首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Microtubules grow by the addition of bent guanosine triphosphate tubulin to the tips of curved protofilaments
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Microtubules grow by the addition of bent guanosine triphosphate tubulin to the tips of curved protofilaments

机译:通过向弯曲的原丝尖端添加弯曲的鸟苷三磷酸微管蛋白来生长微管。

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摘要

We used electron tomography to examine microtubules (MTs) growing from pure tubulin in vitro as well as two classes of MTs growing in cells from six species. The tips of all these growing MTs display bent protofilaments (PFs) that curve away from the MT axis, in contrast with previously reported MTs growing in vitro whose tips are either blunt or sheetlike. Neither high pressure nor freezing is responsible for the PF curvatures we see. The curvatures of PFs on growing and shortening MTs are similar; all are most curved at their tips, suggesting that guanosine triphosphate–tubulin in solution is bent and must straighten to be incorporated into the MT wall. Variations in curvature suggest that PFs are flexible in their plane of bending but rigid to bending out of that plane. Modeling by Brownian dynamics suggests that PF straightening for MT growth can be achieved by thermal motions, providing a simple mechanism with which to understand tubulin polymerization.
机译:我们使用电子断层扫描技术检查了从纯微管蛋白体外生长的微管(MT)以及在六个物种的细胞中生长的两类MT。所有这些生长中的MT的尖端均显示弯曲的原丝(PF),其弯曲方向远离MT轴,这与先前报道的在体外生长的MT尖端呈钝头或片状相反。高压和冻结都不是我们看到的PF曲率的原因。生长和缩短MT时PF的曲率相似;它们的尖端都最弯曲,这表明溶液中的鸟苷三磷酸-微管蛋白是弯曲的,必须拉直才能掺入MT壁。曲率的变化表明,PF在其弯曲平面上是柔性的,但对于从该平面弯曲出来则是刚性的。布朗动力学模型表明,通过热运动可以实现MT生长的PF矫直,从而提供了一种了解微管蛋白聚合的简单机制。

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