Molecular mechanisms of abnormal dendritic spine plasticity in schizophrenia
Molecular mechanisms of abnormal dendritic spine plasticity in schizophrenia
批准号:
8431757
负责人:
Peter Penzes
金额:
$57.2万
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:
2012-02-20 至 2017-01-31
关键词:
AccountingAdolescentAffectAmino AcidsAutistic DisorderBiological ModelsBrainBrain imagingCell modelCell physiologyCerebral cortexCodeCognitionCognitiveCognitive deficitsConfocal MicroscopyDataDendritic SpinesDiseaseElectroporationExcitatory SynapseExonsGenesGlutamate ReceptorGlutamatesHeritabilityHuman GeneticsImageIndividualKnowledgeMeasuresMediatingModelingMolecularMorphologyMusMutationNRG1 geneNeurobiologyNeuronsPathogenesisPathway interactionsPatientsPhenotypeProteinsReportingResearchSchizophreniaSiblingsStructureSusceptibility GeneSynapsesSynaptic TransmissionTestingTherapeutic InterventionThickValidationVariantVertebral columnbasedensityfrontal lobegray matterhuman subjectin uteroinsightmouse modelmultidisciplinarynovelpeerprotein functiontherapeutic targettranslational approachtwo-photon
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Multiple lines of evidence support a key role for abnormal synaptic connectivity in schizophrenia, but the molecular mechanisms underlying its pathogenesis are not known. Understanding these mechanisms may allow us to identify new targets for therapeutic intervention, especially early in the course of illness. The application wil focus on dendritic spines as cellular substrates of brain connectivity, because the majority of excitatory synapses are located on spines, and reduced spine density has been extensively documented in schizophrenia. Mounting evidence indicating that known schizophrenia susceptibility genes regulate spines and that regulators of spine plasticity are implicated in schizophrenia, strongly support the model that perturbations in the molecular network underlying spine plasticity are critically involved in the pathogenesis of schizophrenia. However, the mechanisms through which genetic alterations in this network underlie specific neurobiological phenotypes related to schizophrenia are not known. Recent data indicates that rare variants (including amino acid mutations) cumulatively account for a significant fraction of the "missing heritability" in schizophrenia, and cluster in gene networks that control synapses. Because a large fraction of such mutations are estimated to impair protein function, many are expected to cause brain circuit alterations. Thus, we propose that by identifying, testing for association, and characterizing rare variants enriched in schizophrenia, we will provide critical new insights into disease pathogenesis, because such mutations provide detailed knowledge about the affected molecular and cellular functions. Based on our preliminary data, we hypothesize that rare coding variants in genes that control dendritic spine plasticity, cumulativel enriched in subjects with schizophrenia, disrupt cortical connectivity and impact neuromorphological and cognitive measures in carriers. Using a multidisciplinary translational approach that combines human genetics, molecular and electrophysiological studies in cellular models, functional validation in mice, and cognitive assessment and structural brain imaging in patients, we will pursue these specific aims: 1) To assess the cellular impact of mutations in spine plasticity genes identified in schizophrenia subjects. 2) To determine the impact of mutations in spine plasticity genes on glutamatergic synaptic transmission. 3) To determine the impact of mutations in spine plasticity genes on cortical ultrastructure and functional connectivit in mice. 4) To assess the relationships between mutations in spine plasticity genes and phenotypic measures in patients.
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Neuronal excitability and copy number variation disorders
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批准号:10039790
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项目类别:
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资助金额:$63.91万
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财政年份:2020
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负责人:Peter Penzes
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依托单位:
Neuronal excitability and copy number variation disorders
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批准号:10250497
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资助金额:$63.8万
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财政年份:2020
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Neuronal excitability and copy number variation disorders
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批准号:10407640
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资助金额:$64.38万
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财政年份:2020
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Neuronal excitability and copy number variation disorders
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资助金额:$64.82万
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Adhesion molecules and developmental epilepsy disorders
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批准号:10592736
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资助金额:$54.49万
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财政年份:2017
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依托单位:
Postsynaptic roles of ankyrins
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批准号:10365120
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资助金额:$63.98万
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财政年份:2015
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负责人:Peter Penzes
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依托单位:
Postsynaptic roles of ankyrins
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批准号:10629210
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资助金额:$63.98万
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财政年份:2015
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负责人:Peter Penzes
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依托单位:
Molecular mechanisms of abnormal dendritic spine plasticity in schizophrenia
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批准号:8287503
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资助金额:$61.34万
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财政年份:2012
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负责人:Peter Penzes
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依托单位:
Synaptic and dendritic dysfunction in psychiatric disorders
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批准号:9402750
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项目类别:
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资助金额:$60.32万
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财政年份:2012
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负责人:Peter Penzes
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依托单位:
Molecular mechanisms of abnormal dendritic spine plasticity in schizophrenia
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批准号:8605620
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项目类别:
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资助金额:$7.95万
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财政年份:2012
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负责人:Peter Penzes
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依托单位:
Molecular mechanisms of abnormal dendritic spine plasticity in schizophrenia
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批准号:8608434
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项目类别:
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资助金额:$65.25万
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财政年份:2012
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负责人:Peter Penzes
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依托单位:
Molecular mechanisms of abnormal dendritic spine plasticity in schizophrenia
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批准号:8998071
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项目类别:
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资助金额:$60.42万
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财政年份:2012
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负责人:Peter Penzes
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依托单位:
Role of kalirin-7 and Rac1 in synaptic plasticity
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批准号:7428906
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项目类别:
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资助金额:$24.94万
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财政年份:2005
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负责人:Peter Penzes
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依托单位:
Role of kalirin-7 and Rac1 in synaptic plasticity
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批准号:7624357
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项目类别:
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资助金额:$24.94万
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财政年份:2005
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负责人:Peter Penzes
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依托单位:
Role of kalirin signaling in synaptic plasticity
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批准号:8071572
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项目类别:
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资助金额:$36.1万
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财政年份:2005
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负责人:Peter Penzes
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依托单位:
Role of kalirin-7 and Rac1 in synaptic plasticity
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批准号:7395231
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项目类别:
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资助金额:$1.0万
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财政年份:2005
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负责人:Peter Penzes
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依托单位:
Role of kalirin-7 and Rac1 in synaptic plasticity
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批准号:7237943
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项目类别:
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资助金额:$24.94万
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财政年份:2005
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负责人:Peter Penzes
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依托单位:
Role of kalirin signaling in synaptic plasticity
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批准号:8437271
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项目类别:
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资助金额:$36.03万
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财政年份:2005
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负责人:Peter Penzes
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依托单位:
Role of kalirin-7 and Rac1 in synaptic plasticity
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批准号:6916630
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项目类别:
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资助金额:$26.06万
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财政年份:2005
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负责人:Peter Penzes
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依托单位:
Role of kalirin-7 and Rac1 in synaptic plasticity
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批准号:7067175
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项目类别:
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资助金额:$25.68万
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财政年份:2005
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负责人:Peter Penzes
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依托单位:
海外基金