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Systematic analysis of genes required for synapse structure and function

机译:系统分析突触结构和功能所需的基因

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Chemical synapses are complex structures that mediate rapid intercellular signalling in the nervous system. Proteomic studies suggest that several hundred proteins will be found at synaptic specializations. Here we describe a systematic screen to identify genes required for the function or development of Caenorhabditis elegans neuromuscular junctions. A total of 185 genes were identified in an RNA interference screen for decreased acetylcholine secretion; 132 of these genes had not previously been implicated in synaptic transmission. Functional profiles for these genes were determined by comparing secretion defects observed after RNA interference under a variety of conditions. Hierarchical clustering identified groups of functionally related genes, including those involved in the synaptic vesicle cycle, neuropeptide signalling and responsiveness to phorbol esters. Twenty-four genes encoded proteins that were localized to presynaptic specializations. Loss-of-function mutations in 12 genes caused defects in presynaptic structure.
机译:化学突触是复杂的结构,可介导神经系统中的快速细胞间信号传导。蛋白质组学研究表明,在突触专业化过程中会发现数百种蛋白质。在这里,我们描述了系统的筛选,以鉴定秀丽隐杆线虫神经肌肉连接的功能或发育所需的基因。 RNA干扰筛选中共鉴定出185个基因,可降低乙酰胆碱的分泌。这些基因中的132以前未涉及突触传递。通过比较各种条件下RNA干扰后观察到的分泌缺陷来确定这些基因的功能概况。层次聚类确定了功能相关基因的组,包括与突触小泡循环,神经肽信号传导和对佛波酯的反应性有关的基因。二十四个基因编码的蛋白质定位于突触前的专门化。 12个基因的功能丧失突变导致突触前结构缺陷。

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