Search results for "RHOA"

showing 10 items of 52 documents

Reduction of tumor necrosis factor-alpha (TNF-α) related nuclear factor-kappaB (NF-κB) translocation but not inhibitor kappa-B (Iκ-B)-degradation by …

2002

Degradation of inhibitor kappa-B (Ikappa-B) followed by translocation of nuclear factor-kappaB (NF-kappaB) into the nucleus and activation of gene expression is essential in tumor necrosis factor-alpha (TNF-alpha)-signaling. In order to analyze the role of Rho proteins in TNF-alpha-induced NF-kappaB-activation in human umbilical cord vein endothelial cells (HUVEC) we used Clostridium difficile toxin B-10463 (TcdB-10463) which inactivates RhoA/Rac1/Cdc42 by glucosylation and Clostridium botulinum C3-toxin which inhibits RhoA/B/C by ADP-ribosylation. Exposure of HUVEC to 10 ng/mL TcdB-10463 or 2.5 microg/mL C3-toxin inhibited TNF-alpha (100 ng/mL)-induced expression of a NF-kappaB-dependent r…

PharmacologyTRAF2RHOATumor Necrosis Factor-alphaNF-kappa BClostridium difficile toxin ABiological TransportRAC1Chromosomal translocationDNABiologyBiochemistryMolecular biologyRho kinase inhibitorbiology.proteinHumansI-kappa B ProteinsTumor necrosis factor alphaEndothelium VascularInterleukin 8rhoA GTP-Binding ProteinCells CulturedBiochemical Pharmacology
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Cigarette smoke exposure up-regulates endothelin receptor B in human pulmonary artery endothelial cells: molecular and functional consequences

2010

BACKGROUND AND PURPOSE Pulmonary arteries from smokers and chronic obstructive pulmonary disease patients show abnormal endothelium-dependent vascular reactivity. We studied the effect of cigarette smoke extract (CSE) on endothelin receptor B (ETB) expression in human pulmonary artery endothelial cells (HPAECs) and its role in endothelial dysfunction. EXPERIMENTAL APPROACH ETB receptor expression was measured by real time RT-PCR, Western blot and immunofluorescence. Cell contraction, intracellular Ca2+, F/G-actin, RhoA activity, myosin light chain phosphorylation, ET, NO, thromboxane (Tx)A2 and reactive oxygen species (ROS) were measured by traction microscopy, fluorescence microscopy, phal…

Pharmacologymedicine.medical_specialtyMyosin light-chain kinaseRHOAEndotheliumbiologyChemistryPharmacologyEndothelin 1Bosentanmedicine.anatomical_structureEndocrinologyInternal medicinemedicinebiology.proteinReceptorEndothelin receptorRho-associated protein kinasemedicine.drugBritish Journal of Pharmacology
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A role for Rho in receptor- and G protein-stimulated phospholipase C Reduction in phosphatidylinositol 4,5-bisphosphate by Clostridium difficile toxi…

1996

Receptors coupled to heterotrimeric guanine nucleotide-binding proteins (G proteins) activate phosphatidylinositol 4,5-bisphosphate (PtdIns(4,5)P2)-hydrolyzing phospholipase C (PLC) enzymes by activated alpha of free beta gamma subunits of the relevant G proteins. To study whether low molecular weight G proteins of the Rho family are involved in receptor signaling to PLC, we examined the effect of Clostridium difficile toxin B, which glucosylates and thereby inactivates Rho proteins, on the regulation of PLC activity in human embryonic kidney (HEK) cells stably expressing the m3 muscarinic acetylcholine receptor (mAChR) subtype. Toxin B treatment of HEK cells did not affect basal PLC activi…

