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UNC-6/网蛋白及其受体UNC-5在局部将突触前成分排除在树突之外。

UNC-6/netrin and its receptor UNC-5 locally exclude presynaptic components from dendrites.

作者信息

Poon Vivian Y, Klassen Matthew P, Shen Kang

机构信息

Neuroscience Program, Stanford University School of Medicine, 300 Pasteur Drive, California 94305, USA.

出版信息

Nature. 2008 Oct 2;455(7213):669-73. doi: 10.1038/nature07291.

Abstract

Polarity is an essential feature of many cell types, including neurons that receive information from local inputs within their dendrites and propagate nerve impulses to distant targets through a single axon. It is generally believed that intrinsic structural differences between axons and dendrites dictate the polarized localization of axonal and dendritic proteins. However, whether extracellular cues also instruct this process in vivo has not been explored. Here we show that the axon guidance cue UNC-6/netrin and its receptor UNC-5 act throughout development to exclude synaptic vesicle and active zone proteins from the dendrite of the Caenorhabditis elegans motor neuron DA9, which is proximal to a source of UNC-6/netrin. In unc-6/netrin and unc-5 loss-of-function mutants, presynaptic components mislocalize to the DA9 dendrite. In addition, ectopically expressed UNC-6/netrin, acting through UNC-5, is sufficient to exclude endogenous synapses from adjacent subcellular domains within the DA9 axon. Furthermore, this anti-synaptogenic activity is interchangeable with that of LIN-44/Wnt despite being transduced through different receptors, suggesting that extracellular cues such as netrin and Wnts not only guide axon navigation but also regulate the polarized accumulation of presynaptic components through local exclusion.

摘要

极性是许多细胞类型的一个基本特征,包括神经元,它们在树突内接收来自局部输入的信息,并通过单个轴突将神经冲动传递到远处的靶点。人们普遍认为,轴突和树突之间的内在结构差异决定了轴突和树突蛋白的极化定位。然而,细胞外信号是否也在体内指导这一过程尚未得到探索。在这里,我们表明轴突导向信号UNC-6/网蛋白及其受体UNC-5在整个发育过程中发挥作用,将突触小泡和活性区蛋白排除在秀丽隐杆线虫运动神经元DA9的树突之外,DA9靠近UNC-6/网蛋白的来源。在unc-6/网蛋白和unc-5功能丧失突变体中,突触前成分错误定位于DA9树突。此外,通过UNC-5起作用的异位表达的UNC-6/网蛋白足以将内源性突触从DA9轴突内的相邻亚细胞结构域中排除。此外,尽管通过不同的受体转导,但这种抗突触形成活性与LIN-44/ Wnt的活性是可互换的,这表明诸如网蛋白和Wnt等细胞外信号不仅指导轴突导航,而且还通过局部排除来调节突触前成分的极化积累。

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