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轴突运输:对猫体内保留和运输的蛋白质组分的定量研究。

Axonal transport: a quantitative study of retained and transported protein fraction in the cat.

作者信息

Muñoz-Martínez E J, Núñez R, Sanderson A

出版信息

J Neurobiol. 1981 Jan;12(1):15-26. doi: 10.1002/neu.480120103.

Abstract

The fast axonal transport of proteins was studied in the cat sciatic nerve after injection of [3H]leucine into the spinal ganglion or the ventral horn of the seventh lumbar segment. The amount of transported proteins after ganglion injection was linearly related to the amount of label present at the ganglion. At variable intervals after ganglion or spinal cord injection, the sciatic nerves were sectioned in some experiments. The transport of proteins continued in the peripheral nerve stump in a wavelike manner, but the advancing wave leaves a labeled trail behind. A fraction of this trail corresponds to proteins moving at slower velocities than the velocity of proteins in the wave front. Another fraction of the trail corresponds to molecules retained by the axons. Each nerve segment of 5 mm in length retains 1.5% of the transported proteins, and the profile of retained proteins along the sciatic nerves follows a single exponential function. From the proportion of retained proteins, the concentration of transported proteins at the terminals of branching axons as a function of the branching ratio was estimated. In the case of motor axons innervating the soleus muscle of the cat, the concentration of recently transported proteins at the nerve terminals would be approximately 0.83% of the proteins leaving the spinal cord. This low concentration of transported proteins at the nerve terminals may explain the lability of neuromuscular synapses when axonal transport is decreased or interrupted.

摘要

将[3H]亮氨酸注射到猫的脊髓神经节或第七腰段腹角后,对猫坐骨神经中蛋白质的快速轴突运输进行了研究。神经节注射后运输的蛋白质量与神经节处存在的标记量呈线性相关。在神经节或脊髓注射后的不同时间间隔,在一些实验中切断坐骨神经。蛋白质在周围神经残端以波状方式继续运输,但前进的波后面会留下一条标记轨迹。这条轨迹的一部分对应于以比波前蛋白质速度慢的速度移动的蛋白质。轨迹的另一部分对应于被轴突保留的分子。每段5毫米长的神经段保留1.5%的运输蛋白,沿坐骨神经保留蛋白的分布遵循单一指数函数。根据保留蛋白的比例,估计了分支轴突末端运输蛋白的浓度与分支比的函数关系。对于支配猫比目鱼肌的运动轴突,神经末梢最近运输的蛋白浓度约为离开脊髓的蛋白的0.83%。神经末梢运输蛋白的这种低浓度可能解释了轴突运输减少或中断时神经肌肉突触的不稳定性。

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