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Cyclic Amplification of Prion Protein Misfolding

Cyclic Amplification of Prion Protein Misfolding
朊病毒蛋白错误折叠的循环扩增
批准号:
7217989
负责人:
CLAUDIO SOTO
金额:
$29.35万
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-04-21 至 2009-02-28
关键词:
AddressAffectAnimal ModelAnimalsAntibodiesAppendixApplications GrantsBackBacteriaBasic ScienceBiochemicalBiologicalBiological AssayBloodBlood specimenBos taurusBovine Spongiform EncephalopathyBrainCase StudyCattleCattle DiseasesCell surfaceCellsChronic Brain DamageChronic Wasting DiseaseClinicalComplementConditionCreutzfeldt-Jakob SyndromeDNA amplificationDataDeerDetectionDetergentsDevelopmentDiagnosisDiagnostic testsDiseaseDisease MarkerDisease OutbreaksDisease susceptibilityElectron MicroscopyEpidemicEquilibriumEvaluationEventFamily suidaeFrequenciesGenerationsGenesGenetic PolymorphismGlycoproteinsGoalsHamstersHereditary DiseaseHumanIn VitroIncubatedIndividualInfectionInfectious AgentInvestigationKnock-outLeadLightLiquid substanceLymphoidMass Spectrum AnalysisMeasuresMembrane ProteinsMethionineMethodologyMethodsMolecular Sieve ChromatographyMonkeysMusMutationN-terminalNamesNatureNeuroblastomaNeurodegenerative DisordersNormal CellNucleic AcidsOrganPatientsPeripheralPhasePlayPolymerase Chain ReactionPositioning AttributePrPSc ProteinsPreventionPrincipal InvestigatorPrion DiseasesPrionsProceduresProcessPropertyProtein IsoformsProteinsProteolysisRangeRare DiseasesReactionRecombinant ProteinsRecombinantsReportingResistanceRisk EstimateRoleSamplingScientistScrapieSequence HomologySheepSolubilitySourceSpeedSpleenStagingStandards of Weights and MeasuresStructureSucroseSurrogate MarkersSus scrofaSystemTechniquesTechnologyTestingTimeTime StudyTissuesTonsilTransgenic AnimalsTransgenic OrganismsTubeUltracentrifugationUncertaintyValineVariantWasting SyndromeWestern Blottingbaseconceptdisease transmissionimmunoreactivityin vivoindexinglight scatteringneutralizing antibodynoninvasive diagnosisnovelpreventprion hypothesisprogramsprotein misfoldingprotein misfolding cyclic amplificationresearch studytooltransmission process

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DESCRIPTION (provided by applicant): Prion diseases are a group of infectious neurodegenerative disorders affecting humans and animals. Although rare diseases, the recent outbreak of Bovine Spongiform Encephalopathy and Chronic Wasting disease and the transmission of the disease from cattle to humans have risen a great concern about a possible epidemic of Creutzfeldt-Jakob disease. This problem is aggravated by many uncertainties surrounding the unprecedented nature of the infectious agent, its mechanism of propagation and the species barrier that seems to control prion transmission. The most accepted hypothesis proposes that the infectious agent (termed prion) is composed exclusively by a misfolded version of a normal protein and does not contain any nucleic acid. According to this hypothesis, the disease is transmitted by propagation of the misfolding from the disease associated isoform (termed PrPres) to the normal host protein (termed PrPc), which become converted into the pathological form. We have recently described a procedure to induce the conversion of PrPc into prPres in vitro starting with minute quantities of brain PrPres. This procedure, named Protein Misfolding Cyclic Amplification (PMCA) mimics the process of prion replication in vivo, but at an accelerated speed resulting in an exponential amplification of the initial amount of PrPres. The major goal of this project is to take advantage of the PMCA technology to attempt developing a highly sensitive and noninvasive diagnosis of prion diseases as well as to study diverse aspects related to the nature of the infection agent, other factors involved in prion conversion and the transmission between species. In specific aim 1 we will study the infectious and structural properties of prPres generated in vitro with the objective to attempt multiplying and producing infectivity in the test tube. This experiment is widely considered as the final pending proof for the prion hypothesis. In specific aim 2 we will attempt to identify cellular protein factors that seem to play a major role in prion replication in vivo. Specific aim 3 proposes to study the species barrier phenomenon and the influence of PrP polymorphisms in the efficiency of prion replication in vitro. In specific aim 4 we will develop a highly-sensitive diagnostic test to detect PrPres in blood of experimental animals, cattle and humans, based on amplifying minute quantities of the pathological protein present in blood to a level that enable reproducible detection. Therefore, this project offers a balanced combination between basic science studies aimed to understand the most relevant scientific problems in the prion field and applied studies to resolve the main practical problem associated to these diseases, which is the lack of a highly-sensitive pre-symptomatic blood diagnosis to limit the spreading of these incurable illnesses.
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Production and Distribution of well-characterized polymorphic variants of alpha-synuclein aggregates
Production and Distribution of well-characterized polymorphic variants of alpha-synuclein aggregates
Comprehensive diagnosis of Alzheimer's disease by detection of misfolded oligomers in biological fluids
Blood-based diagnostics for Alzheimer's Disease
  • 批准号:
    9272025
  • 项目类别:
  • 资助金额:
    $51.0万
  • 财政年份:
    2016
  • 负责人:
    CLAUDIO SOTO
  • 依托单位:
海外基金