Search results for "Molecular chaperones."

showing 10 items of 61 documents

Reorganization of Nuclear Domain 10 Induced by Papillomavirus Capsid Protein L2

2002

AbstractNuclear domains (ND) 10 are associated with proteins implicated in transcriptional regulation, growth suppression, and apoptosis. We now show that the minor capsid protein L2 of human papillomavirus (HPV) type 33 induces a reorganization of ND10-associated proteins. Whereas the promyelocytic leukemia protein, the major structural component of ND10, was unaffected by L2, Sp100 was released from ND10 upon L2 expression. The total cellular amount of Sp100, but not of Sp100 mRNA, decreased significantly, suggesting degradation of Sp100. Proteasome inhibitors induced the dispersal of Sp100 and inhibited the nuclear translocation of L2. In contrast to Sp100, Daxx was recruited to ND10 by …

Co-Repressor ProteinsImmunoprecipitationFluorescent Antibody TechniqueVaccinia virusPromyelocytic Leukemia ProteinAutoantigenspapillomavirusCell LinePromyelocytic leukemia proteinCapsidDeath-associated protein 6DaxxVirologyHumansSp100RNA MessengerAdaptor Proteins Signal TransducingCell NucleusRecombination GeneticbiologyTumor Suppressor ProteinsIntracellular Signaling Peptides and ProteinsNuclear ProteinsND10Signal transducing adaptor proteinAntigens NuclearOncogene Proteins ViralL2biochemical phenomena metabolism and nutritionBlotting NorthernMolecular biologyNeoplasm ProteinsTransport proteinCell biologyProtein TransportProteasomeCapsidbiology.proteinRNACapsid ProteinsFemaleCarrier ProteinsCo-Repressor ProteinsMolecular ChaperonesTranscription FactorsVirology
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Heat shock and Cd2+ exposure regulate PML and Daxx release from ND10 by independent mechanisms that modify the induction of heat-shock proteins 70 an…

2003

Nuclear domains called ND10 or PML bodies might function as nuclear depots by recruiting or releasing certain proteins. Although recruitment of proteins through interferon-induced upregulation and SUMO-1 modification level of PML had been defined, it is not known whether release of proteins is regulated and has physiological consequences. Exposure to sublethal environmental stress revealed a sequential release of ND10-associated proteins. Upon heat shock Daxx and Sp100 were released but PML remained, whereas exposure to subtoxic concentrations of CdCl2 induced the release of ND10-associated proteins, including PML, with Sp100 remaining in a few sites. In both cases,recovery times were simil…

Co-Repressor ProteinsMAP Kinase Signaling SystemMacromolecular SubstancesSUMO-1 ProteinPromyelocytic Leukemia ProteinMicePromyelocytic leukemia proteinDeath-associated protein 6Stress PhysiologicalHeat shock proteinEndopeptidasesAnimalsHSP70 Heat-Shock ProteinsEnzyme InhibitorsHeat shockTranscription factorCells CulturedHeat-Shock ProteinsbiologyTumor Suppressor ProteinsIntracellular Signaling Peptides and ProteinsNuclear ProteinsCell BiologyCell Nucleus StructuresNeoplasm ProteinsCell biologyHsp70Cysteine EndopeptidasesEukaryotic CellsGene Expression RegulationImmunologybiology.proteinSignal transductionCarrier ProteinsCo-Repressor ProteinsHeat-Shock ResponseCadmiumMolecular ChaperonesTranscription FactorsJournal of Cell Science
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The Role of Molecular Chaperones in Virus Infection and Implications for Understanding and Treating COVID-19

2020

The COVID-19 pandemic made imperative the search for means to end it, which requires a knowledge of the mechanisms underpinning the multiplication and spread of its cause, the coronavirus SARS-CoV-2. Many viruses use members of the hosts’ chaperoning system to infect the target cells, replicate, and spread, and here we present illustrative examples. Unfortunately, the role of chaperones in the SARS-CoV-2 cycle is still poorly understood. In this review, we examine the interactions of various coronaviruses during their infectious cycle with chaperones in search of information useful for future research on SARS-CoV-2. We also call attention to the possible role of molecular mimicry in the dev…

Coronavirus disease 2019 (COVID-19)CoronaviridaevirusesSevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)lcsh:MedicineReviewComputational biologyvirusmedicine.disease_causechaperonopathiesVirusEpitopeAutoimmunity03 medical and health sciences0302 clinical medicinemedicineCoronaviridaechaperonotherapy030304 developmental biologyCoronavirus0303 health sciencesbiologybusiness.industrySARS-CoV-2lcsh:Rmolecular chaperonesCOVID-19General Medicinemolecular chaperonebiology.organism_classificationMolecular mimicry030220 oncology & carcinogenesischaperonopathiebusiness
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The Chaperone Activity of Clusterin is Dependent on Glycosylation and Redox Environment

