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首页> 外文期刊>Journal of cell biology >Growth Cone Collapse through Coincident Loss of Actin Bundles and Leading Edge Actin without Actin Depolymerization
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Growth Cone Collapse through Coincident Loss of Actin Bundles and Leading Edge Actin without Actin Depolymerization

机译:通过同时丢失肌动蛋白束和前沿肌动蛋白而未发生肌动蛋白解聚的生长锥塌陷

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Repulsive guidance cues can either collapse the whole growth cone to arrest neurite outgrowth or cause asymmetric collapse leading to growth cone turning. How signals from repulsive cues are translated by growth cones into this morphological change through rearranging the cytoskeleton is unclear. We examined three factors that are able to induce the collapse of extending Helisoma growth cones in conditioned medium, including serotonin, myosin light chain kinase inhibitor, and phorbol ester. To study the cytoskeletal events contributing to collapse, we cultured Helisoma growth cones on polylysine in which lamellipodial collapse was prevented by substrate adhesion. We found that all three factors that induced collapse of extending growth cones also caused actin bundle loss in polylysine-attached growth cones without loss of actin meshwork. In addition, actin bundle loss correlated with specific filamentous actin redistribution away from the leading edge that is characteristic of repulsive factors. Finally, we provide direct evidence using time-lapse studies of extending growth cones that actin bundle loss paralleled collapse. Taken together, these results suggest that actin bundles could be a common cytoskeletal target of various collapsing factors, which may use different signaling pathways that converge to induce growth cone collapse.
机译:排斥性引导线索可能使整个生长锥塌陷以阻止神经突的长出,或者导致不对称塌陷而导致生长锥转向。尚不清楚如何通过重新排列细胞骨架将来自排斥信号的信号如何通过生长锥转化为这种形态变化。我们检查了能够在条件培养基中诱导Helisoma生长锥延长萎缩的三个因素,包括5-羟色胺,肌球蛋白轻链激酶抑制剂和佛波酯。为了研究促成塌陷的细胞骨架事件,我们在聚赖氨酸上培养了Helisoma生长锥,其中通过基质粘附防止了lamellipodial塌陷。我们发现,引起延伸生长锥塌陷的所有三个因素也导致在连接赖氨酸的生长锥中肌动蛋白束丢失,而肌动蛋白网孔没有损失。另外,肌动蛋白束的损失与排斥力的特征是远离前缘的特定丝状肌动蛋白的重新分布有关。最后,我们提供了使用时延研究的直接证据,这些研究涉及延伸的视锥细胞,肌动蛋白束损失与塌陷平行。综上所述,这些结果表明肌动蛋白束可能是各种崩溃因子的共同细胞骨架靶标,这些因子可能会使用不同的信号传导途径收敛以诱导生长锥塌陷。

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