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Helical Twist and Rotational Forces in the Mitotic Spindle

机译:有丝分裂纺锤体中的螺旋扭曲和旋转力

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摘要

The mitotic spindle segregates chromosomes into two daughter cells during cell division. This process relies on the precise regulation of forces acting on chromosomes as the cell progresses through mitosis. The forces in the spindle are difficult to directly measure using the available experimental techniques. Here, we review the ideas and recent advances of how forces can be determined from the spindle shape. By using these approaches, it has been shown that tension and compression coexist along a single kinetochore fiber, which are balanced by a bridging fiber between sister kinetochore fibers. An extension of this approach to three dimensions revealed that microtubule bundles have rich shapes, and extend not simply like meridians on the Earth’s surface but, rather, twisted in a helical manner. Such complex shapes are due to rotational forces, which, in addition to linear forces, act in the spindle and may be generated by motor proteins such as kinesin-5. These findings open new questions for future studies, to understand the mechanisms of rotational forces and reveal their biological roles in cells.
机译:在细胞分裂过程中,有丝分裂纺锤体将染色体分离成两个子细胞。这个过程依赖于细胞通过有丝分裂进行过程中作用在染色体上的力的精确调节。使用现有的实验技术很难直接测量主轴中的力。在这里,我们回顾了如何根据主轴形状确定力的想法和最新进展。通过使用这些方法,已显示出沿单根线粒体纤维共存拉伸和压缩,这通过姊妹线粒体纤维之间的桥接纤维来平衡。这种方法在三个维度上的扩展表明,微管束具有丰富的形状,并且不仅像地球表面上的子午线那样延伸,而且以螺旋方式扭曲。这种复杂的形状是由于旋转力引起的,除了线性力外,旋转力还作用在主轴上,并且可能由运动蛋白(例如驱动蛋白5)产生。这些发现为未来的研究开辟了新的问题,以了解旋转力的机制并揭示其在细胞中的生物学作用。

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