Search results for "Beta-catenin"

showing 10 items of 21 documents

Dynamics and predicted drug response of a gene network linking dedifferentiation with β-catenin dysfunction in hepatocellular carcinoma

2019

Background & Aims Alterations of individual genes variably affect the development of hepatocellular carcinoma (HCC). Thus, we aimed to characterize the function of tumor-promoting genes in the context of gene regulatory networks (GRNs). Methods Using data from The Cancer Genome Atlas, from the LIRI-JP (Liver Cancer – RIKEN, JP project), and from our transcriptomic, transfection and mouse transgenic experiments, we identify a GRN which functionally links LIN28B-dependent dedifferentiation with dysfunction of β-catenin (CTNNB1). We further generated and validated a quantitative mathematical model of the GRN using human cell lines and in vivo expression data. Results We found that LIN28B and C…

0301 basic medicineBeta-cateninCarcinoma HepatocellularHepatocellular carcinomaLIN28BCellGene regulatory networkPrincipal component analysisMice TransgenicBiologyTransfectionTranscriptomeCohort Studies03 medical and health sciencesMice0302 clinical medicineMathematical modelmicroRNAmedicineAnimalsHumansGene Regulatory NetworksCTNNB1Genebeta CateninHepatologySequence Analysis RNALiver NeoplasmsGene regulatory networkRNA-Binding ProteinsHGF/MET pathwayMicroRNAHep G2 CellsHCCSModels TheoreticalPrognosisPersonalized medicinedigestive system diseases030104 developmental biologymedicine.anatomical_structureCancer researchSMARCA4biology.protein030211 gastroenterology & hepatologyTranscriptome
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Effects of mutations in Wnt/β-catenin, hedgehog, Notch and PI3K pathways on GSK-3 activity—Diverse effects on cell growth, metabolism and cancer

2016

Glycogen synthase kinase-3 (GSK-3) is a serine/threonine kinase that participates in an array of critical cellular processes. GSK-3 was first characterized as an enzyme that phosphorylated and inactivated glycogen synthase. However, subsequent studies have revealed that this moon-lighting protein is involved in numerous signaling pathways that regulate not only metabolism but also have roles in: apoptosis, cell cycle progression, cell renewal, differentiation, embryogenesis, migration, regulation of gene transcription, stem cell biology and survival. In this review, we will discuss the roles that GSK-3 plays in various diseases as well as how this pivotal kinase interacts with multiple sign…

0301 basic medicineMAPK/ERK pathwaySettore MED/06 - Oncologia MedicaCellular differentiationPI3KTargeted therapyGlycogen Synthase Kinase 3Phosphatidylinositol 3-Kinases0302 clinical medicineGSK-3Neoplasmsbeta CateninGSK-3biologyReceptors NotchKinaseWnt signaling pathwayWnt/beta-cateninCell DifferentiationCell biologyGene Expression Regulation Neoplastic030220 oncology & carcinogenesismTORAkt; GSK-3; Hedgehog; Notch; PI3K; Targeted therapy; Therapy resistance; Wnt/beta-catenin; mTORSignal TransductionBeta-cateninNotchAkt GSK-3 Hedgehog mTOR Notch PI3K Targeted therapy Therapy resistance Wnt/beta-cateninCell Survivalmacromolecular substancesNO03 medical and health sciencesAkt; GSK-3 Hedgehog Notch PI3K Targeted therapy Therapy resistance Wnt/beta-catenin mTORAnimalsHumansHedgehog ProteinsProtein kinase BMolecular BiologyPI3K/AKT/mTOR pathwayCell ProliferationAktTherapy resistanceAkt; GSK-3; Hedgehog; mTOR; Notch; PI3K; Targeted therapy; Therapy resistance; Wnt/beta-catenin; Molecular Biology; Cell BiologyCell BiologyWnt ProteinsMicroRNAs030104 developmental biologyMutationCancer researchbiology.proteinTumor Suppressor Protein p53Hedgehog
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Roles of GSK-3 and microRNAs on epithelial mesenchymal transition and cancer stem cells.

