Search results for "HSP90 Heat-Shock Protein"

showing 10 items of 48 documents

Aldehyde dehydrogenase and HSP90 co-localize in human glioblastoma biopsy cells.

2013

The concept of a stem cell subpopulation as understood from normal epithelial tissue or bone marrow function has been extended to our understanding of cancer tissue and is now the target of treatment efforts specifically directed to this subpopulation. In glioblastoma, as well as in other cancers, increased expression of aldehyde dehydrogenase (ALDH) has been found localized within a minority sub-population of tumor cells which demonstrate stem cell properties. A separate body of research associated increased expression of heat-shock protein-90 (HSP90) with stem cell attributes. We present here results from our initial immunohistochemistry study of human glioblastoma biopsy tissue where bot…

Aldehyde dehydrogenasePharmacologyBiochemistryAldehyde dehydrogenase; Disulfiram; Glioblastoma; HSP90; Ritonavir; Stem cell; TemozolomideCancer stem cellBiopsyDisulfirammedicineTemozolomideHSP90HumansHSP90 Heat-Shock ProteinsTemozolomideRitonavirStem cellmedicine.diagnostic_testbiologyCancerGeneral MedicineAldehyde Dehydrogenasemedicine.diseaseGene Expression Regulation NeoplasticProtein Transportmedicine.anatomical_structurebiology.proteinCancer researchImmunohistochemistryBone marrowStem cellGlioblastomamedicine.drugBiochimie
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Synthesis and biological activities of a new class of heat shock protein 90 inhibitors, designed by energy-based pharmacophore virtual screening

2013

The design through energy-based pharmacophore virtual screening has led to aminocyanopyridine derivatives as efficacious new inhibitors of Hsp90. The synthesized compounds showed a good affinity for the Hsp90 ATP binding site in the competitive binding assay. Moreover, they showed an excellent antiproliferative activity against a large number of human tumor cell lines. Further biological studies on the derivative with the higher EC50 confirmed its specific influence on the cellular pathways involving Hsp90.

AminopyridinesInhibitory Concentration 50Structure-Activity RelationshipUser-Computer InterfaceHeat shock proteinCell Line TumorSettore BIO/10 - BiochimicaDrug DiscoveryHumansHSP90 Heat-Shock ProteinsBinding siteVirtual screeningheat shock protein 90 inhibitors energy-based pharmacophore virtual screening cell cycle antiproliferative activitybiologyChemistryHsp90Combinatorial chemistrySettore CHIM/08 - Chimica FarmaceuticaHuman tumorMolecular Docking SimulationCell cultureDrug DesignEnergy basedbiology.proteinMolecular MedicinePharmacophoreDrug Screening Assays Antitumor
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Inhibition of HSP70: a challenging anti-cancer strategy.

2012

HSP70 is a chaperone that accumulates in the cells after many different stresses promoting cell survival in response to the adverse conditions. In contrast to normal cells, most cancer cells abundantly express HSP70 at the basal level to resist to various insults at different stages of tumorigenesis and during anti-cancer treatment. This cancer cells addiction for HSP70 is the rational for its targeting in cancer therapy. Much effort has been dedicated in the last years for the active search of HSP70 inhibitors. Additionally, the recent clinical trials on highly promising inhibitors of another stress protein, HSP90, showed compensatory increase in HSP70 levels and raised the question of nec…

Cancer ResearchAntineoplastic AgentsApoptosismedicine.disease_cause03 medical and health sciences0302 clinical medicineImmune systemStress PhysiologicalHeat shock proteinNeoplasmsmedicineAutophagyAnimalsHumansHSP70 Heat-Shock ProteinsHSP90 Heat-Shock ProteinsMolecular Targeted Therapy030304 developmental biology0303 health sciencesbiologyHsp903. Good healthNeoplasm ProteinsProtein Structure TertiaryClinical trialOncologyApoptosisDrug Resistance Neoplasm030220 oncology & carcinogenesisChaperone (protein)Drug DesignCancer cellImmunologybiology.proteinCancer researchDrug Screening Assays AntitumorCarcinogenesisMolecular ChaperonesCancer letters
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PTHrP [67-86] regulates the expression of stress proteins in breast cancer cells inducing modifications in urokinase-plasminogen activator and MMP-1 …

