Ubiquitin proteasome system regulation of synaptic function
泛素蛋白酶体系统对突触功能的调节
基本信息
- 批准号:7799118
- 负责人:
- 金额:$ 16.52万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2006
- 资助国家:美国
- 起止时间:2006-04-15 至 2011-06-30
- 项目状态:已结题
- 来源:
- 关键词:AddressAntibodiesBiochemicalBiological ModelsCalciumCalcium/calmodulin-dependent protein kinaseCalmodulinChronicClinicalComplementConfocal MicroscopyDLG1 geneDataDiseaseDrosophila genusElectron MicroscopyEpilepsyEpileptogenesisFellowshipFoundationsFrequenciesGeneticGenetic TechniquesGenomeGlutamate ReceptorGlutamatesGoalsHippocampus (Brain)HomeostasisHomologous GeneIntegrinsK-Series Research Career ProgramsKineticsLabelLearningMagnesiumMediatingMemoryMentorsModelingMolecularN-MethylaspartateNerve DegenerationNeurobiologyNeurodegenerative DisordersNeurologyNeuromuscular JunctionNeuronsPathway interactionsPhysiciansPhysiologicalPreventive InterventionProcessProteasome InhibitionProtein BiosynthesisProteinsRattusRegulationRegulatory PathwayRelative (related person)ResearchResearch PersonnelResidenciesRoleScaffolding ProteinScientistSeizuresSignal PathwaySynapsesSynaptic TransmissionSynaptic plasticitySystemTestingTimeTrainingTransgenic OrganismsUbiquitinUbiquitin-Protein Ligase ComplexesUniversitiesWorkdensitygenetic regulatory proteinin vitro activityin vivomulticatalytic endopeptidase complexmutantneurotransmissionpatch clamppostsynapticpresynapticprofessorprogramsprotein degradationresearch studysynaptic functiontraffickingubiquitin-protein ligase
项目摘要
DESCRIPTION (provided by applicant): The applicant is a physician scientist who has completed a neurology residency and a clinical epilepsy fellowship and is a recently appointed tenure-track Assistant Professor in the Vanderbilt University Neurology Department. The five year support from a Mentored Career Development Award (K08) would be used by the applicant to become established as an independent investigator working as a synaptic physiologist with the goal of understanding molecular mechanisms of epileptogenesis and neurodegeneration. This proposal focuses on understanding the role of the ubiquitin proteasome system (UPS) in regulating glutamatergic synaptic transmission, using the Drosophila neuromuscular junction (NMJ) and cultured hippocampal neurons as model synaptic systems. The covalent addition of the small protein, ubiquitin, targets proteins for intracellular trafficking and degradation by the proteasome. Recently, the UPS has been demonstrated to function locally at the synapse and regulate synaptic plasticity, but the mechanistic details about the specific ubiquitin ligases, protein targets, and the time scale over which the regulation occurs have just begun to be addressed. Preliminary data from the Drosophila NMJ suggests that the UPS regulates the abundance of the key postsynaptic density organizing protein, discs large, and also regulates a retrograde signaling pathway important for maintaining homeostatic synaptic plasticity. Understanding the mechanisms of UPS regulation of these fundamental synaptic pathways will likely have widespread implications for understanding the physiological changes in synaptic strength that occur during learning and memory as well as pathological changes that occur in epilepsy and neurodegenerative diseases. The proposed research will be performed under the guidance of Dr. Kendal Broadie, Stevenson Professor of Neurobiology, and Dr. Robert Macdonald, Chair of the Vanderbilt Neurology Department, who has a distinguished record of training physician scientists investigating basic mechanisms of epilepsy. Understanding the mechanisms of long-term synaptic changes that occur in epilepsy and neurodegenerative diseases is fundamental to developing new and better treatments for these diseases. Given the large complement of UPS regulatory proteins encoded in the genome, identifying specific synaptic UPS pathways offers the hope of developing targeted interventions for prevention and treatment of these diseases.
描述(由申请人提供):申请人是一名内科科学家,完成了神经病学住院医师和临床癫痫奖学金,最近被任命为范德比尔特大学神经内科终身助理教授。申请人将获得指导职业发展奖(K08)的五年资助,成为一名独立的突触生理学家,致力于了解癫痫发生和神经变性的分子机制。本研究以果蝇神经肌肉连接(NMJ)和培养的海马神经元为模型突触系统,重点了解泛素蛋白酶体系统(UPS)在调节谷氨酸能突触传递中的作用。共价添加的小蛋白泛素,目标蛋白的细胞内运输和降解的蛋白酶体。最近,UPS已被证明在突触局部起作用并调节突触可塑性,但有关特定泛素连接酶、蛋白质靶点和调节发生的时间尺度的机制细节才刚刚开始得到解决。来自果蝇NMJ的初步数据表明,UPS调节关键的突触后密度组织蛋白(大圆盘)的丰度,并调节对维持稳态突触可塑性很重要的逆行信号通路。了解UPS调节这些基本突触通路的机制可能对理解学习和记忆过程中突触强度的生理变化以及癫痫和神经退行性疾病中发生的病理变化具有广泛的意义。拟议的研究将在史蒂文森神经生物学教授肯德尔·布罗迪博士和范德比尔特神经内科主任罗伯特·麦克唐纳博士的指导下进行,麦克唐纳博士在培训研究癫痫基本机制的内科科学家方面有着杰出的记录。了解癫痫和神经退行性疾病中发生的长期突触变化的机制是开发新的和更好的治疗这些疾病的基础。考虑到基因组中编码的大量UPS调节蛋白,确定特定的突触UPS通路为开发预防和治疗这些疾病的靶向干预提供了希望。
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
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{{ truncateString('KEVIN F HAAS', 18)}}的其他基金
Ubiquitin proteasome system regulation of synaptic function
泛素蛋白酶体系统对突触功能的调节
- 批准号:
7221878 - 财政年份:2006
- 资助金额:
$ 16.52万 - 项目类别:
Ubiquitin proteasome system regulation of synaptic function
泛素蛋白酶体系统对突触功能的调节
- 批准号:
7394994 - 财政年份:2006
- 资助金额:
$ 16.52万 - 项目类别:
Ubiquitin proteasome system regulation of synaptic function
泛素蛋白酶体系统对突触功能的调节
- 批准号:
7586703 - 财政年份:2006
- 资助金额:
$ 16.52万 - 项目类别:
Ubiquitin proteasome sytem regulation of synaptic fuction
泛素蛋白酶体系统对突触功能的调节
- 批准号:
7095447 - 财政年份:2006
- 资助金额:
$ 16.52万 - 项目类别:
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