CPEB1 regulated synapse elimination by microglia
CPEB1 regulated synapse elimination by microglia
批准号:
10064149
负责人:
Mariya P. Ivshina
金额:
$8.38万
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:
2019-12-02 至 2021-11-30
关键词:
3&apos Untranslated RegionsAddressAdultAffectAgingAlzheimer&aposs DiseaseAnimalsBindingBinding ProteinsBrainBrain regionCPE-binding proteinCell Cycle ProgressionCellsCerebellumCommunicationCuesDataDefectDendritesDendritic SpinesDevelopmentDiseaseElementsEpilepsyEventExcitatory SynapseGenetic TranslationHippocampus (Brain)Homer 1ImmuneIn VitroInflammationInflammatoryInhibitory SynapseKnock-outKnockout MiceLabelLearningLinkLoxP-flanked alleleMediatingMemoryMental HealthMessenger RNAMetabolismMicrogliaMorphologyMusNeurodegenerative DisordersNeurogliaNeurologicNeuronsParkinson DiseasePeritoneal MacrophagesPhagocytesPoly(A) TailPolyadenylation PathwayProcessProteinsPublic HealthRegulationResearchRoleSensorySignal TransductionStainsSurveysSynapsesSynaptic plasticitySynaptosomesTranslationsanimal breedingbarrel cortexbasebrain cellcell injurycell typecognitive functionconditional knockoutdensitydentate gyrusimmune functionin vivoinsulin signalingknockout animalmouse modelnervous system disorderpostsynapticpresynapticresponsesynaptic pruning
中文摘要
序列特异性mrna结合蛋白CPEB1 (Cytoplasmic polyadenylation element-binding protein 1)
英文摘要
The sequence-specific mRNA-binding protein CPEB1 (Cytoplasmic polyadenylation element-binding protein 1)
regulates mRNA polyadenylation and translation and has been linked to defects in synaptic plasticity, learning,
and memory. Synaptic connections between neurons are an essential determinant of cognitive function and are
continuously surveyed by microglia, the glial cells of the brain with immunological function. Microglia affect the
synapse number, and their activation correlates with synaptic pruning in many neurological disorders including
aging. Our preliminary study shows that microglia purified from CPEB1-deficient mouse brain are activated and
engulf an increased number of labeled synaptosomes as compared to WT. Using CPEB1 knockout mice, we
find a significant reduction in synapse number in hippocampal region CA1. One key question to address is
whether the synaptic loss we observe is microglia-autonomous or is due to CPEB1-deficiency in other cells such
as neurons or other glia. To answer this question, we will create microglia-specific CPEB1 knockout (KO)
animals. This proposal aims directly build on and expand our preliminary findings. Precisely, we will 1) Analyze
loss of excitatory and inhibitory synapses in different brain regions during development, 2) Determine the
involvement of CPEB1 in barrel cortex synapse elimination by microglia, 3) Generate microglia-specific CPEB1
KO animals, and 4) Determine the phagocytic ability of microglia in different brain regions during development.
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