2017

// James A. McCubrey 1 , Timothy L. Fitzgerald 2 , Li V. Yang 3 , Kvin Lertpiriyapong 4 , Linda S. Steelman 1 , Stephen L. Abrams 1 , Giuseppe Montalto 5,6 , Melchiorre Cervello 6 , Luca M. Neri 7 , Lucio Cocco 8 , Alberto M. Martelli 8 , Piotr Laidler 9 , Joanna Dulinska-Litewka 9 , Dariusz Rakus 10 , Agnieszka Gizak 10 , Ferdinando Nicoletti 11 , Luca Falzone 11 , Saverio Candido 11 and Massimo Libra 11 1 Department of Microbiology and Immunology, Brody School of Medicine at East Carolina University, Greenville, NC, USA 2 Department of Surgery, Brody School of Medicine at East Carolina University, Greenville, NC, USA 3 Department of Internal Medicine, Hematology/Oncology Section, Brody Sc…

0301 basic medicineOncologyGerontologycancer stem cellsmedicine.medical_specialtyEpithelial-Mesenchymal TransitionReviewPI3KNO03 medical and health sciencesGlycogen Synthase Kinase 30302 clinical medicineCancer stem cellGSK-3Internal medicinemicroRNAmedicineAnimalsHumansPTENEpithelial–mesenchymal transitionProtein kinase BPI3K/AKT/mTOR pathwayGSK-3biologybusiness.industryAnimalCancer stem cellAktWnt signaling pathwayWnt/beta-cateninMicroRNAMicroRNAsGSK-3 cancer stem cells Wnt/beta-catenin PI3K Akt030104 developmental biologyOncology030220 oncology & carcinogenesisNeoplastic Stem Cellsbiology.proteinNeoplastic Stem CellAkt; GSK-3; PI3K; Wnt/beta-catenin; cancer stem cellsbusinessHumanSignal Transduction
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Diseño por Topología molecular y ensayos farmacológicos de nuevos inhibidores frente a WNT/β-CATENINA Y PI3K/Akt/mTOR

2015

El cáncer colorrectal y el de próstata causan una elevadísima tasa de muerte a nivel mundial. Por lo que, cualquier estrategia para detener o al menos reducir su desarrollo y progresión sería una importante contribución en la investigación actual. Por todo ello, el objetivo principal de la presente Tesis es la identificación de nuevos agentes quimiopreventivos frente al cáncer, que actúen modulando dos de las vías más implicadas en su desarrollo: PI3K/Akt/mTOR y Wnt/β-catenina. Hoy en día, existen diferentes enfoques para el descubrimiento de nuevos hits and leads, pero esta Tesis se centra en la metodología de la Topología Molecular, que ya ha demostrado su extraordinaria eficacia en este …

239001Cáncer de próstataQSARAktTopología molecularCáncer colorrectalDiseño de fármacos320990beta-catenina
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Could beta-catenin regulate the expression of proteolitic enzymes during angiogenesis?

2009

During angiogenesis several modifications occurs at endothelial cell plasma membrane level as: MT-MMPs and serine integral membrane proteases (SIMPs) over-expression. Moreover, when endothelial cells during angiogenesis acquired a mesenchymal phenotype the cell-cell interactions mediate by cadherins are lost and β-catenin, a stabilizer of interaction occurring between cadherins and cytoscheleton, can translocate to the nucleus where acts as transcription factor in association to TCF/LEF. Our experiments were focalized to the expression/activation of proteolytic enzymes when cell-cell contacts are perturbed, by mechanical or site specific perturbations. We have analyzed the mRNA, proteins an…

AngiogenesiECM remodelingBeta-cateninSettore BIO/10 - BiochimicaCell migrationProtease
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Wnt activity defines colon cancer stem cells and is regulated by the microenvironment.