2003

It was previously reported that a midregion domain of parathyroid hormone-related protein (PTHrP), that is, [67-86]-amide, is able to restrain growth and promote matrigel penetration by the 8701-BC cell line, derived from a biopsy fragment of a primary ductal infiltrating carcinoma of the human breast, and that cell invasion in vitro is drastically impaired by inactivation of urokinase-plasminogen activator (uPa). In this study we started a more detailed investigation of the possible effects on gene expression arising from the interaction between PTHrP [67-86]-amide and 8701-BC breast cancer cells by a combination of conventional-, differential display-and semi-quantitative multiplex-polyme…

CellBreast NeoplasmsBiologyHeat Shock Transcription FactorsDownregulation and upregulationCell Line TumorHeat shock proteinmedicineHumansNeoplasm InvasivenessHSP90 Heat-Shock ProteinsEnzyme InhibitorsHSF1Heat-Shock ProteinsMatrigelActivator (genetics)CarcinomaParathyroid Hormone-Related ProteinCell BiologyOligonucleotides AntisenseUrokinase-Type Plasminogen ActivatorMolecular biologyPeptide FragmentsProtein Structure TertiaryUp-RegulationDNA-Binding ProteinsGene Expression Regulation NeoplasticHeat shock factormedicine.anatomical_structureCell cultureCancer researchFemaleQuercetinMatrix Metalloproteinase 1Transcription FactorsJournal of Cell Science
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Multivariate analysis in the identification of biological targets for designed molecular structures: The BIOTA protocol

2013

In this work the new protocol BIOlogical Target Assignation (BIOTA) for the prediction of the biological target from molecular structures is proposed. BIOTA is based on the Principal Components Analysis (PCA) application on a matrix of ligands versus molecular descriptors. The application of BIOTA could allow to hypothesize the mechanism of action of a candidate drug prior to its biological evaluation or to repurpose old drugs. The protocol can be fine-tuned by choosing opportune targets (biological or not) and molecular descriptors, and it can be useful in every fields in with it is possible to collect set of compounds with known properties. The robustness of the protocol depends from diff…

CorrectnessComputational biologyBiologyBioinformaticsMolecular descriptorDrug DiscoveryHumansHSP90 Heat-Shock ProteinsMolecular Targeted TherapyPharmacologyPrincipal Component AnalysisBiological dataintegumentary systemBIOTA protocol Biological target Inhibitors PCA Drugs repurposingfungiOrganic ChemistryDrug RepositioningRobustness (evolution)BiotaGeneral MedicineSettore CHIM/08 - Chimica FarmaceuticaBiological targetSettore CHIM/03 - Chimica Generale E InorganicaMultivariate AnalysisPrincipal component analysisIdentification (biology)
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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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Identification of the plant compound geraniin as a novel Hsp90 inhibitor

2013

Besides its function in normal cellular growth, the molecular chaperone heat shock protein 90 (Hsp90) binds to a large number of client proteins required for promoting cancer cell growth and/or survival. In an effort to discover new small molecules able to inhibit the Hsp90 ATPase and chaperoning activities, we screened, by a surface plasmon resonance assay, a small library including different plant polyphenols. The ellagitannin geraniin, was identified as the most promising molecule, showing a binding affinity to Hsp90α similar to that of 17-(allylamino)-17-demethoxygeldanamycin (17AGG). Geraniin was able to inhibit in vitro the Hsp90α ATPase activity in a dose−dependent manner, with an in…

Geraniinlcsh:MedicineHsp90 inhibitorHeLachemistry.chemical_compoundJurkat CellsGlucosidesHeat shock proteinHumansMTT assayHSP90 Heat-Shock ProteinsCytotoxicitylcsh:ScienceMultidisciplinarybiologyChemistryCell growthlcsh:RCell Cyclebiology.organism_classificationHsp90Hydrolyzable TanninsBiochemistrybiology.proteinlcsh:QHeLa CellsResearch Article
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Protective role of heat shock proteins in Parkinson's disease.

