Porter M E, Johnson K A
J Biol Chem. 1983 May 25;258(10):6575-81.
Dynein was obtained by high salt extraction of Tetrahymena cilia and purified by DEAE-Sephacel chromatography. This fraction consisted of a mixture of 30 S dynein (80%) and the 14 S ATPase (15%). The column purification effectively removed tubulin and adenylate kinase. Sodium dodecyl sulfate-polyacrylamide electrophoresis indicated that the 30 S dynein was composed of a major heavy chain (approximately 400 kD, three copies), three intermediate chains (70, 85, and 100 kD), and a group of light chains (approximately 20 kD). The binding of the column-purified dynein to bovine brain microtubules was characterized as follows. (i) Titration of the dynein with microtubules showed a linear increase in turbidity up to an equivalence point of 2.7 mg of dynein/mg of tubulin with apparently tight binding; (ii) the addition of ATP caused the turbidity of the solution of decrease to a level equal to the sum of free dynein plus microtubules; (iii) transmission electron microscopy indicated that microtubules were decorated with dynein arms spaced at a 24-nm longitudinal repeat and that the dynein decoration was removed upon addition of ATP; (iv) cross-section images of microtubules that were saturated with dynein showed six to seven dynein arms around a microtubule consisting of 14 protofilaments, corresponding to a molar ratio of one dynein/six tubulin dimers; (v) the dynein arms were bound primarily by their broader end which corresponds to the end normally bound to the B-subfiber in vivo. Experiments with purified 30 and 14 S dyneins indicated that the dynein-microtubule binding activity and the ATP-induced dissociation were the properties of the 30 S dynein alone. These studies demonstrate that the 30 S dynein under our conditions (50 mM PIPES, pH 6.96, 4 mM MgSO4) interacts with bovine brain microtubules through the ATP-sensitive site of the dynein arm.
动力蛋白是通过用高盐溶液提取嗜热四膜虫纤毛并经DEAE - 琼脂糖凝胶柱层析纯化得到的。该组分由30S动力蛋白(80%)和14S ATP酶(15%)的混合物组成。柱层析纯化有效地去除了微管蛋白和腺苷酸激酶。十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳表明,30S动力蛋白由一条主要重链(约400kD,三个拷贝)、三条中间链(70kD、85kD和100kD)以及一组轻链(约20kD)组成。柱纯化的动力蛋白与牛脑微管的结合特性如下:(i)用微管滴定动力蛋白显示,浊度呈线性增加,直至达到2.7mg动力蛋白/mg微管蛋白的当量点,结合明显紧密;(ii)添加ATP导致溶液浊度降低至等于游离动力蛋白加微管的总和的水平;(iii)透射电子显微镜显示微管被间隔为24nm纵向重复的动力蛋白臂装饰,并且添加ATP后动力蛋白装饰消失;(iv)用动力蛋白饱和的微管的横截面图像显示,围绕由14条原纤维组成的微管有六到七个动力蛋白臂,对应于一个动力蛋白/六个微管蛋白二聚体的摩尔比;(v)动力蛋白臂主要通过其较宽的一端结合,该端对应于体内通常与B亚纤维结合的一端。用纯化的30S和14S动力蛋白进行的实验表明,动力蛋白 - 微管结合活性和ATP诱导的解离是仅30S动力蛋白的特性。这些研究表明,在我们的条件下(50mM PIPES,pH 6.96,4mM MgSO4),30S动力蛋白通过动力蛋白臂的ATP敏感位点与牛脑微管相互作用。