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在二磷酸或三磷酸鸟苷核苷酸存在下微管蛋白聚合协同性的动力学分析。

Kinetic analysis of cooperativity in tubulin polymerization in the presence of guanosine di- or triphosphate nucleotides.

作者信息

Carlier M F, Pantaloni D

出版信息

Biochemistry. 1978 May 16;17(10):1908-15. doi: 10.1021/bi00603a017.

Abstract

In vitro polymerization of pig brain tubulin, highly purified and deprived of microtubule-associated proteins, was followed by turbidimetry. Treatment of the data yielded the relation existing between the observed turbidity and the amount of polymer formed. This allowed a kinetic analysis, according to Oosawa's theories, of the polymerization process, which consisted of a slow spontaneous nucleation followed by the growth process. The apparent elongation rate constant was closely related to the nucleation process and exhibited a highly cooperative variation with tubulin concentration. The cooperativity was indicative of the size of the nucleus which appears to remain the same whether sheets or microtubules are formed. Magnesium ions appear to play a role in the polymorphism of tubulin polymers, the proportion of microtubules to sheets increasing with magnesium ion concentration. From kinetic experiments evidence was provided for GDP binding in competition with GTP, with a sixfold lower affinity. The tubulin-GDP complex could participate in microtubules elongation, but was not able to form nuclei. The critical concentration of tubulin in the presence of GDP was roughly twice as high as in the presence of GTP.

摘要

采用比浊法跟踪了高度纯化且不含微管相关蛋白的猪脑微管蛋白在体外的聚合过程。对数据进行处理后得出了所观察到的浊度与形成的聚合物量之间的关系。这使得能够根据大泽理论对聚合过程进行动力学分析,该聚合过程包括缓慢的自发成核过程,随后是生长过程。表观伸长速率常数与成核过程密切相关,并随微管蛋白浓度呈现高度协同变化。这种协同性表明了核的大小,无论形成的是片层还是微管,核的大小似乎保持不变。镁离子似乎在微管蛋白聚合物的多态性中起作用,微管与片层的比例随镁离子浓度增加而增加。动力学实验提供了证据,表明GDP与GTP竞争结合,其亲和力低六倍。微管蛋白 - GDP复合物可参与微管伸长,但无法形成核。在GDP存在下微管蛋白的临界浓度大约是在GTP存在下的两倍。

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