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亚化学计量浓度的微管蛋白 - 秋水仙碱复合物在体外稳态下对微管动力学的动力学稳定作用。

Kinetic stabilization of microtubule dynamics at steady state in vitro by substoichiometric concentrations of tubulin-colchicine complex.

作者信息

Panda D, Daijo J E, Jordan M A, Wilson L

机构信息

Department of Biological Sciences, University of California, Santa Barbara 93106, USA.

出版信息

Biochemistry. 1995 Aug 8;34(31):9921-9. doi: 10.1021/bi00031a014.

Abstract

We have analyzed the effects of tubulin-colchicine (TC)-complex on the dynamic instability behavior of bovine brain microtubules at steady state in vitro using video microscopy. Incorporation of low numbers of TC-complexes per microtubule strongly suppressed dynamics at the plus ends by reducing the rate and extent of growing and shortening and by increasing the time microtubules spent in an attenuated state, neither growing nor shortening detectably. In addition, TC-complex strongly suppressed the catastrophe frequency and increased the rescue frequency. At low concentrations (0.02-0.05 microM), TC-complex suppressed dynamics without reducing the polymer mass or the mean microtubule length. Such strong suppression of microtubule dynamics by low TC-complex concentrations in the absence of polymer mass changes demonstrates that microtubule dynamics are more sensitive to the actions of TC-complex than the polymer mass. Significant reduction of polymer mass occurred at relatively high TC-complex concentration (> 0.05 microM). However, the surviving microtubules were extremely stable. Thus, TC-complex stabilizes microtubules even though the microtubules can transiently depolymerize when TC-complex is added. The data also directly establish that kinetic suppression of dynamics by colchicine at low concentrations is effected by a low number of TC-complexes at the microtubule ends.

摘要

我们使用视频显微镜分析了微管蛋白 - 秋水仙碱(TC)复合物对体外稳态下牛脑微管动态不稳定性行为的影响。每个微管中掺入少量的TC复合物通过降低生长和缩短的速率及程度,以及增加微管处于既不生长也不明显缩短的衰减状态的时间,强烈抑制了正端的动态变化。此外,TC复合物强烈抑制了灾难频率并增加了救援频率。在低浓度(0.02 - 0.05 microM)下,TC复合物抑制动态变化而不降低聚合物质量或平均微管长度。在聚合物质量无变化的情况下,低浓度的TC复合物对微管动态变化的这种强烈抑制表明,微管动态变化对TC复合物作用的敏感性高于聚合物质量。在相对较高的TC复合物浓度(> 0.05 microM)下,聚合物质量显著降低。然而,存活的微管极其稳定。因此,即使添加TC复合物时微管会短暂解聚,TC复合物仍能使微管稳定。这些数据还直接表明,低浓度秋水仙碱对动态变化的动力学抑制是由微管末端少量的TC复合物实现的。

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