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由小龙虾神经索微管蛋白体外聚合并用单宁酸固定的微管的壁亚结构。

Wall substructure of microtubules polymerized in vitro from tubulin of crayfish nerve cord and fixed with tannic acid.

作者信息

Pierson G B, Burton P R, Himes R H

出版信息

J Cell Sci. 1979 Oct;39:89-99. doi: 10.1242/jcs.39.1.89.

Abstract

Microtubules of axons of crayfish nerve cord normally have 12 wall protofilaments and microtubules of surrounding glial cells have 13 protofilaments. Tubulin was isolated from such nerve cords and polymerized in vitro; tannic acid staining of sedimented microtubules showed that microtubules with 12 and 13 wall protofilaments were present, suggesting that the ability to form a microtubule with a given number of protofilaments is inherent in the tubulin or its associated proteins. The temperature of polymerization was found to influence the number of protofilaments in resultant microtubules. With assembly at 20 degrees C, for example, most of the complete microtubules had 13 protofilaments, while at 40 degrees C most showed 10 protofilaments. It is suggested that the temperature of in vitro polymerization, among other factors, can influence the angle of binding between adjacent protofilaments and thus alter the number of protofilaments required to complete the circumference of the tubule.

摘要

小龙虾神经索轴突的微管通常有12条壁原纤维,而周围神经胶质细胞的微管有13条原纤维。从这样的神经索中分离出微管蛋白并在体外聚合;对沉淀的微管进行单宁酸染色显示存在具有12条和13条壁原纤维的微管,这表明形成具有特定数量原纤维的微管的能力是微管蛋白或其相关蛋白所固有的。发现聚合温度会影响所得微管中原纤维的数量。例如,在20℃组装时,大多数完整的微管有13条原纤维,而在40℃时大多数显示10条原纤维。有人提出,体外聚合温度以及其他因素可以影响相邻原纤维之间的结合角度,从而改变完成微管周长所需的原纤维数量。

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