Mechanisms of compensation for loss of brain dopamine
Mechanisms of compensation for loss of brain dopamine
批准号:
9323539
负责人:
JAY HIRSH
金额:
$30.72万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-01 至 2019-07-31
关键词:
AnimalsAppearanceBehaviorBiological ModelsBrainBypassCandidate Disease GeneCognition DisordersDopamineDrosophila melanogasterFeasibility StudiesFinancial compensationFollow-Up StudiesFunctional disorderGenesGeneticGenetic Complementation TestGenetic ModelsGenetic TranscriptionHumanLesionModelingMolecularMood DisordersMotor ActivityMusNeuromodulatorNeuronsNeurotransmittersParkinson DiseasePathway interactionsPharmacologyPhenotypePopulation BiologyProcessQuantitative Trait LociRNA InterferenceRoleSymptomsSynapsesTechniquesTestingTranscriptbasecost effectivedopamine systemgene discoverygenetic approachgenetic elementgenome sequencinghuman diseasemotor disorderneuromechanismnovelpublic health relevancerelating to nervous systemresponsereverse geneticstooltranscriptomewhole genome
中文摘要
描述(由申请人提供):多巴胺(DA)是整个动物界的重要神经递质/神经调质。在人类中,DA系统的功能障碍导致运动、认知和情感障碍。详细的研究可行的遗传模型系统果蝇允许电路水平的定义负责特定行为的途径,允许详细的时间/空间控制DA合成,并有可能发现新的神经机制与人类疾病的DA功能障碍。在这个建议中,我们研究了一种新的自发抑制多巴胺损失表型的子集。我们将使用遗传和分子技术来识别和表征这种抑制的遗传因素。我们的模型与早期帕金森病特别相关,其中描述不清的通路可以部分补偿DA水平降低,延迟症状的出现。本建议的重点是这种补偿的机制。
英文摘要
DESCRIPTION (provided by applicant): Dopamine (DA) is an important neurotransmitter/ neuromodulator throughout the animal kingdom. In humans, dysfunction of the DA system leads to motor, cognitive, and affective disorders. Detailed studies feasible in the genetic model system Drosophila melanogaster permit circuit level definition of pathways responsible for specific behaviors, allow for detailed temporal/spatial control of DA synthesis, and have the potential to uncover novel neural mechanisms relevant to human diseases of DA dysfunction. In this proposal, we study a novel and spontaneous suppression of a subset of dopamine-loss phenotypes. We will use genetic and molecular techniques to identify and characterize the genetic elements responsible for this suppression. Our model is particularly relevant to early stage Parkinson's disease, where a poorly described pathway can partially compensate for decreased DA levels, delaying appearance of symptoms. This proposal focuses on the mechanisms of this compensation.
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会议论文
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