Sabry J H, O'Connor T P, Evans L, Toroian-Raymond A, Kirschner M, Bentley D
Department of Biochemistry and Biophysics, University of California, San Francisco 94143.
J Cell Biol. 1991 Oct;115(2):381-95. doi: 10.1083/jcb.115.2.381.
The growth of an axon toward its target results from the reorganization of the cytoskeleton in response to environmental guidance cues. Recently developed imaging technology makes it possible to address the effect of such cues on the neural cytoskeleton directly. Although high resolution studies can be carried out on neurons in vitro, these circumstances do not recreate the complexity of the natural environment. We report here on the arrangement and dynamics of microtubules in live neurons pathfinding in response to natural guidance cues in situ using the embryonic grasshopper limb fillet preparation. A rich microtubule network was present within the body of the growth cone and normally extended into the distal growth cone margin. Complex microtubule loops often formed transiently within the growth cone. Branches both with and without microtubules were regularly observed. Microtubules did not extend into filopodia. During growth cone steering events in response to identified guidance cues, microtubule behaviour could be monitored. In turns towards guidepost cells, microtubules selectively invaded branches derived from filopodia that had contacted the guidepost cell. At limb segment boundaries, microtubules displayed a variety of behaviors, including selective branch invasion, and also invasion of multiple branches followed by selective retention in branches oriented in the correct direction. Microtubule invasion of multiple branches also was seen in growth cones migrating on intrasegmental epithelium. Both selective invasion and selective retention generate asymmetrical microtubule arrangements within the growth cone, and may play a key role in growth cone steering events.
轴突向其靶标的生长源于细胞骨架响应环境导向线索而进行的重组。最近开发的成像技术使得直接研究此类线索对神经细胞骨架的影响成为可能。尽管可以在体外对神经元进行高分辨率研究,但这些情况无法重现自然环境的复杂性。我们在此报告使用胚胎蚱蜢肢体去骨标本,在原位响应自然导向线索的活神经元寻路过程中微管的排列和动态。在生长锥体内存在丰富的微管网络,并且通常延伸到远端生长锥边缘。复杂的微管环常常在生长锥内短暂形成。有微管和无微管的分支都经常被观察到。微管不会延伸到丝状伪足中。在响应已确定的导向线索的生长锥转向事件中,可以监测微管的行为。在转向路标细胞时,微管选择性地侵入源自与路标细胞接触的丝状伪足的分支。在肢体节段边界处,微管表现出多种行为,包括选择性分支侵入,以及侵入多个分支后在正确方向的分支中选择性保留。在节段内上皮上迁移的生长锥中也观察到微管对多个分支的侵入。选择性侵入和选择性保留都会在生长锥内产生不对称的微管排列,并且可能在生长锥转向事件中起关键作用。