2014

Background/Aims: Clusterin (CLU), also known as Apolipoprotein J (ApoJ) is a highly glycosylated extracellular chaperone. In humans it is expressed from a broad spectrum of tissues and related to a plethora of physiological and pathophysiological processes, such as Alzheimer's disease, atherosclerosis and cancer. In its dominant form it is expressed as a secretory protein (secreted CLU, sCLU). During its maturation, the sCLU-precursor is N-glycosylated and cleaved into an α- and a β-chain, which are connected by five symmetrical disulfide bonds. Recently, it has been demonstrated that besides the predominant sCLU, rare intracellular CLU forms are expressed in stressed cells. Since these for…

DNA ComplementaryGlycosylationGlycosylationPhysiologyMutantCarbohydrateslcsh:Physiologylcsh:Biochemistrychemistry.chemical_compoundChaperonesHumanslcsh:QD415-436Redox biologySecretory pathwaylcsh:QP1-981ClusterinbiologyRetro-translocationProprotein convertaseProteostasis networkOxidative StressClusterinSecretory proteinHeat shockchemistryBiochemistryApolipoprotein JChaperone (protein)Proteolysisbiology.proteinOxidation-ReductionIntracellularMolecular ChaperonesFurin-like proprotein convertasesCellular Physiology and Biochemistry
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Role of heme oxygenase-1 (HSP32) and HSP90 in glioblastoma

2017

Glioblastoma (GBM) is the most common and malignant primary brain tumor in adults. The current treatment regimes for glioblastoma demonstrated a low efficiency and offer a poor prognosis. Advancements in conventional treatment strategies have only yielded modest improvements in overall survival. The heat shockproteins, heme oxygenase-1 (HO-1) and Hsp90, serve these pivotal roles in tumor cells and have been identified as effective targets for developing therapeutics. This topic review summarizes the current preclinical and clinical evidences and rationale to define the potential of HO-1 and Hsp90 in GBM progression and chemoresistance.

Heme oxygenaseMolecular chaperonesHeat shock proteinHsp90GlioblastomaCancer
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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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Protein Kinase C μ Is Regulated by the Multifunctional Chaperon Protein p32

2000

We identified the multifunctional chaperon protein p32 as a protein kinase C (PKC)-binding protein interacting with PKCalpha, PKCzeta, PKCdelta, and PKC mu. We have analyzed the interaction of PKC mu with p32 in detail, and we show here in vivo association of PKC mu, as revealed from yeast two-hybrid analysis, precipitation assays using glutathione S-transferase fusion proteins, and reciprocal coimmunoprecipitation. In SKW 6.4 cells, PKC mu is constitutively associated with p32 at mitochondrial membranes, evident from colocalization with cytochrome c. p32 interacts with PKC mu in a compartment-specific manner, as it can be coimmunoprecipitated mainly from the particulate and not from the so…

ImmunoprecipitationRecombinant Fusion ProteinsGolgi ApparatusSaccharomyces cerevisiaeSpodopteraMitogen-activated protein kinase kinaseBiologyTransfectionBiochemistryCell LineMitochondrial ProteinsAnimalsHumansCloning MolecularKinase activityMolecular BiologyProtein Kinase CProtein kinase CGlutathione TransferaseB-LymphocytesBinding SitesMembrane GlycoproteinsKinaseAutophosphorylationJNK Mitogen-Activated Protein KinasesCell BiologyFusion proteinMitochondriaReceptors ComplementCell biologybody regionsHyaluronan ReceptorsProtein kinase domainBiochemistryMitogen-Activated Protein KinasesCarrier ProteinsMolecular ChaperonesProtein BindingJournal of Biological Chemistry
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Hsp10: Anatomic distribution, functions, and involvement in human disease

2013

There is growing evidence that molecular chaperones/heat shock proteins are involved in the pathogenesis of a number of human diseases, known as chaperonopathies. A better molecular understanding of the pathogenetic mechanisms is essential for addressing new strategies in diagnostics, therapeutics and clinical management of chaperonopathies, including those in which Hsp10 is involved. This chaperonin has been studied for a long time as a member of the mitochondrial protein-folding machine. However, although in normal cells Hsp10 is mainly localized in the mitochondrial matrix, it has also been found during and after stress in other subcellular compartments, such as cytosol, vesicles and sec…