2010

Despite the presence of mutations in APC or beta-catenin, which are believed to activate the Wnt signalling cascade constitutively, most colorectal cancers show cellular heterogeneity when beta-catenin localization is analysed, indicating a more complex regulation of Wnt signalling. We explored this heterogeneity with a Wnt reporter construct and observed that high Wnt activity functionally designates the colon cancer stem cell (CSC) population. In adenocarcinomas, high activity of the Wnt pathway is observed preferentially in tumour cells located close to stromal myofibroblasts, indicating that Wnt activity and cancer stemness may be regulated by extrinsic cues. In agreement with this noti…

Beta-cateninColorectal cancerTransplantation HeterologousMice NudeBiologyMiceCancer stem cellParacrine CommunicationmedicineAnimalsHumansAPC microenvironmentbeta CateninHepatocyte Growth FactorWnt signaling pathwayLRP6LRP5Cell BiologyNeoplasms ExperimentalFibroblastsmedicine.diseaseCoculture TechniquesCell biologyNeoplasm ProteinsWnt ProteinsColonic Neoplasmsbiology.proteinNeoplastic Stem CellsHepatocyte growth factorStem cellmedicine.drugSignal Transduction
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Convergence of Wnt signaling on the HNF4alpha-driven transcription in controlling liver zonation.

2009

Background & Aims: In each hepatocyte, the specific repertoire of gene expression is influenced by its exact location along the portocentrovenular axis of the hepatic lobule and provides a reason for the liver functions compartmentalization defined "metabolic zonation." So far, few molecular players controlling genetic programs of periportal (PP) and perivenular (PV) hepatocytes have been identified; the elucidation of zonation mechanisms remains a challenge for experimental hepatology. Recently, a key role in induction and maintenance of the hepatocyte heterogeneity has been ascribed to Wnt/β-catenin pathway. We sought to clarify how this wide-ranging stimulus integrates with hepatocyte s…

Beta-cateninWnt ProteinCellular differentiationBlotting WesternLiver Stem CellFluorescent Antibody TechniqueMice TransgenicBiologyTransfectionSensitivity and SpecificityAnimals; Blotting Western; Cell Differentiation; Cell Proliferation; Cells Cultured; Fluorescent Antibody Technique; Hepatocyte Nuclear Factor 4; Hepatocytes; Humans; Immunoprecipitation; Mice; Mice Knockout; Mice Transgenic; Reverse Transcriptase Polymerase Chain Reaction; Sensitivity and Specificity; Signal Transduction; Transfection; Wnt Proteins; beta Catenin; GastroenterologyMiceliver zonation; wnt signalling; beta catenin; hnf4Gene expressionmedicineAnimalsHumansImmunoprecipitationHepatocyteCells Culturedbeta CateninCell ProliferationMice KnockoutHepatologyAnimalReverse Transcriptase Polymerase Chain ReactionGastroenterologyWnt signaling pathwayCell DifferentiationMolecular biologyWnt Proteinsmedicine.anatomical_structureHepatocyte nuclear factor 4Hepatocyte Nuclear Factor 4Hepatocytebiology.proteinHepatocytesChromatin immunoprecipitationHumanSignal TransductionGastroenterology
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β-Catenin Activation Regulates Tissue Growth Non–Cell Autonomously in the Hair Stem Cell Niche

2014

Coordinated Hair Growth Wnt/β-catenin signaling is a key pathway that plays a conserved role in regulating stem cell function during adult tissue regeneration. Using time-lapse imaging of live mice, Deschene et al. (p. 1353 ) show that genetic activation of β-catenin within hair follicle stem cells generates axes of hair growth by coordinated cell divisions and cell movements, even when the normal niches—the dermal papillae—are laser-ablated. Activated β-catenin enhances Wnt ligand secretion, and these ligands can then activate Wnt signaling in adjacent cells that do not have activated β-catenin, indicating how activated stem cells could influence neighboring cells during normal growth and …