Phosphatidylinositol 45-DiphosphateBotulinum ToxinsG proteinBacterial ToxinsClostridium difficile toxin AClostridium difficile toxin BBiologychemistry.chemical_compoundBacterial ProteinsGTP-Binding ProteinsHeterotrimeric G proteinHumansPhosphatidylinositolCells CulturedADP Ribose TransferasesPharmacologyPhospholipase CHEK 293 cellsGeneral MedicineReceptors MuscarinicMolecular biologyCell biologychemistryPhosphatidylinositol 45-bisphosphateType C PhospholipasesrhoA GTP-Binding ProteinNaunyn-Schmiedeberg's Archives of Pharmacology
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Rho-mediated activation of PI(4)P5K and lipid second messengers is necessary for promotion of angiogenesis by Semaphorin 4D

2011

Phosphatidylinositol 4-phosphate 5-kinase (PI(4)P5K) is a type I lipid kinase that generates the lipid second messenger phospholipid phosphatidylinositol 4,5-bisphosphate (PI(4,5)P2) and functions downstream of RhoA in actin organization. It is known to play an essential role in neurite remodeling, yielding a phenotype identical to that seen in cells treated with Semaphorin 4D (Sema4D), a protein that regulates proliferation, adhesion and migration in many different cell types. Plexin-B1, the receptor for Sema4D, activates RhoA in order to generate a pro-angiogenic signal in endothelial cells. Therefore, we looked in human umbilical vein endothelial cells (HUVEC) to determine if Plexin-B1 e…

Phosphatidylinositol 45-DiphosphateCancer ResearchRHOAPhysiologyAngiogenesisSemaphorin 4DClinical BiochemistrySEMA4DNeovascularization PhysiologicNerve Tissue ProteinsReceptors Cell SurfaceSemaphorinsSynaptojaninBiologySecond Messenger SystemsArticlePI(45)P2chemistry.chemical_compoundAntigens CDRhoSettore BIO/10 - BiochimicaHumansPlexin B1PhosphatidylinositolRho-associated protein kinaseCytoskeletonrho-Associated KinasesPI(4)P5KKinaseCell biologyPhosphotransferases (Alcohol Group Acceptor)AngiogenesiHEK293 CellschemistrySecond messenger systembiology.proteinCalciumrhoA GTP-Binding ProteinAngiogenesis
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Activation of the p75 neurotrophin receptor through conformational rearrangement of disulphide-linked receptor dimers.

2009

Ligand-mediated dimerization has emerged as a universal mechanism of growth factor receptor activation. Recent structural studies have shown that neurotrophins interact with dimers of the p75 neurotrophin receptor (p75NTR), but the actual mechanism of receptor activation has remained elusive. Here we show that p75NTR forms disulphide-linked dimers independently of neurotrophin binding through the highly conserved Cys257 in its transmembrane domain. Mutation of Cys257 abolished neurotrophin-dependent receptor activity but did not affect downstream signaling by the p75NTR/NgR/Lingo-1 complex in response to MAG, indicating the existence of distinct, ligand-specific activation mechanisms for p7…

Protein ConformationMutantNeuronesReceptor Nerve Growth FactorMiceProtein structureChlorocebus aethiopsNerve Growth FactorLow-affinity nerve growth factor receptorRNA Small InterferingReceptorskin and connective tissue diseasesReceptors neuralsCells CulturedNeuronsCell DeathGeneral NeuroscienceNF-kappa BCell biologyTransmembrane domainSIGNALINGOligopeptidesNeurotrophinProtein BindingSignal Transductionmusculoskeletal diseasesPROTEINSNeuroscience(all)Green Fluorescent ProteinsNerve Tissue ProteinsReceptors Nerve Growth FactorSuperior Cervical GanglionBiologyTransfectionMOLNEUROArticleGrowth factor receptorAnimalsHumansProtein Interaction Domains and MotifsReceptors Growth FactorCysteineBinding SitesMembrane Proteinsbiological factorsRatsnervous systemAnimals NewbornNeurotrophin bindingMutationbiology.proteinsense organsProtein MultimerizationrhoA GTP-Binding ProteinProteïnesNeuron
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Exosomes from metastatic cancer cells transfer amoeboid phenotype to non-metastatic cells and increase endothelial permeability: their emerging role …

