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衣藻动力蛋白与微管蛋白的相互作用。

Interaction of Chlamydomonas dynein with tubulin.

作者信息

Haimo L T, Fenton R D

机构信息

Department of Biology, University of California, Riverside.

出版信息

Cell Motil Cytoskeleton. 1988;9(2):129-39. doi: 10.1002/cm.970090205.

Abstract

Studies were conducted to determine if dynein could bind to unpolymerized tubulin. Tubulin alone normally fractionated in the included volume of a molecular sieve Bio-Gel A-1.5m column. Incubated together, tubulin and dynein coeluted in the void volumn, suggesting that a complex had formed between the two. In addition, immunoelectron microscopy revealed preassembled microtubules were labeled with biotin antibody only when incubated in both dynein and biotinylated tubulin, evidence that dynein with bound biotinylated tubulin had decorated the microtubules. A fraction of the tubulin could be dissociated from dynein by addition of ATP and vanadate, as assayed by molecular sieve chromatography followed by densitometry of gels, suggesting that some tubulin bound to the B end of the dynein arm. Additional tubulin dissociated from the dynein under conditions of high salt. These studies, together with those indicating that tubulin blocked the A end of the dynein arm from binding to microtubules and promoted the interaction of two arms at their A ends, provide evidence that the A end of the arm also can bind tubulin. Thus, the tubulin subunits, themselves, on a microtubule rather than a particular surface lattice structure formed by adjacent protofilaments may provide the binding sites for both ends of the dynein arm.

摘要

开展了多项研究以确定动力蛋白是否能与未聚合的微管蛋白结合。单独的微管蛋白通常在分子筛Bio-Gel A-1.5m柱的外水体积中分级分离。微管蛋白和动力蛋白一起孵育时,会在空体积中共洗脱,这表明两者之间形成了复合物。此外,免疫电子显微镜显示,只有在动力蛋白和生物素化微管蛋白中一起孵育时,预组装的微管才会被生物素抗体标记,这证明结合了生物素化微管蛋白的动力蛋白修饰了微管。通过分子筛色谱法随后对凝胶进行光密度测定分析,添加ATP和钒酸盐可使一部分微管蛋白从动力蛋白上解离,这表明一些微管蛋白与动力蛋白臂的B端结合。在高盐条件下,更多的微管蛋白从动力蛋白上解离。这些研究,连同那些表明微管蛋白会阻止动力蛋白臂的A端与微管结合并促进两个臂在其A端相互作用的研究,都证明了动力蛋白臂的A端也能结合微管蛋白。因此,微管上的微管蛋白亚基本身,而非由相邻原纤维形成的特定表面晶格结构,可能为动力蛋白臂的两端提供结合位点。

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