Biochemical and in vivo determinants of tau neurotoxicity
Biochemical and in vivo determinants of tau neurotoxicity
批准号:
8551414
负责人:
MEL B FEANY
金额:
$47.27万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-09-28 至 2016-06-30
关键词:
AffectAlzheimer&aposs DiseaseAlzheimer&aposs disease modelAmino AcidsAmyloid beta-Protein PrecursorAnimal ModelAssesBindingBiochemicalBiochemistryBiologicalBiological ModelsBrainCell Culture TechniquesCellsCessation of lifeChromosomes, Human, Pair 17DataDepositionDiamondDiseaseDrosophila genusFTD with parkinsonismFrontotemporal DementiaGene Transfer TechniquesGenerationsGenesGeneticHumanIn VitroInclusion BodiesInfluentialsLaboratoriesLesionLinkMediatingMediator of activation proteinMemory impairmentMethodsMicrotubule StabilizationMicrotubulesMissense MutationModelingMolecularMusMutationNerve DegenerationNeurodegenerative DisordersNeurofibrillary TanglesNeuronsParkinsonian DisordersPathogenesisPathogenicityPathologicProductionProgressive Supranuclear PalsyPropertyProtein IsoformsPublishingRNA SplicingReportingResourcesSenile PlaquesSystemTauopathiesTestingTimeToxic effectTransgenic MiceTransgenic OrganismsVariantWorkage relatedcorticobasal degenerationdensitydesignexperienceextracellularhuman diseasein vivomouse modelmutantneurotoxicneurotoxicityprogressive neurodegenerationprotein aggregatepublic health relevanceresearch studysynucleintau Proteinstau aggregationtau microtubule binding domaintau mutationtau phosphorylationtool
中文摘要
描述(由申请人提供):阿尔茨海默病是最常见的神经退行性疾病,其病理特征是神经元内异常磷酸化和聚集的tau蛋白沉积以及细胞外淀粉样斑块的形成。tau蛋白在神经原纤维缠结中的异常沉积也是一组不太常见的疾病的主要病理特征,统称为“tau病”。为了确定控制tau诱导的神经变性的分子机制,我们(Gamblin博士)对tau变异进行了广泛的生化表征,包括与家族性tau病、额颞叶痴呆和与17号染色体相关的帕金森病相关的剪接异构体和突变体。重要的是,这些生化研究已经定义了tau变异具有改变的聚集和微管结合特性。与此同时,我们(Feany博士)创建了果蝇的光头病模型。我们的模型概括了人类疾病的关键特征,包括年龄依赖性神经变性、异常tau磷酸化、tau聚集成纤维缠结样内含物和早期死亡。现在我们把
英文摘要
DESCRIPTION (provided by applicant): Alzheimer's disease is the most common neurodegenerative disorder and is characterized pathologically by the intraneuronal deposition of abnormally phosphorylated and aggregated tau protein and by the formation of extracellular amyloid plaques. Abnormal deposition of tau into neurofibrillary tangles is also the primary pathologic feature of a group of less common disorders, collectively termed the "tauopathies." To define the molecular mechanisms controlling tau-induced neurodegeneration we (Dr. Gamblin) have performed extensive biochemical characterization of tau variants, including splicing isoforms and mutants linked to the familial tauopathy frontotemporal dementia and parkinsonism linked to chromosome 17. Importantly, these biochemical studies have defined tau variants with altered aggregation and microtubule binding properties. In parallel we (Dr. Feany) have created Drosophila models of tauopathy. Our models recapitulate key features of the human diseases, including age-dependent neurodegeneration, abnormal tau phosphorylation, aggregation of tau into fibrillary tangle-like inclusions, and early death. We will now combine our
strengths in biochemistry and in vivo tauopathy modeling to define the species of tau that cause cellular and organismal toxicity in tauopathies.
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会议论文
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