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Monomer-polymer equilibria in the axon: direct measurement of tubulin and actin as polymer and monomer in axoplasm

机译:轴突中的单体-聚合物平衡:直接测量微管蛋白和肌动蛋白在轴质中作为聚合物和单体的能力

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摘要

The monomer-polymer equilibria for tubulin and actin were analyzed for the cytoskeleton of the squid giant axon. Two methods were evaluated for measuring the concentrations of monomer, soluble (equilibrium) polymer, and stable polymer in extruded axoplasm. One method, the Kinetic Equilibration Paradigm ( KEP ), employs the basic principles of diffusion to distinguish freely diffusible monomer from proteins that are present in the form of polymer. The other method is pharmacological and employs either taxol or phalloidin to stabilize the microtubules and microfilaments, respectively. The results of the two methods agree and demonstrate that 22-36% of the tubulin and 41-47% of the actin are monomeric. The in vivo concentration of monomeric actin and tubulin were two to three times higher than the concentration required to polymerize these proteins in vitro, suggesting that assembly of these proteins is regulated by additional mechanisms in the axon. A significant fraction of the polymerized actin and tubulin in the axoplasm was stable microtubules and microfilaments, which suggests that the dissociation reaction is blocked at both ends of these polymers. These results are discussed in relationship to the axonal transport of the cytoskeleton and with regard to the ability of axons to change their shape in response to environmental stimuli.
机译:分析了微管蛋白和肌动蛋白的单体-聚合物平衡,以确定鱿鱼巨轴突的细胞骨架。评估了两种方法来测量挤出的质子中的单体,可溶性(平衡)聚合物和稳定聚合物的浓度。一种方法是动力学平衡范式(KEP),它采用扩散的基本原理将自由扩散的单体与以聚合物形式存在的蛋白质区分开。另一种方法是药理学的,分别使用紫杉醇或鬼笔环肽来稳定微管和微丝。两种方法的结果一致,证明了22-36%的微管蛋白和41-47%的肌动蛋白是单体。单体肌动蛋白和微管蛋白的体内浓度比在体外聚合这些蛋白质所需的浓度高2至3倍,这表明这些蛋白质的组装受轴突中其他机制的调节。轴突中聚合的肌动蛋白和微管蛋白的很大一部分是稳定的微管和微丝,这表明解离反应在这些聚合物的两端均受阻。讨论了这些结果与细胞骨架的轴突运输以及轴突响应环境刺激而改变其形状的能力有关。

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