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MOLECULAR GENETIC ANALYSIS OF DEVELOPING SYNAPSES

MOLECULAR GENETIC ANALYSIS OF DEVELOPING SYNAPSES
突触发育的分子遗传学分析
批准号:
8440995
负责人:
MICHAEL L NONET
金额:
$38.0万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-04-01 至 2014-03-31

项目摘要

项目成果

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中文摘要
翻译
描述(由申请人提供):神经细胞交流的主要方式是通过化学突触释放神经递质。大脑的功能以及大脑存储和处理信息的能力取决于突触连接的精确和可靠的形成。这一建议旨在发展分子理解调节突触发生过程的机制。我们建议结合遗传学,细胞生物学,分子生物学和实时成像,通过研究一组神经-神经突触的特定组装来识别和表征协调突触发育的信号通路的分子成分的作用。在以前的工作中,我们描述了新生突触形成的细胞事件的顺序,通过可视化荧光标记的成分招募到新形成的突触。此外,我们还分离出破坏这些突触形成的突变体。克隆其中的一个子集,鉴定出一种选择性靶向泛素介导降解蛋白的F-box蛋白、几种细胞骨架调节蛋白、一种转录调节蛋白和一种新的保守蛋白。利用各种分子、遗传和蛋白质相互作用的研究,我们现在建议在机制水平上确定这些蛋白质如何调节突触组装。此外,我们将使用遗传方法分离和表征秀丽隐杆线虫机械感觉神经元及其突触伙伴之间信号中断的其他基因,以扩展我们对这一过程的分子理解。总之,这些方法将有助于确定细胞在突触形成和突触维持过程中用于识别和相互交流的机制。虽然秀丽隐杆线虫的突触发生无疑没有脊椎动物那么复杂,但已经很清楚的是,在这两个系统中,类似的途径起作用。因此,对秀丽隐杆线虫中参与这一过程的分子的分析应该有助于定义一套一般的和可能保守的原则,这些原则在一般的突触发生机制中是共同的。
英文摘要
DESCRIPTION (provided by applicant): The primary means by which nerve cells communicate is via the release of neurotransmitter at chemical synapses. The function of the brain and the ability of the brain to store and process information depends on synaptic connections forming precisely and reliably. This proposal is directed towards developing a molecular understanding the mechanisms that regulated this process of synaptogenesis. We propose to use a combination of genetics, cell biology, molecular biology and live imaging to identify and characterize the role of molecular components of the signaling pathways that coordinate synaptic development by studying the specific assembly of a set of nerve-nerve synapses. In previous work, we described the order of cellular events in nascent synapse formation by visualizing the recruitment of fluorescent-tagged components to newly forming synapses. Furthermore, we isolated mutants that disrupt the formation of these synapses. Cloning of a subset of these identified an F-box protein that selectively targets proteins for ubiquitin-mediated degradation, several regulators of the cytoskeleton, a transcriptional regulatory protein and a novel conserved protein. Using a variety of molecular, genetic and protein interaction studies we now propose to determine at a mechanistic level how these proteins function to regulate synapse assembly. In addition, we will use genetic approaches to isolate and characterize additional genes that disrupt signaling between mechanosensory neurons and their synaptic partners in C. elegans to extend our molecular understanding of the process. Together these approaches will help define mechanisms that cells use to identify and communicate with one another during the process of synapse formation and synaptic maintenance. While synaptogenesis is undoubtedly less complex in C. elegans than in vertebrates, it is already clear that similar pathways operate in both systems. Thus, analysis of the molecules participating in the process in C. elegans should help define a set of general and likely conserved principles that are common to synaptogenesis mechanisms in general.
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  • 项目类别:
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  • 财政年份:
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