The Role of GABAergic Synaptic Plasticity in Neural Circuit Functions
The Role of GABAergic Synaptic Plasticity in Neural Circuit Functions
批准号:
8081846
负责人:
Yingxi Lin
金额:
$41.58万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-06-05 至 2015-02-28
关键词:
AddressAffectAutistic DisorderBehaviorBehavioralBehavioral AssayBrainCellsCognition DisordersCognitive deficitsCoupledDataDevelopmentDiseaseElectrophysiology (science)EnvironmentEpilepsyEtiologyGenesGenetic ProgrammingGenetic RecombinationGenetic TranscriptionGlutamatesGoalsHealthHippocampus (Brain)ImmunohistochemistryIndividualInhibitory SynapseKnock-outKnockout MiceKnowledgeLearningLifeLightLinkMammalsMeasuresMemoryMental disordersModificationMolecularNeuronsOutputPathologyPlayPositioning AttributeProcessPropertyRegulationReporterResearchRoleSchizophreniaSliceStagingSynapsesSynaptic plasticityTechniquesTestingWorkbaseconditioned fearexcitatory neuronexperienceinsightnervous system disorderneural circuitnovel strategiespublic health relevancerelating to nervous systemresponsetranscription factor
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): GABAergic synapses are the major inhibitory connections in the brain and likely play an important role in all brain functions, including learning and memory. A deficit in GABAergic synapses is often implicated in devastating disorders such as autism, schizophrenia, and epilepsy. Despite their importance, many fundamental questions regarding the regulation and function of GABAergic synapses remain unanswered. Our long-term goal is to explore the cellular and molecular mechanisms by which neuronal activity is coupled to modification of GABAergic synapses during behavioral experience and to understand how disruption of this form of GABAergic synaptic plasticity leads to cognitive deficits. Towards this goal, we have recently identified the activity-regulated bHLH-PAS transcription factor Npas4 as a key regulator of GABAergic synapses. Npas4 is rapidly induced by excitatory synaptic activity and its level determines the number of GABAergic synapses formed on excitatory neurons. These findings suggest that Npas4 is the molecular link between neuronal excitation and GABAergic synapses. By investigating Npas4's role in regulating activity-dependent modulation of GABAergic synapses and regulating behavioral output of neural circuits, the research plan outlined here will yield new insights into the etiology of many neurological disorders.
PUBLIC HEALTH RELEVANCE: The research described in this proposal will explore the role of GABAergic synaptic plasticity in important neural circuit functions such as learning and memory. A deficit in GABAergic synapses is often implicated in devastating neurological disorders such as autism, schizophrenia, and epilepsy, most of which often involve profound psychiatric and cognitive deficits in afflicted individuals. Our proposed study will shed light on the pathology and etiology of these neurological diseases.
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依托单位:
海外基金