A Genetic Analysis of Axonal Transport in Synaptogenesis
A Genetic Analysis of Axonal Transport in Synaptogenesis
批准号:
7579974
负责人:
Thomas L. Schwarz
金额:
$34.87万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-04-01 至 2011-01-31
关键词:
AdultAxonAxonal TransportBindingBiological ModelsBrainCellsCellular biologyCoupledCouplesCouplingDataDefectDrosophila genusElectrophysiology (science)ElementsFailureFamilyGenesGeneticGoalsGrowth ConesHuntington DiseaseIndividualKinesinLinkMediatingMicrotubulesMolecularMorphologyMotorMotor NeuronsMuscleMutationNamesNeuritesNeuronsOrganismPathologyPhenotypeProcessProteinsRecruitment ActivityRegulationRelative (related person)Research PersonnelRoleSiteSpecificityStructureSynapsesSynaptic VesiclesTestingbasedevelopmental diseasegene cloninggenetic analysismembermutantneuronal cell bodypresynapticpreventprogramsresearch studyresponsesynaptogenesis
中文摘要
描述(由申请人提供):为了组装一个新的突触,生长中的轴突需要分子来稳定早期接触,改变轴突的形态,并在两个细胞之间建立功能连接。这些分子在细胞体中合成,必须沿着轴突向下运输。事实上,突触构建块的运输对突触发生至关重要,并且可能受到密切调节。它也可能对改变成人大脑中的突触至关重要。
英文摘要
DESCRIPTION (provided by applicant): For the assembly of a new synapse, the growing axon requires molecules for stabilizing early contacts, transforming the morphology of the axon, and building a functional connection between the two cells. These molecules are synthesized in the cell body and must be transported down the axon. Indeed, the transport of synaptic building blocks is crucial to synaptogenesis and is likely to be closely regulated. It is also likely to be crucial to modifying synapses in the adult brain.
So that we may ultimately understand the specificity and regulation of the motors in synaptogenesis, we propose to use Drosophila genetics to examine how those components are transported into the axon. The starting point of the project is a newly discovered mutation, immaculate connections (Imac) in which growth cones appear to navigate correctly to their targets, but synapses do not form. The process of synaptogenesis is blocked. This gene encodes a kinesin motor. The proposal hypothesizes that this motor is required for the transport of materials for synaptogenesis and that it is distinct from the motor or motors that are required for neurite outgrowth and navigation. The aims of this proposal are: 1) to characterize the axon-target interactions in the mutant to determine the extent to which Imac is required; 2) to determine specific synaptic molecules whose transport is dependent on Imac and to investigate the manner in which Imac couples to those cargos; 3) to relate the function of other kinesins to that of Imac. From these experiments, we hope to advance our long term goal of elucidating the mechanism by which synapses form.
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