Generation and characterization of a mouse model exhibiting beta-amyloidosis and tauopathy with nuclear depletion of TDP-43
Generation and characterization of a mouse model exhibiting beta-amyloidosis and tauopathy with nuclear depletion of TDP-43
批准号:
9893402
负责人:
PHILIP C WONG
金额:
$220.88万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-09-17 至 2022-08-31
关键词:
APP-PS1AddressAgingAlzheimer&aposs DiseaseAlzheimer&aposs disease modelAlzheimer&aposs disease related dementiaAmyloidosisBehavioralBiological ModelsCognitionCognitiveCognitive deficitsDefectDementiaDiseaseDisease ProgressionEducational ModelsElderlyEtiologyExhibitsExonsFemaleFrontotemporal DementiaGenerationsGenesHumanKnockout MiceLewy Body DementiaLongevityModelingMolecularMusNerve DegenerationNeurodegenerative DisordersNeuronsNuclearOutcomePathogenicityPathologicPathologyPhasePhenotypeProsencephalonRNA SplicingRepressionRoleSenile PlaquesTauopathiesTransgenesValidationage relatedagedcerebral atrophycohorthuman diseaseinnovationmalemeetingsmiddle agemouse modelneuron lossneuronal circuitryneurotoxicitynovelprotein TDP-43scale uptau Proteinstherapeutic target
中文摘要
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英文摘要
Alzheimer's Disease-Related Dementias (ADRD) is a group of progressive neurodegenerative
disorders with mid to late life onset such as mixed etiology dementias (MED) including Alzheimer's
disease (AD) with TDP-43 pathology. To clarify disease mechanisms and identify therapeutic targets,
a new mouse models that replicate combinations of co-occurring pathological features of human
dementia will be critical. It is well recognized that AD cases with TDP-43 pathology, as compared to
those without, showed a greater decline in cognitive deficits. However, the molecular mechanisms
underlying such contribution of TDP-43 remains elusive. We showed that TDP-43 pathology is due to
loss of TDP-43's nuclear function, particularly its ability to repress cryptic exon splicing, that precedes
formation of TDP-43 cytoplasmic aggregates. That splicing repression is a major role of TDP-43 in
forebrain neurons led us to hypothesize that loss of TDP-43 repression exacerbates neurodegeneration
and cognitive deficits. To address this question, we will take advantage of 1) our model lacking TDP-
43 in forebrain neurons which exhibits age-dependent neuron loss, cognitive deficits and defects in
prelimbic cortical circuits; and 2) our tau model which show, in presence of amyloid plaques, tauopathy-
dependent neuron loss, to develop a novel MED model that would exhibit beta-amyloidosis and
tauopathy along with compromised TDP-43 repression in forebrain neurons, pathological features that
mimic AD with loss of TDP-43 repression. By employing a comprehensive set of molecular,
pathological, neuronal circuit and behavioural/cognitive approaches, we will rigorously characterize the
MED mice across their lifespan, providing a highly innovative and instructive model to clarify disease
mechanism and identify therapeutic targets.
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海外基金