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Axonal tubulin and axonal microtubules: biochemical evidence for cold stability

机译:轴突微管蛋白和轴突微管:冷稳定性的生化证据

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摘要

Nerve extracts containing tubulin labeled by axonal transport were analyzed by electrophoresis and differential extraction. We found that a substantial fraction of the tubulin in the axons of the retinal ganglion cell of guinea pigs is not solubilized by conventional methods for preparation of microtubules from whole brain. In two-dimensional polyacrylamide gel electrophoresis this cold-insoluble tubulin was biochemically distinct from tubulin obtained from whole brain microtubules prepared by cold cycling. Cleveland peptide maps also indicated some differences between the cold-extractable and cold- insoluble tubulins. The demonstration of cold-insoluble tubulin that is specifically axonal in origin permits consideration of the physiological role of cold-insoluble tubulin in a specific cellular structure. It appears likely that much of this material is in the form of cold-stable microtubules. We propose that the physiological role of cold-insoluble tubulin in the axon may be associated with the regulation of the axonal microtubule complexes in neurons.
机译:通过电泳和差异提取分析含有被轴突运输标记的微管蛋白的神经提取物。我们发现豚鼠视网膜神经节细胞轴突中的微管蛋白的大部分不被用于从全脑制备微管的常规方法溶解。在二维聚丙烯酰胺凝胶电泳中,这种冷不溶性微管蛋白在生化上与通过冷循环制备的全脑微管获得的微管蛋白不同。克利夫兰肽图也表明冷提取和冷不溶微管蛋白之间存在一些差异。起源于轴突的冷不溶性微管蛋白的展示允许考虑冷不溶性微管蛋白在特定细胞结构中的生理作用。这种材料很可能以冷稳定的微管形式存在。我们建议轴突中的冷不溶性微管蛋白的生理作用可能与神经元中轴突微管复合物的调节有关。

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