2017

AbstractThe goal of this study was to understand if exosomes derived from high-metastatic cells may influence the behavior of less aggressive cancer cells and the properties of the endothelium. We found that metastatic colon cancer cells are able to transfer their amoeboid phenotype to isogenic primary cancer cells through exosomes, and that this morphological transition is associated with the acquisition of a more aggressive behavior. Moreover, exosomes from the metastatic line (SW620Exos) exhibited higher ability to cause endothelial hyperpermeability than exosomes from the non metastatic line (SW480Exos). SWATH-based quantitative proteomic analysis highlighted that SW620Exos are signific…

Proteomics0301 basic medicineRHOAEndotheliummetastatic cancer cellScienceCell PlasticityContext (language use)ExosomesArticlePermeability03 medical and health sciences0302 clinical medicineSettore BIO/13 - Biologia ApplicataCell Line Tumormetastatic cancer cells; Exosomes; tumor heterogeneitytumor heterogeneityHuman Umbilical Vein Endothelial CellsmedicineHumansEndotheliumrho-Associated KinasesMultidisciplinarybiologyQThrombinRPhenotypeMicrovesicles3. Good healthCell biologyEndothelial stem cellExosomePhenotype030104 developmental biologymedicine.anatomical_structureTumor progression030220 oncology & carcinogenesisColonic NeoplasmsCancer cellbiology.proteinMedicinerhoA GTP-Binding ProteinSignal Transduction
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Rho protein inactivation induced apoptosis of cultured human endothelial cells.

2002

Small GTP-binding Rho GTPases regulate important signaling pathways in endothelial cells, but little is known about their role in endothelial cell apoptosis. Clostridial cytotoxins specifically inactivate GTPases by glucosylation [ Clostridium difficile toxin B-10463 (TcdB-10463), C. difficile toxin B-1470 (TcdB-1470)] or ADP ribosylation ( C. botulinum C3 toxin). Exposure of human umbilical cord vein endothelial cells (HUVEC) to TcdB-10463, which inhibits RhoA/Rac1/Cdc42, or to C3 toxin, which inhibits RhoA, -B, -C, resulted in apoptosis, whereas inactivation of Rac1/Cdc42 with TcdB-1470 was without effect, suggesting that Rho inhibition was responsible for endothelial apoptosis. Disruptio…

Pulmonary and Respiratory Medicinerac1 GTP-Binding Proteinrho GTP-Binding ProteinsProgrammed cell deathUmbilical VeinsEndotheliumPhysiologyBacterial ToxinsCASP8 and FADD-Like Apoptosis Regulating ProteinApoptosisBcl-2-associated X proteinBacterial ProteinsPhysiology (medical)Proto-Oncogene ProteinsmedicineCyclic AMPIn Situ Nick-End LabelingHumanscdc42 GTP-Binding ProteinCells Culturedbcl-2-Associated X ProteinAdenosine Diphosphate RibosebiologyCaspase 3Intracellular Signaling Peptides and ProteinsCell BiologyCaspase 9Cell biologyNeoplasm ProteinsEndothelial stem cellmedicine.anatomical_structureCdc42 GTP-Binding ProteinProto-Oncogene Proteins c-bcl-2Cell cultureApoptosisCaspasesbiology.proteinMyeloid Cell Leukemia Sequence 1 ProteinEndothelium VascularSignal transductionCarrier ProteinsrhoA GTP-Binding ProteinBH3 Interacting Domain Death Agonist ProteinSignal TransductionAmerican journal of physiology. Lung cellular and molecular physiology
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The Enterotoxin from Clostridium difficile (ToxA) Monoglucosylates the Rho Proteins

