Search results for "Signal Transduction"

showing 10 items of 2020 documents

Intracellular signal transduction pathways in sponges.

1990

Abstract Sponges are the lowest multicellular eukaryotic organisms. Due to the relatively low specialization, and concomitantly the high differentiation and dedifferentiation potency of their cells, the sponge cell system has proven to be a useful model to study the mechanism of cell-cell adhesion on molecular levels. Results of detailed biochemical and cell biological studies with the main cell adhesion molecules, the aggregation factor (AF) and the aggregation receptor, led to the formation of the modulation theory of cell adhesion. The events of cell adhesion are contigent on a multiplicity of precisely coordinated intracellular signal transduction pathways. Using the marine sponge Geodi…

DNA synthesisCell adhesion moleculeCellMembrane ProteinsGeneral MedicineBiologyCell biologyPoriferaIntracellular signal transductionchemistry.chemical_compoundMicroscopy Electronmedicine.anatomical_structurechemistryLectinsmedicineCell AdhesionPhosphorylationAnimalsPhosphatidylinositolCell adhesionProtein kinase CProtein Kinase CSignal TransductionElectron microscopy reviews
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Requirement of the Lactobacillus casei MaeKR two-component system for L-malic acid utilization via a malic enzyme pathway.

2009

ABSTRACTLactobacillus caseican metabolizel-malic acid via malolactic enzyme (malolactic fermentation [MLF]) or malic enzyme (ME). Whereas utilization ofl-malic acid via MLF does not support growth, the ME pathway enablesL. caseito grow onl-malic acid. In this work, we have identified in the genomes ofL. caseistrains BL23 and ATCC 334 a cluster consisting of two diverging operons,maePEandmaeKR, encoding a putative malate transporter (maeP), an ME (maeE), and a two-component (TC) system belonging to the citrate family (maeKandmaeR). Homologous clusters were identified inEnterococcus faecalis,Streptococcus agalactiae,Streptococcus pyogenes, andStreptococcus uberis. Our results show that ME is …

DNA BacterialLactobacillus caseiHistidine KinaseMalic enzymeCatabolite repressionDNA FootprintingMalatesGenetics and Molecular Biologymedicine.disease_causeApplied Microbiology and Biotechnologychemistry.chemical_compoundBacterial ProteinsOperonmedicineEnterococcus faecalisDirect repeatPromoter Regions Geneticchemistry.chemical_classificationEcologybiologySequence Homology Amino AcidGene Expression Profilingfungifood and beveragesStreptococcusGene Expression Regulation Bacterialbiology.organism_classificationMolecular biologyAmino acidResponse regulatorLacticaseibacillus caseichemistryBiochemistryMultigene FamilyStreptococcus pyogenesMalic acidProtein KinasesMetabolic Networks and PathwaysFood ScienceBiotechnologyProtein BindingSignal TransductionTranscription FactorsApplied and environmental microbiology
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Phosphorylation and DNA binding of the regulator DcuR of the fumarate-responsive two-component system DcuSR of Escherichia coli

2004

The function of the response regulator DcuR of the DcuSR fumarate two-component sensory system of Escherichia coli was analysed in vitro. Isolated DcuR protein was phosphorylated by the sensory histidine kinase, DcuS, and ATP, or by acetyl phosphate. In gel retardation assays with target promoters (frdA, dcuB, dctA), phosphoryl DcuR (DcuR-P) formed a high-affinity complex, with an apparent K D (app. K D) of 0·2–0·3 μM DcuR-P, and a low-affinity (app. K D 0·8–2 μM) complex. The high-affinity complex was formed only with promoters transcriptionally-regulated by DcuSR, whereas low-affinity binding was seen also with some DcuSR-independent promoters. The binding site of DcuR-P at the dcuB promo…

DNA BacterialTranscription GeneticMolecular Sequence DataBiologymedicine.disease_causeMicrobiologychemistry.chemical_compoundFumaratesEscherichia colimedicinePhosphorylationBinding sitePromoter Regions GeneticEscherichia coliBinding SitesBase SequenceEscherichia coli ProteinsHistidine kinasePromoterGene Expression Regulation BacterialMolecular biologyTwo-component regulatory systemDNA-Binding ProteinsResponse regulatorchemistryBiochemistryPhosphorylationProtein KinasesDNASignal TransductionTranscription FactorsMicrobiology
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Tumor necrosis factor-alpha converting enzyme is processed by proprotein-convertases to its mature form which is degraded upon phorbol ester stimulat…

2003

Tumor necrosis factor-alpha converting enzyme (TACE or ADAM17) is a member of the ADAM (a disintegrin and metalloproteinase) family of type I membrane proteins and mediates the ectodomain shedding of various membrane-anchored signaling and adhesion proteins. TACE is synthesized as an inactive zymogen, which is subsequently proteolytically processed to the catalytically active form. We have identified the proprotein-convertases PC7 and furin to be involved in maturation of TACE. This maturation is negatively influenced by the phorbol ester phorbol-12-myristate-13-acetate (PMA), which decreases the cellular amount of the mature form of TACE in PMA-treated HEK293 and SH-SY5Y cells. Furthermore…

