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Axonal transport of cytoskeletal proteins in oculomotor axons and their residence times in the axon terminals

机译:动眼神经轴突中细胞骨架蛋白的轴突转运及其在轴突末端的停留时间

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摘要

Cytoskeletal protein transport and metabolism are studied in the somatic motor and parasympathetic axons of the chicken oculomotor system. Kinetic analyses of pulse-labeled proteins indicate that the neurofilaments are transported 2–3 times more rapidly in the somatic motor axons than in the parasympathetic axons. By contrast, the transport rates of the slow component b (SCb) proteins are very similar in these axons. The parasympathetic axons terminate in the ciliary ganglion, and radiolabeling curves from the ciliary ganglion can be used to study the kinetics of cytoskeletal protein removal from the terminals. The rate of removal directly determines the residence time of the cytoskeletal proteins in the ciliary ganglion, and the residence time directly affects the shape and amplitude of the transport curves of the ganglion. A computer model was used to analyze these transport curves and to determine the half-residence time of the cytoskeletal proteins in the terminal regions. From the computer experiments, we estimate that the half-residence times of the neurofilament proteins actin and tubulin are 2, 3.5, and 7 d, respectively. The differences between the half-residence times of the cytoskeletal proteins indicate that the rate of protein removal from the terminals differs for these proteins. On the basis of these results, we propose that the removal mechanisms critically control the composition of the cytoskeleton in the terminal regions. Through their effects on its composition, the removal mechanisms have a crucial role in converting the cytoskeleton of the axon proper into the specialized cytoskeleton of the axon terminal.
机译:在鸡动眼系统的体细胞运动和副交感神经轴突中研究了细胞骨架蛋白的运输和代谢。脉冲标记蛋白的动力学分析表明,体细胞运动轴突中神经丝的运输速度是副交感神经轴突中的2-3倍。相比之下,这些轴突中慢成分b(SCb)蛋白的转运速率非常相似。副交感神经轴突终止于睫状神经节,来自睫状神经节的放射标记曲线可用于研究从末端去除细胞骨架蛋白的动力学。去除速率直接决定了细胞骨架蛋白在睫状神经节中的停留时间,而停留时间直接影响神经节中运输曲线的形状和幅度。使用计算机模型分析这些转运曲线并确定末端区域中细胞骨架蛋白的半衰期。根据计算机实验,我们估计神经丝蛋白肌动蛋白和微管蛋白的半衰期分别为2、3.5和7 d。细胞骨架蛋白质的半衰期时间之间的差异表明,这些蛋白质从末端去除蛋白质的速率不同。根据这些结果,我们提出去除机制可严格控制末端区域中细胞骨架的组成。通过其对其组成的影响,去除机理在将轴突固有的细胞骨架转化为轴突末端的专门细胞骨架中具有关键作用。

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