Department of Medical Neurobiology, Institute for Medical Research Israel-Canada, Hebrew University-Hadassah Medical School, Jerusalem, Israel.
J Neurosci. 2010 Nov 17;30(46):15546-57. doi: 10.1523/JNEUROSCI.2380-10.2010.
The axons of the spinal intersegmental interneurons are projected longitudinally along various funiculi arrayed along the dorsal-ventral axis of the spinal cord. The roof plate and the floor plate have a profound role in patterning their initial axonal trajectory. However, other positional cues may guide the final architecture of interneuron tracks in the spinal cord. To gain more insight into the organization of specific axonal tracks in the spinal cord, we focused on the trajectory pattern of a genetically defined neuronal population, dI3 neurons, in the chick spinal cord. Exploitation of newly characterized enhancer elements allowed specific labeling of dI3 neurons and axons. dI3 axons are projected ipsilaterally along two longitudinal fascicules at the ventral lateral funiculus (VLF) and the dorsal funiculus (DF). dI3 axons change their trajectory plane from the transverse to the longitudinal axis at two novel checkpoints. The axons that elongate at the DF turn at the dorsal root entry zone, along the axons of the dorsal root ganglion (DRG) neurons, and the axons that elongate at the VLF turn along the axons of motor neurons. Loss and gain of function of the Lim-HD protein Isl1 demonstrate that Isl1 is not required for dI3 cell fate. However, Isl1 is sufficient to impose ipsilateral turning along the motor axons when expressed ectopically in the commissural dI1 neurons. The axonal patterning of dI3 neurons, revealed in this study, highlights the role of established axonal cues-the DRG and motor axons-as intermediate guidepost cues for dI3 axons.
脊髓节间中间神经元的轴突沿沿着脊髓背腹轴排列的各种束纵向投射。顶盖和基板在塑造其初始轴突轨迹方面起着深远的作用。然而,其他位置线索可能指导脊髓中间神经元轨迹的最终结构。为了更深入地了解脊髓中特定轴突轨迹的组织,我们专注于小鸡脊髓中一个遗传定义的神经元群体 dI3 神经元的轨迹模式。利用新表征的增强子元件,可以特异性标记 dI3 神经元和轴突。dI3 轴突沿腹外侧束 (VLF) 和背侧束 (DF) 的两个纵向束突向同侧投射。dI3 轴突在两个新的检查点从横向转向纵向轴。在 DF 中延伸的轴突在背根入口区转向,沿着背根神经节 (DRG) 神经元的轴突,在 VLF 中延伸的轴突沿着运动神经元的轴突转向。Lim-HD 蛋白 Isl1 的缺失和功能获得表明,Isl1 不是 dI3 细胞命运所必需的。然而,当异位表达于连合性 dI1 神经元中时,Isl1 足以迫使轴突沿着运动神经元进行同侧转弯。本研究揭示的 dI3 神经元的轴突模式突出了已建立的轴突线索——DRG 和运动轴突——作为 dI3 轴突的中间引导线索的作用。