Godement P, Wang L C, Mason C A
Department of Pathology, College of Physicians and Surgeons, Columbia University, New York, New York 10032.
J Neurosci. 1994 Nov;14(11 Pt 2):7024-39. doi: 10.1523/JNEUROSCI.14-11-07024.1994.
To study how retinal ganglion cell axons diverge in the optic chiasm, the behavior of dye-labeled fibers was monitored in real time with video microscopy in an isolated preparation of embryonic mouse brain, with a focus on embryonic day 15-16. These real-time studies have revealed the dynamics of the growth of individual retinal axons, especially the tempo of extension and growth cone behaviors during divergence in the chiasm, a model for "decision" regions in developing pathways. Within the chiasm, retinal growth cones extend by saltatory growth, consisting of bursts of rapid advance alternating with pauses in extension. During pauses, growth cone appendages remain motile, and develop asymmetries prior to a change in the axis of growth. In a zone straddling the midline, retinal fibers, irrespective of destination, display long pauses for up to several hours, making small advances and retractions with no net extension. While crossed fibers ultimately progress through the midline, uncrossed fibers from inferior temporal retina develop wide-ranging branched growth cones, and then turn back to the ipsilateral side. Turns are effected by the selective retraction or micropruning of asymmetric foci of motile activity, and by the transformation of a backward-directed filopodium into a new growth cone. The behavior of retinal axons at the midline supports the hypothesis that this locus contains cues important for retinal axon divergence. Moreover, the observations of growth cone kinetics in the chiasm elucidate which growth cone forms seen in static preparations mediate growth cone turning, and suggest a model of axon navigation in decision regions in the intact nervous system.
为了研究视网膜神经节细胞轴突在视交叉处如何发散,利用视频显微镜在分离的胚胎小鼠脑制备物中实时监测染料标记纤维的行为,重点关注胚胎第15 - 16天。这些实时研究揭示了单个视网膜轴突生长的动态过程,特别是在视交叉发散过程中延伸的节奏和生长锥行为,视交叉是发育通路中“决策”区域的一个模型。在视交叉内,视网膜生长锥通过跳跃式生长延伸,由快速前进的爆发期与延伸暂停期交替组成。在暂停期间,生长锥附属物保持活动,并在生长轴改变之前发展出不对称性。在横跨中线的一个区域,无论目的地如何,视网膜纤维都会显示长达数小时的长时间暂停,有小的前进和回缩但没有净延伸。当交叉纤维最终穿过中线时,来自颞下视网膜的未交叉纤维会形成广泛分支的生长锥,然后转向同侧。转向是通过活动不对称焦点的选择性回缩或微修剪,以及将向后的丝状伪足转化为新的生长锥来实现的。视网膜轴突在中线处的行为支持了这样一种假设,即这个位点包含对视网膜轴突发散很重要的线索。此外,对视交叉中生长锥动力学的观察阐明了在静态制备物中看到的哪些生长锥形式介导了生长锥转向,并提出了完整神经系统中决策区域轴突导航的模型。