2010

Parkinson’s disease (PD) is the second most common neurodegenerative disease after Alzheimer’s disease. Despite a large amount of research, the pathogenetic mechanism of these diseases has not yet been clarified. Abnormal protein folding, oxidative stress, mitochondrial dysfunction, and apoptotic mechanisms have all been reported as causes of neurodegenerative diseases in association with neuroinflammatory mechanisms which, by generating deleterious molecules, could promote the cascade of events leading to neurodegeneration. Heat shock proteins (HSPs) play a central role in preventing protein misfolding and inhibiting apoptotic activity, and represent a class of proteins potentially involve…

Heat shock proteins Parkinson disease neuroprotective roleParkinson's diseasebiologyNeurodegenerationParkinson DiseaseDiseasemedicine.diseasemedicine.disease_causeHsp90Hsp70PathogenesisNeurologyHeat shock proteinImmunologymedicinebiology.proteinAnimalsHumansHSP70 Heat-Shock ProteinsNeurology (clinical)HSP90 Heat-Shock ProteinsNeuroscienceOxidative stressHeat-Shock ProteinsNeuro-degenerative diseases
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HSP10,HSP70 AND HSP90 IMMUNOHISTOCHEMICAL LEVELS CHANGE IN ULCERATIVE COLITIS AFTER THERAPY

2011

Ulcerative colitis (UC) is a form of inflammatory bowel disease (IBD) characterized by damage of large bowel mucosa and frequent extra-intestinal autoimmune comorbidities. The role played in IBD pathogenesis by molecular chaperones known to interact with components of the immune system involved in inflammation is unclear. We previously demonstrated that mucosal Hsp60 decreases in UC patients treated with conventional therapies (mesalazine, probiotics), suggesting that this chaperonin could be a reliable biomarker useful for monitoring response to treatment, and that it might play a role in pathogenesis. In the present work we investigated three other heat shock protein/molecular chaperones:…

HistologyBiophysicsDown-RegulationInflammationcomorbidity.Inflammatory bowel diseaseulcerative colitis heat shock proteins Hsp molecular chaperones inflammation comorbidity.Pathogenesischemistry.chemical_compoundMesalazineulcerative colitis heat shock proteins Hsp molecular chaperones inflammation comorbidityHeat shock proteinChaperonin 10MedicineHspHumansHSP70 Heat-Shock ProteinsHSP90 Heat-Shock ProteinsColitisMesalaminelcsh:QH301-705.5ulcerative colitisbusiness.industryBrief Reportmolecular chaperonesAnti-Inflammatory Agents Non-SteroidalCell Biologymedicine.diseaseUlcerative colitisImmunohistochemistrydigestive system diseaseschemistrylcsh:Biology (General)inflammationImmunologyheat shock proteinsBiomarker (medicine)Colitis Ulcerativemedicine.symptombusiness
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Cellular responses and HSP70 expression during wound healing in Holothuria tubulosa (Gmelin, 1788).

2014

Wound repair is a key event in the regeneration mechanisms of echinoderms. We studied, at the behavioural, cellular and molecular levels, the wound healing processes in Holothuria tubulosa after injuries to the body wall. The experiments were performed for periods of up to 72 h, and various coelomocyte counts, as well as the expression of heat shock proteins (HS27, HSP70 and HSP90), were recorded. Dermal wound healing was nearly complete within 72 h. In the early stages, we observed the injured animals twisting their bodies to keep their injuries on the surface of the water for the extrusion of the buccal pedicles. At the cellular level, we found time-dependent variations in the circulating…

HolothurianStreImmunoblottingSettore BIO/05 - ZoologiaHSP27 Heat-Shock ProteinsAquatic ScienceAndrologyWestern blotHeat shock proteinmedicineHSPEnvironmental ChemistryAnimalsHolothuriaHSP70 Heat-Shock ProteinsHSP90 Heat-Shock ProteinsSettore BIO/06 - Anatomia Comparata E CitologiaCoelomocyteWound Healingmedicine.diagnostic_testbiologyRegeneration (biology)Holothuria tubulosaGeneral Medicinebiology.organism_classificationHsp70Organ SpecificityImmunologyCoelomocyteWound healingHolothuriaFishshellfish immunology
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