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用荧光染料可视化活体果蝇的神经胶质-神经肌肉接头。

Visualizing the live Drosophila glial-neuromuscular junction with fluorescent dyes.

作者信息

Brink Dee, Gilbert Mary, Auld Vanessa

机构信息

Department of Zoology, University of British Columbia.

出版信息

J Vis Exp. 2009 May 13(27):1154. doi: 10.3791/1154.

Abstract

Our project identified GFP labeled glial structures at the developing larval fly neuromuscular synapse. To look at development of live glial-nerve-muscle synapses, we developed a larval tissue preparation that had features of live intact larvae, but also had good optical properties. This new preparation also allowed for access of perfusates to the synapse. We used fly larvae, immersed them in artificial hemolymph, and relaxed their normal rhythmic body contractions by chilling them. Next we dissected off the posterior segments of each animal and with a blunt insect pin pushed the mouth parts backward through the body cavity. This everted the larval body wall, like turning a sock inside-out. We completed the dissection with ultra-fine dissection scissors and thus exposed the visceral side of the body wall muscles. The glial structures at the NMJ expressed membrane targeted GFP under the control of glial specific promoters. The post-synaptic membrane, the SSR (Subsynaptic Reticula) in muscle expressed synaptically targeted dsRed. We needed to acutely label the motor neuron terminals, the third part of the synapse. To do this we applied primary antibodies to HRP, conjugated to a far-red emitting flurophore. To test for dye diffusion properties into the perisynaptic space between the motor neuron terminals and the SSR, we applied a solution of large Dextran molecules conjugated to far-red emitting flurophore and collected images.

摘要

我们的项目在发育中的幼虫果蝇神经肌肉突触处鉴定出了绿色荧光蛋白(GFP)标记的神经胶质结构。为了观察活的神经胶质-神经-肌肉突触的发育情况,我们开发了一种幼虫组织制备方法,该方法具有完整活幼虫的特征,同时也具有良好的光学特性。这种新的制备方法还能使灌注液进入突触。我们使用果蝇幼虫,将它们浸入人工血淋巴中,并通过冷藏使其正常的节律性身体收缩松弛。接下来,我们解剖每只动物的后部,并用一根钝头昆虫针将口器向后推穿过体腔。这使幼虫的体壁外翻,就像把袜子翻过来一样。我们用超细解剖剪刀完成解剖,从而暴露体壁肌肉的内脏侧。神经肌肉接头处的神经胶质结构在神经胶质特异性启动子的控制下表达膜靶向绿色荧光蛋白。突触后膜,即肌肉中的亚突触网(SSR),表达突触靶向的红色荧光蛋白(dsRed)。我们需要对运动神经元末梢(突触的第三部分)进行急性标记。为此,我们应用了与远红发射荧光团偶联的辣根过氧化物酶(HRP)的一抗。为了测试染料扩散到运动神经元末梢和亚突触网之间的突触周围空间的特性,我们应用了与远红发射荧光团偶联的大葡聚糖分子溶液并采集图像。

相似文献

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Drosophila larval NMJ dissection.果蝇幼虫神经肌肉接头解剖。
J Vis Exp. 2009 Feb 4(24):1107. doi: 10.3791/1107.

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