1995

The enterotoxin from Clostridium difficile (ToxA) is one of the causative agents of the antibiotic-associated pseudomembranous colitis. In cultured monolayer cells ToxA exhibits cytotoxic activity to induce disassembly of the actin cytoskeleton, which is accompanied by morphological changes. ToxA-induced depolymerization of actin filaments is correlated with a decrease in the ADP-ribosylation of the low molecular mass GTP-binding Rho proteins (Just, I., Selzer, J., von Eichel-Streiber, C., and Aktories, K. (1995) J. Clin. Invest. 95, 1026-1031). Here we report on the identification of the ToxA-induced modification of Rho. Applying electrospray mass spectrometry, the mass of the modification…

RHOAGlycoside HydrolasesBacterial ToxinsClostridium difficile toxin ARAC1macromolecular substancesEnterotoxinBiochemistrySubstrate SpecificityEnterotoxinsGTP-Binding ProteinsTumor Cells CulturedAmino AcidsMolecular BiologyActinbiologyMolecular massClostridioides difficileCell BiologyPseudomembranous colitisActin cytoskeletonMolecular biologycarbohydrates (lipids)GlucoseBiochemistrybiology.proteinrhoA GTP-Binding ProteinJournal of Biological Chemistry
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Rho prevents apoptosis through Bcl-2 expression: Implications for interleukin-2 receptor signal transduction

1997

Here we describe a Rho-mediated apoptosis suppression pathway driven by Bcl-2 expression in the interleukin (IL)-4- or IL-2-dependent murine T cell line TS1 alpha beta. IL-2, but not IL-4, induces Bcl-2 expression through RhoA activation which is inhibited by the specific Rho family inhibitor, Clostridium difficile Toxin B, as well as by a dominant negative RhoA mutant. Using transient transfections of RhoA mutants tagged with the vesicular stomatitis virus glycoprotein, we show that a constitutively active RhoA mutant induces Bcl-2 expression and prevents apoptosis upon IL-4 withdrawal. Finally, we have identified the signaling pathway involved together with RhoA in Bcl-2 induction and sho…

RHOAImmunologyDown-RegulationClostridium difficile toxin AApoptosisClostridium difficile toxin BTransfectionCell LineMicePhosphatidylinositol 3-Kinaseschemistry.chemical_compoundGTP-Binding ProteinsAnimalsHumansImmunology and AllergyPhosphatidylinositolProtein kinase AProtein Kinase CbiologyKinaseInterleukinReceptors Interleukin-2Molecular biologyCell biologyProto-Oncogene Proteins c-bcl-2chemistrybiology.proteinInterleukin-2Signal transductionrhoA GTP-Binding ProteinSignal TransductionEuropean Journal of Immunology
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Inhibition of Rac1 GTPase Decreases Vascular Oxidative Stress, Improves Endothelial Function, and Attenuates Atherosclerosis Development in Mice

2021

Aims: Oxidative stress and inflammation contribute to atherogenesis. Rac1 GTPase regulates pro-oxidant NADPH oxidase activity, reactive oxygen species (ROS) formation, actin cytoskeleton organization and monocyte adhesion. We investigated the vascular effects of pharmacological inhibition of Rac1 GTPase in mice.Methods and Results: We treated wild-type and apolipoprotein E-deficient (ApoE−/−) mice with Clostridium sordellii lethal toxin (LT), a Rac1 inhibitor, and assessed vascular oxidative stress, expression and activity of involved proteins, endothelial function, macrophage infiltration, and atherosclerosis development. LT-treated wild-type mice displayed decreased vascular NADPH oxidase…

RHOAInflammationVascular permeabilityfree radicalsPharmacologyCardiovascular Medicinemedicine.disease_causeActin cytoskeleton organizationendothelial functionmedicineoxidative stressDiseases of the circulatory (Cardiovascular) systemddc:610Endothelial dysfunctionOriginal Researchchemistry.chemical_classificationReactive oxygen speciesNADPH oxidaseGTPasesbiologymedicine.diseasechemistryatherosclerosis endothelial function oxidative stress free radicals Rac1 GTPasesRC666-701biology.proteinmedicine.symptomatherosclerosisCardiology and Cardiovascular MedicineOxidative stressRac1Frontiers in Cardiovascular Medicine
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