElectrophysiological PhenomenaEndocrinologymedicine.anatomical_structureSomatostatinELAV ProteinsGastric acidCarbacholSomatostatinhormones hormone substitutes and hormone antagonistsVasoactive Intestinal PeptideAmerican Journal of Physiology-Gastrointestinal and Liver Physiology
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Mechanisms underlying the inhibitory effects induced by pituitary adenylate cyclase-activating peptide in mouse ileum

2005

Abstract The aim of this study was to investigate the signal transduction mechanisms underlying the inhibitory effect induced by pituitary adenylate cyclase activating peptide (PACAP-27) on the spontaneous contractile activity of longitudinal muscle of mouse ileum. Mechanical activity of ileal segments was recorded isometrically in vitro. PACAP-27 produced apamin-sensitive reduction of the amplitude of the spontaneous contractions. 9-(Tetrahydro-2-furanyl)-9H-purin-6-amine (SQ 22,536), adenylate cyclase inhibitor, or genistein and tyrphostin 25, tyrosine kinase inhibitors, had negligible effects on PACAP-27-induced inhibition. PACAP-27 effects were significantly inhibited by U-73122, phopho…

MaleIndolesPhosphodiesterase InhibitorsVasodilator AgentsMouse ileumStimulationSettore BIO/09 - FisiologiaMicechemistry.chemical_compoundInositolEnzyme InhibitorsEstrenesRyanodineRyanodine receptorProtein-Tyrosine KinasesTyrphostinsGenisteinPyrrolidinonesCell biologyPituitary adenylate cyclase-activating peptideNG-Nitroarginine Methyl EsterPituitary Adenylate Cyclase-Activating PolypeptideThapsigarginSignal transductionCyclopiazonic acidhormones hormone substitutes and hormone antagonistsMuscle ContractionBoron Compoundsendocrine systemmedicine.medical_specialtyThapsigarginMuscular inhibitionCalcium-Transporting ATPasesIn Vitro TechniquesInositol 145-triphosphateBiologyPACAP-27 (pituitary adenylate cyclase activating peptide)IleumPhospholipase CInternal medicinemedicineAnimalsPharmacologyDose-Response Relationship DrugPhospholipase CAdenineMuscle SmoothMice Inbred C57BLEndocrinologyApaminchemistryAdenylyl Cyclase InhibitorsCalciumNitric Oxide SynthaseEuropean Journal of Pharmacology
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Induction of RAGE Shedding by Activation of G Protein-Coupled Receptors

2011

The multiligand Receptor for Advanced Glycation End products (RAGE) is involved in various pathophysiological processes, including diabetic inflammatory conditions and Alzheimers disease. Full-length RAGE, a cell surface-located type I membrane protein, can proteolytically be converted by metalloproteinases ADAM10 and MMP9 into a soluble RAGE form. Moreover, administration of recombinant soluble RAGE suppresses activation of cell surface-located RAGE by trapping RAGE ligands. Therefore stimulation of RAGE shedding might have a therapeutic value regarding inflammatory diseases. We aimed to investigate whether RAGE shedding is inducible via ligand-induced activation of G protein-coupled recep…

MaleReceptors Vasopressinendocrine system diseasesReceptor for Advanced Glycation End Productslcsh:MedicineHydroxamic Acids570 Life sciencesRAGE (receptor)Adenylyl cyclaseADAM10 ProteinMicePhosphatidylinositol 3-Kinaseschemistry.chemical_compoundMolecular Cell BiologyNeurobiology of Disease and RegenerationSignaling in Cellular ProcessesMembrane Receptor SignalingReceptors Immunologiclcsh:ScienceReceptorLungCellular Stress ResponsesCalcium signalingMultidisciplinaryKinaseDipeptidesHormone Receptor SignalingCell biologyMatrix Metalloproteinase 9NeurologyReceptors OxytocinGene Knockdown Techniquescardiovascular systemMatrix Metalloproteinase 2Pituitary Adenylate Cyclase-Activating PolypeptideMedicineRNA InterferenceAdenylyl CyclasesResearch ArticleSignal Transduction570 Biowissenschaftenmedicine.medical_specialtyMAP Kinase Signaling SystemADAM17 ProteinBiologyAlzheimer DiseaseCa2+/calmodulin-dependent protein kinaseInternal medicinemedicineAnimalsHumansProtease InhibitorsCalcium Signalingcardiovascular diseasesBiologyG protein-coupled receptorlcsh:RHEK 293 cellsMembrane Proteinsnutritional and metabolic diseasesCyclic AMP-Dependent Protein KinasesADAM ProteinsG-Protein SignalingHEK293 CellsEndocrinologychemistryProteolysisDementialcsh:QAmyloid Precursor Protein SecretasesMolecular Neurosciencehuman activitiesReceptors Pituitary Adenylate Cyclase-Activating Polypeptide Type INeurosciencePLoS ONE
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Neurochemistry of olivocochlear neurons in the hamster.

2009

The present study was conducted to characterize the superior olivary complex (SOC) of the lower brain stem in the pigmented Djungarian hamster Phodopus sungorus. Using Nissl-stained serial cryostat sections from fresh-frozen brains, we determined the borders of the SOC nuclei. We also identified olivocochlear (OC) neurons by retrograde neuronal tracing upon injection of Fluoro-Gold into the scala tympani. To evaluate the SOC as a putative source of neuronal nitric oxide synthase (nNOS), arginine-vasopressin (AVP), oxytocin (OT), vasoactive intestinal polypeptide (VIP), or pituitary adenylate cyclase-activating polypeptide (PACAP) that were all found in the cochlea, we conducted immunohistoc…

Maleendocrine systemmedicine.medical_specialtyHistologyAuditory PathwaysPhodopusStilbamidinesVasoactive intestinal peptideHamsterNitric Oxide Synthase Type IOlivary NucleusNitric OxideOxytocinEfferent Pathwayschemistry.chemical_compoundInternal medicineCricetinaeNitrergic NeuronsPonsotorhinolaryngologic diseasesmedicineAnimalsNeurotransmitterEcology Evolution Behavior and SystematicsbiologyStaining and LabelingOlivocochlear systembiology.organism_classificationRetrograde tracingImmunohistochemistryCochleaNeuronal tracingPhodopusArginine VasopressinEndocrinologynervous systemchemistrySuperior olivary complexPituitary Adenylate Cyclase-Activating Polypeptidesense organsAnatomyhormones hormone substitutes and hormone antagonistsBiotechnologyAnatomical record (Hoboken, N.J. : 2007)
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