DNA ComplementaryTime FactorsADAM10Blotting WesternGenetic VectorsADAM17 ProteinTransfectionBiochemistryCell LineAmyloid beta-Protein PrecursorAlzheimer DiseaseZymogenEndopeptidasesPhorbol EstersCell AdhesionTumor Cells CulturedAnimalsAspartic Acid EndopeptidasesHumansSubtilisinsProtein kinase A signalingFurinProtein Kinase CProtein kinase CFurinMetalloproteinasebiologyChemistryMetalloendopeptidasesCyclic AMP-Dependent Protein KinasesPeptide FragmentsRatsCell biologyADAM ProteinsEctodomainBiochemistrybiology.proteinTetradecanoylphorbol AcetateCattleTumor necrosis factor alphaProprotein ConvertasesAmyloid Precursor Protein SecretasesSignal TransductionEuropean Journal of Biochemistry
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Characterization and phylogenetic analysis of a cDNA encoding the Fes/FER related, non-receptor protein-tyrosine kinase in the marine sponge Sycon ra…

1998

Abstract In search of ancient versions of phylogenetically conserved genes/proteins, which are typical for multicellular animals, we have decided to analyse marine sponges (Porifera), the most ancient and most primitive metazoan organisms. We report here the complete nucleotide sequence of Sycon raphanus cDNA coding for a 879 aa long protein (100 kDa), which displays high overall similarity in primary structure and organization of domains with non-receptor tyrosine kinases (TKs) from the Fes/FER family. The encoded protein, which we named Fes/FER_SR, has a highly conserved, 260 aa long tyrosine kinase domain at the C-terminus. Amino-terminal to the catalytic domain is an 85 aa long SH2 doma…

DNA Complementaryanimal structuresMolecular Sequence DataBiologySH2 domainHomology (biology)PhylogeneticsProto-Oncogene ProteinsComplementary DNAGeneticsAnimalsAmino Acid SequenceSycon raphanusPhylogenyGeneticsSequence Homology Amino AcidProtein primary structureNucleic acid sequenceSequence Analysis DNAGeneral MedicineProtein-Tyrosine Kinasesbiology.organism_classificationPoriferaBiochemistryOncogenes; Signal transduction; SH2 domain; Metazoa; Porifera; PhylogenySequence AlignmentTyrosine kinaseGene
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STAT Proteins: From Normal Control of Cellular Events to Tumorigenesis

2003

Signal transducers and activators of transcription (STAT) proteins comprise a family of transcription factors latent in the cytoplasm that participate in normal cellular events, such as differentiation, proliferation, cell survival, apoptosis, and angiogenesis following cytokine, growth factor, and hormone signaling. STATs are activated by tyrosine phosphorylation, which is normally a transient and tightly regulates process. Nevertheless, several constitutively activated STATs have been observed in a wide number of human cancer cell lines and primary tumors, including blood malignancies and solid neoplasias. STATs can be divided into two groups according to their specific functions. One is …

DNA-Binding ProteinsCell Transformation NeoplasticEukaryotic CellsSTAT1 Transcription FactorSettore MED/06 - Oncologia MedicaNeoplasmsSTATTrans-ActivatorsAnimalsHumansSignal TransductionTranscription Factors
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The primary structural photoresponse of phytochrome proteins captured by a femtosecond X-ray laser

2019

Phytochrome proteins control the growth, reproduction, and photosynthesis of plants, fungi, and bacteria. Light is detected by a bilin cofactor, but it remains elusive how this leads to activation of the protein through structural changes. We present serial femtosecond X-ray crystallographic data of the chromophore-binding domains of a bacterial phytochrome at delay times of 1 ps and 10 ps after photoexcitation. The data reveal a twist of the D-ring, which leads to partial detachment of the chromophore from the protein. Unexpectedly, the conserved so-called pyrrole water is photodissociated from the chromophore, concomitant with movement of the A-ring and a key signaling aspartate. The chan…

DYNAMICSQH301-705.5ScienceEXCITED-STATEDIFFRACTION010402 general chemistryPhotosynthesisphytochromes01 natural sciencesCofactor03 medical and health scienceschemistry.chemical_compoundDeinococcus radioduransPROTON-TRANSFERREVEALSSFXCRYSTAL-STRUCTUREBiology (General)Bilin030304 developmental biologyISOMERIZATION0303 health sciencesbiologyPhytochromeD-RINGChemistryCRYSTALLOGRAPHYinitial photoresponsQRChromophore0104 chemical sciencesPhotoexcitationFemtosecondbiology.proteinBiophysics1182 Biochemistry cell and molecular biologyMedicine3111 BiomedicinevalokemiaproteiinitSignal transductionröntgenkristallografia
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Principal component analysis on molecular descriptors as an alternative point of view in the search of new Hsp90 inhibitors

