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鱿鱼巨轴突中的快速轴突运输。

Fast axonal transport in squid giant axon.

作者信息

Allen R D, Metuzals J, Tasaki I, Brady S T, Gilbert S P

出版信息

Science. 1982 Dec 10;218(4577):1127-9. doi: 10.1126/science.6183744.

Abstract

Video-enhanced contrast-differential interference contrast microscopy has revealed new features of axonal transport in the giant axon of the squid, where no movement had been detected previously by conventional microscopy. The newly discovered dominant feature is vast numbers of "submicroscopic" particles, probably 30- to 50-nanometer vesicles and other tubulovesicular elements, moving parallel to linear elements, primarily in the orthograde direction but also in a retrograde direction, at a range of steady velocities up to +/- 5 micrometers per second. Medium (0.2 to 0.6 micrometer) and large (0.8 micrometer) particles move more slowly and more intermittently with a tendency at times to exhibit elastic recoil. The behavior of the smallest particles and the larger particles during actual translocation suggests that the fundamental processes in the mechanisms of organelle movement in axonal transport are not saltatory but continuous.

摘要

视频增强对比度 - 微分干涉差显微镜揭示了鱿鱼巨大轴突中轴突运输的新特征,而传统显微镜以前未检测到其中的运动。新发现的主要特征是大量“亚微观”颗粒,可能是30至50纳米的囊泡和其他微管泡状成分,它们平行于线性成分移动,主要是顺行方向,但也有逆行方向,稳定速度范围高达每秒±5微米。中等大小(0.2至0.6微米)和大颗粒(0.8微米)移动得更慢且更断断续续,有时有表现出弹性反弹的趋势。最小颗粒和较大颗粒在实际转运过程中的行为表明,轴突运输中细胞器运动机制的基本过程不是跳跃式的,而是连续的。

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