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微管解聚后神经突的细胞骨架。

The cytoskeleton of neurites after microtubule depolymerization.

作者信息

Joshi H C, Baas P, Chu D T, Heidemann S R

出版信息

Exp Cell Res. 1986 Mar;163(1):233-45. doi: 10.1016/0014-4827(86)90576-8.

Abstract

We previously reported a positive correlation between the number of cold-stable microtubules (MTs) remaining after cold treatment of cat sympathetic nerve and the extent to which the original uniform polarity orientation of axonal MTs was recapitulated after rewarming (J cell biol 99 (1984) 1289). We interpreted these data to indicate that cold-stable fragments, part of larger, generally labile MTs, could act as seeds to organize MT assembly in axons. We report here a direct investigation of the form of cold-stable MTs in neurites of PC-12 cells using two-dimensional reconstruction of serial thin sections. Our data provides strong support for our previous interpretation. The number of MTs in cold-treated neurites was 2-3 times as great while the total length of polymer was approximately half that in control neurites. The average length of MTs in cold-treated neurites was 7-10 times lower than in control neurites. We observed that treatments that depolymerize axonal microtubules cause a marked increase in the number of membranous elements within the axoplasm. This may, however, be a non-specific result of an insult to the axon, since such changes have also been observed in severed, regenerating nerve fibres. We observed that neuroblastoma neurites respond to MT-depolymerization stimuli by developing lateral filopodia similar to those observed in chick dorsal root ganglion cells. Ultrastructural observation of detergent-lysed, whole mounted neuroblastoma (Neuro 2A) cells indicated that the cytoskeleton remaining after MT depolymerization splayed out perpendicular to the long axis of the neurite. That is, we were able to observe many more cytoskeletal 'ends' after MT depolymerization. The concomitant production of filopodia and the splaying of the cytoskeleton after MT depolymerization supports the hypothesis put forward by Wessels et al. (Exp cell res 117 (1978) 335) that the presence or absence of cytoskeletal ends regulates which region of the cell surface is involved in motile behaviour.

摘要

我们之前报道过,猫交感神经冷处理后剩余的冷稳定微管(MTs)数量与复温后轴突MTs原始均匀极性方向的重现程度之间存在正相关(《细胞生物学杂志》99卷(1984年)1289页)。我们对这些数据的解释是,冷稳定片段作为较大的、通常不稳定的MTs的一部分,可以作为种子来组织轴突中的MT组装。我们在此报告了一项对PC - 12细胞神经突中冷稳定MTs形态的直接研究,采用连续薄切片的二维重建方法。我们的数据为我们之前的解释提供了有力支持。冷处理神经突中的MT数量是对照神经突的2 - 3倍,而聚合物的总长度约为对照神经突的一半。冷处理神经突中MT的平均长度比对照神经突低7 - 10倍。我们观察到,使轴突微管解聚的处理会导致轴浆内膜性成分数量显著增加。然而,这可能是对轴突损伤的非特异性结果,因为在切断的、正在再生的神经纤维中也观察到了这种变化。我们观察到神经母细胞瘤神经突对MT解聚刺激的反应是形成类似于在鸡背根神经节细胞中观察到的侧方丝状伪足。对经去污剂裂解、整装的神经母细胞瘤(Neuro 2A)细胞的超微结构观察表明,MT解聚后剩余的细胞骨架垂直于神经突的长轴展开。也就是说,MT解聚后我们能够观察到更多的细胞骨架“末端”。MT解聚后丝状伪足的同时产生以及细胞骨架的展开支持了韦塞尔等人(《细胞研究实验》117卷(1978年)335页)提出的假说,即细胞骨架末端的存在与否调节细胞表面参与运动行为的区域。

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