2009

Inhibiting a protein that regulates multiple signal transduction pathways in cancer cells is an attractive goal for cancer therapy. Heat shock protein 90 (Hsp90) is one of the most promising molecular targets for such an approach. In fact, Hsp90 is a ubiquitous molecular chaperone protein that is involved in folding, activating and assembling of many key mediators of signal transduction, cellular growth, differentiation, stress-response and apoptothic pathways. With the aim to analyze which molecular descriptors have the higher importance in the binding interactions of these classes, we first performed molecular docking experiments on the 187 Hsp90 inhibitors included in the BindingDB, a pu…

Databases FactualProtein ConformationDrug Evaluation PreclinicalCancer therapyPrincipal component analysiNaphtholsBiochemistryBinding databaseMolecular descriptorsStructure-Activity RelationshipStructural BiologyMolecular descriptorHeat shock proteinComputer SimulationHSP90 Heat-Shock ProteinsPrincipal Component AnalysisBinding SitesbiologyHeat shock proteinOrganic ChemistryComputational BiologyIsoxazolesHsp90Settore CHIM/08 - Chimica FarmaceuticaComputational MathematicsBiochemistryPurinesDocking (molecular)Principal component analysisMolecular dockingbiology.proteinPyrazolesBindingDBSignal transduction
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The histone deacetylase inhibitor suberoylanilide hydroxamic acid sensitizes human hepatocellular carcinoma cells to TRAIL-induced apoptosis by TRAIL…

2009

Abstract This paper shows that the histone deacetylase inhibitor SAHA sensitised at sub-toxic doses human hepatocellular carcinoma cells (HepG2, Hep3B and SK-Hep1) to TRAIL-induced apoptosis, while it was ineffective in primary human hepatocytes (PHHs). In particular in HCC cells SAHA increased the expression of death receptor 5 (DR5) and caused a decrement of c-Flip. These two modifications provoked in the presence of TRAIL the rapid production of TRAIL-DISC and the activation of caspase-8. Consequently SAHA/TRAIL combination induced many apoptotic events, such as a cleavage of Bid into tBid, dissipation of mitochondrial membrane potential, activation of caspase-3 with the consequent cleav…

Death Domain Receptor Signaling Adaptor ProteinsCancer Researchmedicine.medical_specialtyProgrammed cell deathCarcinoma Hepatocellularmedicine.drug_classmedicine.medical_treatmentBlotting WesternCASP8 and FADD-Like Apoptosis Regulating ProteinDown-RegulationAntineoplastic AgentsApoptosisBiologyHydroxamic AcidsHDACI TRAIL apoptosisInternal medicineSettore BIO/10 - BiochimicamedicineHumansProtein kinase BVorinostatLiver NeoplasmsHistone deacetylase inhibitorNF-kappa Bmedicine.diseaseReceptors TNF-Related Apoptosis-Inducing LigandCytokineEndocrinologyOncologyDrug Resistance NeoplasmApoptosisHepatocellular carcinomaCancer researchTumor necrosis factor alphaSignal transductionProto-Oncogene Proteins c-akt
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CD95 death-inducing signaling complex formation and internalization occur in lipid rafts of type I and type II cells

2004

We investigated the membrane localization of CD95 in type I and type II cells, which differ in their ability to recruit and activate caspase-8. We found that CD95 was preferentially located in lipid rafts of type I cells, while it was present both in raft and non-raft plasma membrane sub-domains of type II cells. After stimulation, CD95 located in phospholipid-rich plasma membrane was recruited to lipid rafts in both types of cells. Similarly, CD95 cross-linking resulted in caspase-independent translocation of FADD/MORT1 and caspase-8 to the lipid rafts, which was prevented by a death domain-defective receptor. CD95 internalization was then rapid in type I and delayed in type II cells and s…

Death Domain Receptor Signaling Adaptor ProteinsEndosomeT-Lymphocytesmedia_common.quotation_subjectImmunologyApoptosisReceptors Tumor Necrosis FactorCell LineMembrane MicrodomainsSettore MED/04 - PATOLOGIA GENERALECell Line TumorReceptorsHumansImmunology and Allergyfas ReceptorFADDInternalizationLipid raftLipid raftsDeath domainmedia_commonTumorbiologyVesicleFas receptorEndocytosisCell biologyProtein TransportCholesterolCD95 death-inducing signaling complexCaspasesCD95biology.proteinlipids (amino acids peptides and proteins)biological phenomena cell phenomena and immunityCaspase-8Tumor Necrosis FactorCaspase-8; CD95; Lipid rafts; Apoptosis; Caspases; Cell Line Tumor; Cholesterol; Death Domain Receptor Signaling Adaptor Proteins; Humans; Membrane Microdomains; Protein Binding; Protein Transport; Receptors Tumor Necrosis Factor; T-Lymphocytes; fas Receptor; Endocytosis; Signal Transduction; Immunology and Allergy; ImmunologyProtein BindingSignal TransductionEuropean Journal of Immunology
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