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生长锥上配体-受体复合物的运输作为轴突远端摄取神经生长因子的关键步骤:单分子分析

Trafficking of a ligand-receptor complex on the growth cones as an essential step for the uptake of nerve growth factor at the distal end of the axon: a single-molecule analysis.

作者信息

Tani Tomomi, Miyamoto Yoshikazu, Fujimori Kazuhiro E, Taguchi Takahisa, Yanagida Toshio, Sako Yasushi, Harada Yoshie

机构信息

Tokyo Metropolitan Institute of Medical Science, Tokyo 113-8613, Japan.

出版信息

J Neurosci. 2005 Mar 2;25(9):2181-91. doi: 10.1523/JNEUROSCI.4570-04.2005.

Abstract

The behavior of single molecules of neurotrophins on growth cones was observed by the use of the fluorescent conjugate of nerve growth factor (NGF), Cy3-NGF. After the application of 0.4 nm Cy3-NGF, chick dorsal root ganglion growth cones responded within 1 min of adding the stimulus by expanding their lamellipodia. Only 40 molecules of Cy3-NGF, which occupied <5% of the estimated total binding sites on a single growth cone, were required to initiate the motile responses. After binding to the high-affinity receptor, Cy3-NGF displayed lateral diffusion on the membrane of the growth cones with a diffusion constant of 0.3 microm2 s(-1). The behavior of Cy3-NGF was shifted to a one-directional rearward movement toward the central region of the growth cone. The one-directional movement of Cy3-NGF displayed the same rate as the rearward flow of actin, approximately 4 microm/min. This movement could be stopped by the application of the potent inhibitor of actin polymerization, latrunculin B. Molecules of Cy3-NGF were suggested to be internalized in the vicinity of the central region of the growth cone during this rearward trafficking, because Cy3-NGF remained in the growth cone after the growth cones had been exposed to an acidic surrounding medium: acidic medium causes the complete dissociation of Cy3-NGF from the receptors on the surface of growth cones. These results suggested that actin-driven trafficking of the NGF receptor complex is an essential step for the accumulation and endocytosis of NGF at the growth cone and for the retrograde transport of NGF toward the cell body.

摘要

通过使用神经生长因子(NGF)的荧光共轭物Cy3-NGF,观察了神经营养因子单分子在生长锥上的行为。施加0.4 nM的Cy3-NGF后,鸡背根神经节生长锥在添加刺激后1分钟内通过扩展其片状伪足做出反应。仅需40个Cy3-NGF分子就能引发运动反应,这些分子占据单个生长锥上估计总结合位点的不到5%。与高亲和力受体结合后,Cy3-NGF在生长锥膜上以0.3微米2秒-1的扩散常数进行横向扩散。Cy3-NGF的行为转变为朝着生长锥中心区域的单向向后运动。Cy3-NGF的单向运动速率与肌动蛋白的向后流动速率相同,约为4微米/分钟。这种运动可以通过施加肌动蛋白聚合的强效抑制剂拉特罗毒素B来停止。在这种向后运输过程中,Cy3-NGF分子被认为在生长锥中心区域附近被内化,因为在生长锥暴露于酸性周围介质后,Cy3-NGF仍留在生长锥中:酸性介质会导致Cy3-NGF从生长锥表面的受体上完全解离。这些结果表明,肌动蛋白驱动的NGF受体复合物运输是NGF在生长锥处积累和内吞以及NGF向细胞体逆行运输的关键步骤。

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