Beta-cateninWnt ProteinCellular differentiationLigandBiologyLigandsModels BiologicalArticleMiceStem CellmedicineAnimalsStem Cell NicheAnimals; Cell Differentiation; Cell Division; Hair; Hair Follicle; Ligands; Mice; Models Biological; Mutation; Stem Cell Niche; Stem Cells; Tamoxifen; Up-Regulation; Wnt Proteins; beta Catenin; Wnt Signaling Pathway; Medicine (all); MultidisciplinaryWnt Signaling Pathwaybeta CateninMultidisciplinaryintegumentary systemAnimalStem CellsMedicine (all)Regeneration (biology)Mesenchymal stem cellWnt signaling pathwayCell DifferentiationHair follicleUp-RegulationCell biologyWnt ProteinsTamoxifenmedicine.anatomical_structureCateninMutationbiology.proteinStem cellHair FollicleCell DivisionHairScience
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Sodium butyrate induces apoptosis in human hepatoma cells by a mitochondria/caspase pathway, associated with degradation of beta-catenin, pRb and Bcl…

2004

Butyrate can promote programmed cell death in a number of tumour cells in vitro. This paper provides evidence that butyrate induces apoptosis in human hepatoma HuH-6 and HepG2 cells but is ineffective in Chang liver cells, an immortalised non-tumour cell line. In both HuH-6 and HepG2 cells, apoptosis appeared after a lag period of approximately 16 h and increased rapidly during the second day of treatment. In particular, the effect was stronger in HuH-6 cells, which were, therefore, chosen for ascertaining the mechanism of butyrate action. In HuH-6 cells, beta-catenin seemed to exert an important protective role against apoptosis, since pretreatment with beta-catenin antisense ODN reduced t…

Cancer ResearchProgrammed cell deathbeta-CateninCarcinoma HepatocellularBlotting Westernbcl-X ProteinCaspase 3Bcl-xLApoptosisButyrateCell LineMembrane Potentialschemistry.chemical_compoundSettore BIO/10 - BiochimicaCyclin DCyclinsCyclin EHumansCaspasebeta CateninbiologyReverse Transcriptase Polymerase Chain ReactionCytochrome cLiver NeoplasmsSodium butyrateMolecular biologyButyratesCytoskeletal ProteinspRbOncologychemistryProto-Oncogene Proteins c-bcl-2ApoptosisCaspasesbiology.proteinTrans-ActivatorsPoly(ADP-ribose) PolymerasesEuropean journal of cancer (Oxford, England : 1990)
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Multifaceted roles of GSK-3 and Wnt/beta-catenin in hematopoiesis and leukemogenesis: opportunities for therapeutic intervention

2013

Glycogen synthase kinase-3 (GSK-3) is well documented to participate in a complex array of critical cellular processes. It was initially identified in rat skeletal muscle as a serine/threonine kinase that phosphorylated and inactivated glycogen synthase. This versatile protein is involved in numerous signaling pathways that influence metabolism, embryogenesis, differentiation, migration, cell cycle progression and survival. Recently, GSK-3 has been implicated in leukemia stem cell pathophysiology and may be an appropriate target for its eradication. In this review, we will discuss the roles that GSK-3 plays in hematopoiesis and leukemogenesis as how this pivotal kinase can interact with mul…

MAPK/ERK pathwayCancer ResearchBeta-catenintherapy resistanceCarcinogenesisWnt ProteinReviewmacromolecular substancesAkt; GSK-3; leukemia stem cells; targeted therapy; therapy resistance; Wnt/b-cateninWNTGlycogen Synthase Kinase 3GSK-3PTENAnimalsHumansHematopoiesiProtein kinase BCarcinogenesiPI3K/AKT/mTOR pathwaybeta CateninWnt/β-cateninGSK-3LeukemiabiologyAnimalKinaseAktleukemia stem cellWnt signaling pathwayHematologyleukemia stem cellstargeted therapy3. Good healthHematopoiesisWnt ProteinsAnesthesiology and Pain MedicineOncologyCancer researchbiology.proteinWnt/b-cateninHuman
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