Tau acetylation in Alzheimer's disease
Tau acetylation in Alzheimer's disease
批准号:
10153606
负责人:
Li Gan
金额:
$50.64万
依托单位国家:
美国
项目类别:
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-09-13 至 2023-04-30
关键词:
AMPA ReceptorsANK3 geneAcetylationActinsAddressAffectAgingAllelesAlzheimer&aposs DiseaseAlzheimer&aposs disease brainAmyloid beta-ProteinAnatomyAutopsyAxonBinding ProteinsBrainBypassCRISPR/Cas technologyChemicalsClinicalCognitionCognitive deficitsCollaborationsCytoskeletonDementiaDendritesDendritic SpinesDiseaseDissectionDynein ATPaseExhibitsFluorescence Recovery After PhotobleachingGene TransferGoalsHeterogeneityHumanImageImpaired cognitionImpairmentKidneyLeadLinkLong-Term PotentiationMeasuresMediatingMemoryMemory LossMemory impairmentMicroscopyMicrotubulesMolecularMovementMusNeuronsOpticsPaclitaxelPathogenesisPathogenicityPathologyPharmacologyPhotobleachingPlayPluripotent Stem CellsPlus End of the MicrotubuleProteinsRattusRecoveryResolutionRodentRoleScaffolding ProteinSignal TransductionSorting - Cell MovementStructural ProteinStructureSynapsesSynaptic plasticityTauopathiesTestingTherapeuticToxic effectTransgenic OrganismsTranslatingTubulinViralbasebetaIV spectrincognitive enhancementcognitive functiondendringenome editinghippocampal atrophyimaging studyin vivoinduced pluripotent stem cellinsightmemory encodingmouse modelmutantnovelnovel therapeuticsoverexpressionpostsynapticpreventreconstructionsingle moleculespatial memorysynaptic functionsynaptopodintau Proteinstau aggregationtau mutationtau-1therapeutically effectivetrafficking
中文摘要
阿尔茨海默病(AD)的认知能力下降与tau病理或CSF tau相关。然而,
英文摘要
The cognitive decline in Alzheimer's disease (AD) correlates with tau pathology or CSF tau. However, the
pathogenic tau species and the mechanisms underlying tau toxicity in AD remain elusive. Our recent study
points to important pathogenic roles for aberrantly acetylated tau (ac-tau) species, whose levels are elevated in
NFTs, and the elevation is associated with cognitive impairment in AD. A critical trigger of tau-mediated toxicity
in AD is elevated somatodendritic tau. We showed that tau acetylation on K274 and K281 destabilizes the
barrier in the axon initial segment (AIS) and elevates levels of somatodendritic tau. Mice expressing mutant tau
that mimics acetylation (KQ) exhibited impaired synaptic plasticity and spatial memory. Our study further linked
tau-mediated synaptic plasticity impairment with deficiency in KIBRA, post-synaptic scaffolding protein. While
KIBRA is reduced in AD brains, elevating KIBRA expression prevented KQ-induced LTP deficits in rat neurons.
We propose to further dissect the mechanisms underlying ac-tau-mediated deficits in synaptic plasticity and
memory by combining human neuron and mouse models. In Aim 1, we will focus on the effects of ac-tau on
the AIS, which plays a critical role in restricting axonal protein from somatodendritic compartments in human
neurons. We will use our newly established inducible pluripotent stem cells (iPSCs)-derived human neuron
platform and CRISPR/cas9 genomic editing to establish isogenic lines that express acetyl-mimicking tau at
endogenous levels. We will then collaborate with Dr. Ke Xu and use stochastic optical reconstruction
microscopy (STORM) to image AIS structural proteins and tau distribution in axons and dendrites of human
neurons at single-molecule resolution. In Aim 2, we will directly determine whether ac-tau gains access to
dendritic spines by destabilizing the AIS using a combination of STORM and live imaging. In human iPSC
neurons, we will assess the effects of ac-tau on microtubule dynamics and stability, particularly at AIS, using
fluorescence recovery after photobleaching. We will then compare the extent to which WT and KQ tau cross
the AIS and determine whether restoring AIS barrier function specifically using caged taxol would normalize
tau distribution. In Aim 3, we will dissect the post-synaptic mechanisms underlying tau-mediated synaptic
plasticity and cognition. To determine if deficiency in KIBRA is a driver in tau-mediated synaptic deficits, we
test if lowering KIBRA levels is sufficient to cause tau-mediated synaptic deficits by deleting one allele of
KIBRA in mice expressing human wildtype tau. Various domains of KIBRA interact directly with postsynaptic
proteins, including PICK1, synaptopodin, dendrin, dynein, and PKMζ, to regulate actin cytoskeleton and/or
AMPAR trafficking. Using KIBRA mutants containing specific signaling domains, we propose to identify which
KIBRA-mediated signaling plays a critical role in tau-mediated synaptic toxicity. By combining mechanistic
dissection in human iPSC-derived neurons and in vivo circuit studies in mouse models, we expect to gain
novel insights that can be translated into therapies to counteract tau-mediated cognitive decline.
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Discovery of small molecules that normalize the transcriptome and enhance cysteine cathepsin activity in progranulin-deficient microglia.
发现了使颗粒体蛋白前体缺陷的小胶质细胞转录组正常化并增强半胱氨酸组织蛋白酶活性的小分子。
DOI:
10.1038/s41598-020-70534-9
发表时间:
2020
期刊:
Scientific reports
影响因子:
4.6
作者:
[Telpoukhovskaia,MariaA, Liu,Kai, Sayed,FatenA, Etchegaray,JonIker, Xie,Min, Zhan,Lihong, Li,Yaqiao, Zhou,Yungui, Le,David, Bahr,BenA, Bogyo,Matthew, Ding,Sheng, Gan,Li]
通讯作者:
Gan,Li
Regulation of Tau Homeostasis and Toxicity by Acetylation.
乙酰化对 Tau 稳态和毒性的调节。
DOI:
10.1007/978-981-32-9358-8_4
发表时间:
2019
期刊:
Advances in experimental medicine and biology
影响因子:
--
作者:
[Tracy,Tara, Claiborn,KathrynC, Gan,Li]
通讯作者:
Gan,Li
A MAC2-positive progenitor-like microglial population is resistant to CSF1R inhibition in adult mouse brain.
MAC2阳性祖细胞样小胶质细胞种群对成年小鼠大脑的CSF1R抑制具有抗性。
DOI:
10.7554/elife.51796
发表时间:
2020-10-15
期刊:
eLife
影响因子:
7.7
作者:
[Zhan L, Fan L, Kodama L, Sohn PD, Wong MY, Mousa GA, Zhou Y, Li Y, Gan L]
通讯作者:
Gan L
DOI:
10.1016/j.conb.2018.04.027
发表时间:
2018-08
期刊:
Current opinion in neurobiology
影响因子:
5.7
作者:
[Tracy TE, Gan L]
通讯作者:
Gan L
DOI:
10.1186/s13024-023-00672-x
发表时间:
2023-11-08
期刊:
Molecular neurodegeneration
影响因子:
15.1
作者:
[Huang Y, Liu B, Sinha SC, Amin S, Gan L]
通讯作者:
Gan L
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