Kohl Ayelet, Hadas Yoav, Klar Avihu, Sela-Donenfeld Dalit
Koret School of Veterinary Medicine, The Hebrew University of Jerusalem.
J Vis Exp. 2013 May 29(75):e50136. doi: 10.3791/50136.
Electroporation of the chick embryonic neural tube has many advantages such as being quick and efficient for the expression of foreign genes into neuronal cells. In this manuscript we provide a method that demonstrates uniquely how to electroporate DNA into the avian hindbrain at E2.75 in order to specifically label a subset of neuronal progenitors, and how to follow their axonal projections and synaptic targets at much advanced stages of development, up to E14.5. We have utilized novel genetic tools including specific enhancer elements, Cre/Lox - based plasmids and the PiggyBac-mediated DNA transposition system to drive GFP expression in a subtype of hindbrain cells (the dorsal most subgroup of interneurons, dA1). Axonal trajectories and targets of dA1 axons are followed at early and late embryonic stages at various brainstem regions. This strategy contributes advanced techniques for targeting cells of interest in the embryonic hindbrain and for tracing circuit formation at multiple stages of development.
鸡胚神经管的电穿孔具有诸多优点,比如能快速高效地将外源基因导入神经元细胞。在本论文中,我们提供了一种独特的方法,该方法展示了如何在胚胎发育第2.75天(E2.75)将DNA电穿孔导入禽类后脑,以便特异性标记一部分神经祖细胞,以及如何在发育的更晚期阶段(直至E14.5)追踪它们的轴突投射和突触靶点。我们利用了新型遗传工具,包括特定增强子元件、基于Cre/Lox的质粒以及PiggyBac介导的DNA转座系统,来驱动绿色荧光蛋白(GFP)在后脑细胞的一个亚型(最背侧的中间神经元亚群,dA1)中表达。在胚胎早期和晚期的各个脑干区域追踪dA1轴突的轴突轨迹和靶点。该策略为在胚胎后脑中靶向感兴趣的细胞以及在发育的多个阶段追踪神经回路形成提供了先进技术。