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微管解离剂对美洲大蠊(Periplaneta americana L.)股触觉刺中感觉神经元的生理学和细胞学的影响

The effects of microtubule dissociating agents on the physiology and cytology of the sensory neuron in the femoral tactile spine of the cockroach, periplaneta americana L.

作者信息

Kuster J E, French A S, Sanders E J

出版信息

Proc R Soc Lond B Biol Sci. 1983 Oct 22;219(1217):397-412. doi: 10.1098/rspb.1983.0080.

Abstract

Microtubules are prominent cellular components of the mechanosensory and chemosensory sensilla associated with the insect cuticle, and a range of hypotheses have been proposed to account for their role in sensory transduction. Chemical agents such as colchicine and vinblastine, which dissociate microtubules, also interfere with transduction in these sensilla, and this has been attributed to their anti-microtubule activity. We have now examined the dynamic properties of sensory transduction in the mechanosensitive neuron of the cockroach femoral tactile spine, after the application of colchicine, vinblastine and lumicolchicine. Concurrently we have examined the ultrastructure of the same sensory ending by transmission electron microscopy. All of the drugs reduced the mechanical sensitivity o the receptor. Colchicine and vinblastine achieved this reduction without altering the dynamic properties of the receptor but lumicolchicine changed the dynamic response, and increased the relative sensitivity to rapid movements. Conduction velocity, another measure of neuronal function, which relies upon ionic currents flowing through the membrane, was reduced by all three drugs. The effects of the drugs upon the ultrastructure of the sensory ending were also disparate. In the case of colchicine there was complete dissociation of microtubules in the tubular body and distal dendrite before a total loss of mechanical sensitivity. Vinblastine was less effective in dissociating microtubules, although more effective in the reduction of mechanical sensitivity. With lumicolchicine the dominant morphological effect was a severe disruption of the dendritic membrane. We conclude from these experiments that microtubules are not essential in the transduction of mechanical stimuli by cuticular receptors and that the effects of these drugs upon mechanosensitivity are not directly related to their dissociation of the microtubules in the tubular body, but are more likely to arise from actions upon the cell membrane. These actions could include effects upon tubulin in the membrane or upon other membrane components.

摘要

微管是与昆虫表皮相关的机械感觉和化学感觉感受器中显著的细胞成分,人们已经提出了一系列假说来解释它们在感觉转导中的作用。诸如秋水仙碱和长春花碱等能使微管解聚的化学试剂,也会干扰这些感受器中的转导过程,这被归因于它们的抗微管活性。我们现在研究了在施加秋水仙碱、长春花碱和光秋水仙碱后,蟑螂股节触觉刺中机械敏感神经元的感觉转导动态特性。同时,我们通过透射电子显微镜检查了同一感觉末梢的超微结构。所有这些药物都降低了感受器的机械敏感性。秋水仙碱和长春花碱在不改变感受器动态特性的情况下实现了这种降低,但光秋水仙碱改变了动态反应,并增加了对快速运动的相对敏感性。传导速度是神经元功能的另一个指标,它依赖于离子电流流过细胞膜,这三种药物都使其降低。这些药物对感觉末梢超微结构的影响也各不相同。就秋水仙碱而言,在机械敏感性完全丧失之前,管状体和远端树突中的微管就完全解聚了。长春花碱在使微管解聚方面效果较差,尽管在降低机械敏感性方面更有效。对于光秋水仙碱,主要的形态学效应是树突膜的严重破坏。我们从这些实验中得出结论,微管在表皮感受器对机械刺激的转导中并非必不可少,并且这些药物对机械敏感性的影响与其在管状体中使微管解聚并无直接关系,而更可能是由对细胞膜的作用引起的。这些作用可能包括对膜中微管蛋白或其他膜成分的影响。

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