InflammationAgingGeneral Immunology and MicrobiologySettore BIO/16 - Anatomia UmanaVesicleBiologyGeneral Biochemistry Genetics and Molecular BiologyChaperoninCell biologyAutoimmune DiseasesPathogenesisSettore MED/18 - Chirurgia GeneraleCytosolSettore MED/38 - Pediatria Generale E SpecialisticaBiochemistryMitochondrial matrixHeat shock proteinNeoplasmsCancer cellExtracellularChaperonin 10HumansHsp10chaperonopathies molecular chaperones human diseases cellular localization mitochondria
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Immunomorphological Pattern of Molecular Chaperones in Normal and Pathological Thyroid Tissues and Circulating Exosomes: Potential Use in Clinics

2019

The thyroid is a major component of the endocrine system and its pathology can cause serious diseases, e.g., papillary carcinoma (PC). However, the carcinogenic mechanisms are poorly understood and clinical useful biomarkers are scarce. Therefore, we determined if there are quantitative patterns of molecular chaperones in the tumor tissue and circulating exosomes that may be useful in diagnosis and provide clues on their participation in carcinogenesis. Hsp27, Hsp60, Hsp70, and Hsp90 were quantified by immunohistochemistry in PC, benign goiter (BG), and normal peritumoral tissue (PT). The same chaperones were assessed in plasma exosomes from PC and BG patients before and after ablative surg…

Male0301 basic medicineGoiterdiagnosismedicine.disease_causelcsh:Chemistry0302 clinical medicinelcsh:QH301-705.5Heat-Shock ProteinsSpectroscopygoiterbiologyThyroidmolecular chaperonesGeneral MedicineMiddle Agedmolecular chaperone3. Good healthComputer Science ApplicationsBlotdiagnosimedicine.anatomical_structure030220 oncology & carcinogenesisheat shock proteins (Hsp)ImmunohistochemistryFemalethyroid gland; papillary carcinoma; molecular chaperones; heat shock proteins (Hsp); goiter; exosomes; diagnosiendocrine systemanimal structuresexosomesArticleCatalysisInorganic Chemistry03 medical and health sciencesHsp27medicineHumansEndocrine systemexosomePhysical and Theoretical ChemistryMolecular Biologythyroid glandbusiness.industryOrganic Chemistrymedicine.diseaseCarcinoma PapillaryMicrovesicles030104 developmental biologylcsh:Biology (General)lcsh:QD1-999Cancer researchbiology.proteinCarcinogenesisbusinesspapillary carcinomaInternational Journal of Molecular Sciences
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Chaperone patterns in vernal keratoconjunctivitis are distinctive of cell and Hsp type and are modified by inflammatory stimuli

2016

Background Vernal keratoconjunctivitis (VKC) is a severe ocular allergy with pathogenic mechanism poorly understood and no efficacious treatment. The aims of the study were to determine quantities and distribution of Hsp chaperones in the conjunctiva of VKC patients and assess their levels in conjunctival epithelial and fibroblast cultures exposed to inflammatory stimuli. Methods Hsp10, Hsp27, Hsp40, Hsp60, Hsp70, Hsp90, Hsp105, and Hsp110 were determined in conjunctiva biopsies from nine patients and nine healthy age-matched normal subjects, using immunomorphology and qPCR. Conjunctival epithelial cells and fibroblasts were cultured and stimulated with IL-1β, histamine, IL-4, TNF-α, or UV-…

Male0301 basic medicinequantitative Hsp patternschemistry.chemical_compoundChaperonesHspchaperoneImmunology and AllergyChildCells CulturedHeat-Shock ProteinsConjunctivitis AllergicCulturedbiologyCD68conjunctival cells Hspconjunctival cellsImmunohistochemistrychaperones; conjunctival cells Hsp; quantitative Hsp patterns; vernal keratoconjunctivitis; Immunology; Immunology and Allergymedicine.anatomical_structureFemaleHistaminequantitative Hsp patternConjunctivaAdolescentCellsImmunologyTryptasevernal keratoconjunctivitiNO03 medical and health sciencesAllergicImmune systemHsp27Heat shock proteinmedicineHumansvernal keratoconjunctivitischaperones; conjunctival cells Hsp; quantitative Hsp patterns; vernal keratoconjunctivitis; Adolescent; Cells Cultured; Child; Conjunctivitis Allergic; Epithelial Cells; Female; Fibroblasts; Heat-Shock Proteins; Humans; Immunohistochemistry; Male; Molecular Chaperones; Immunology and Allergy; ImmunologyEpithelial CellsFibroblastsConjunctivitismedicine.diseaseeye diseases030104 developmental biologychemistryImmunologybiology.proteinChaperones; conjunctival cells Hsp; quantitative Hsp patterns; vernal keratoconjunctivitisVernal keratoconjunctivitisMolecular Chaperones
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