The iron modulatory function of prion protein and prion disorders
The iron modulatory function of prion protein and prion disorders
批准号:
9271255
负责人:
Neena Singh
金额:
$49.8万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-05-15 至 2020-04-30
关键词:
Alzheimer&aposs DiseaseAnimalsAntibodiesAstrocytesAstrocytosisBiochemicalBiologicalBiologyBrainBrain DiseasesCarrier ProteinsCell LineCellsCerebrospinal FluidCharacteristicsCollaborationsCommunitiesComplexConsensusCreutzfeldt-Jakob SyndromeDementiaDetergentsDevelopmentDiscriminationDiseaseDisease ProgressionDown-RegulationEventExperimental ParkinsonismFerritinFosteringGliosisGoalsHomeostasisHumanIn VitroInfectionInflammationInvestigationIronKnock-outKnockout MiceLaboratoriesMediatingMembrane GlycoproteinsMicrogliaModelingMusNatureNerve DegenerationNeuronsOrganOxidation-ReductionParkinson DiseasePathogenesisPathogenicityPathologyPeptide HydrolasesPhysiologicalPlasmidsPrPPrPSc ProteinsPrion DiseasesPrionsProteinsRadioactiveReagentReportingResistanceRoleSLC11A2 geneScrapieSensitivity and SpecificitySpecificityStudy modelsTFRC geneTechniquesTestingThe Jackson LaboratoryTherapeuticTimeTransferrinTransformed Cell LineTransgenic MiceUp-Regulationbasebeta pleated sheetbiosafety level 2 facilitybiosafety level 3 facilitybrain celldivalent metalexperiencein vivointerestiron (III) reductaseiron deficiencyiron metabolismloss of functionmouse modelneuroinflammationneurotoxicneurotoxicityoverexpressionpublic health relevancestemuptakewild-type PrP
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Prion protein (PrPC) is a ubiquitously expressed cell surface glycoprotein known mostly for its role as the substrate for PrP-scrapie (PrPSc), the principal neurotoxic agent implicated in the pathogenesis of sporadic- Creutzfeldt-Jakob disease (sCJD) and other prion disorders. Consensus on the physiological function of PrPC or the mechanism of neurotoxicity by PrPSc, however, is lacking. Recent reports suggest that PrPC mediates cellular iron uptake by functioning as a ferrireductase (FR) partner for divalent metal transporters. Absence of PrPC in knockout mice (PrP-/-) induces iron deficiency in all systemic organs and the brain, indicating a non- redundant role in iron uptake, and the inability of other iron modulating proteins to compensate for its absence. It is therefore likely that the iron deficiency observed in sCJD and scrapie-infected animal brains that increases with disease progression and correlates with PrPSc is a result of loss of function of PrPC due to aggregation. The accompanying increase in total and redox-active iron in sCJD brains is perplexing, and is probably due to the sequestration of iron in a biological unavailable form in protease-resistant and detergent-insoluble ferritin aggregates. The associated changes in iron modulating proteins are reflected in the cerebrospinal fluid (CSF) in a disease-specific manner, providing a specificity of 92.5% in discriminating sCJD from other dementias. However, this specificity is likely to be obscured when neuroinflammation and associated microgliosis and astrocytosis supervene, causing active accumulation of iron in the neurons, microglia, and astrocytes. Based on these observations, we propose that loss or subversion of PrPC-mediated cellular iron uptake combined with sequestration of iron in PrPSc-ferritin complexes induces primary changes in brain iron metabolism that are modified by the secondary effects of neuroinflammation. Two broad aims are proposed to test this hypothesis. In aim 1 we will investigate the significance of FR activity of PrPC in iron uptake by primary neurons and astrocytes, transformed cell lines, and relevant mouse models. PrPC- interacting divalent metal transporters will be identified, and disruption of cellular iron uptake by aggregation of PrPC in vitro and scrapie infection in vivo will be investigated. In aim 2, mouse models of scrapie infection and inflammation will be used to identify changes in brain iron metabolism that are specific to scrapie infection, and those induced by concomitant or subsequent neuroinflammation and associated microgliosis and astrocytosis. The influence of PrPSc and super-imposed microgliosis and astrocytosis on the iron content and biochemical characteristics of ferritin will be investigated during disease progression to understand the cause of iron-rich, aggregated ferritin in sCJD brains. Successful completion of these studies will clarify the mechanism of brain iron dyshomeostasis in prion disorders, and will help in distinguishing sCJD-specific alterations in brain iron homeostasis form the secondary effects of neuroinflammation. This information is critical for the development of disease-specific therapeutic options that can arrest iron dyshomeostasis early in the disease course.
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会议论文
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The iron modulatory function of prion protein and prion disorders
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批准号:7906472
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资助金额:$39.25万
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The iron modulatory function of prion protein and prion disorders
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批准号:8541551
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资助金额:$1.32万
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The iron modulatory function of prion protein and prion disorders
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批准号:8287667
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The iron modulatory function of prion protein and prion disorders
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批准号:8466314
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资助金额:$31.12万
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The iron modulatory function of prion protein and prion disorders
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批准号:8072720
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资助金额:$32.25万
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Function and dysfunction of prion protein in cellular iron metabolism
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批准号:7826762
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资助金额:$19.82万
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财政年份:2009
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依托单位:
PrP-scrapie transport across intestinal & BBB
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批准号:7263096
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项目类别:
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资助金额:$25.39万
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财政年份:2004
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依托单位:
PrP-scrapie transport across intestinal & BBB
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批准号:6819600
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资助金额:$26.78万
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PrP-scrapie transport across intestinal & BBB
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批准号:7119700
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资助金额:$26.15万
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PrP-scrapie transport across intestinal & BBB
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批准号:6951191
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财政年份:2004
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依托单位:
MECHANISM OF CELL DEATH BY PRIONS
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批准号:6131089
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资助金额:$18.65万
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财政年份:2000
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MECHANISM OF CELL DEATH BY PRIONS
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批准号:6651024
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财政年份:2000
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批准号:6394212
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资助金额:$19.13万
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