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Kinesin-14 motors drive a right-handed helical motion of antiparallel microtubules around each other

机译:Kinesin-14电机在彼此周围右手右手螺旋螺旋动作。

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Within the mitotic spindle, kinesin motors cross-link and slide overlapping microtubules. Some of these motors exhibit off-axis power strokes, but their impact on motility and force generation in microtubule overlaps has not been investigated. Here, we develop and utilize a three-dimensional in vitro motility assay to explore kinesin-14, Ncd, driven sliding of cross-linked microtubules. We observe that free microtubules, sliding on suspended microtubules, not only rotate around their own axis but also move around the suspended microtubules with right-handed helical trajectories. Importantly, the associated torque is large enough to cause microtubule twisting and coiling. Further, our technique allows us to measure the in situ spatial extension of the motors between cross-linked microtubules to be about 20?nm. We argue that the capability of microtubule-crosslinking kinesins to cause helical motion of overlapping microtubules around each other allows for flexible filament organization, roadblock circumvention and torque generation in the mitotic spindle.
机译:在有丝分裂主轴内,Kinesin Motors交叉链路和滑块重叠微管。其中一些电机展示了轴外动力冲程,但尚未研究它们对微管重叠中的运动和力产生的影响。在这里,我们开发和利用三维体外运动测定来探索Kinesin-14,NCD的交联微管的驱动滑动。我们观察到在悬浮的微管上滑动的自由微管,不仅围绕其自身轴旋转,而且在右手螺旋轨迹周围移动悬浮的微管。重要的是,相关扭矩足够大以引起微管扭曲和卷曲。此外,我们的技术使我们能够在交联的微管之间测量电动机的原位空间延伸,以为约20μm。我们认为微管交联的Kinesins能力引起彼此周围重叠微管的螺旋运动,允许柔性长丝组织,在有丝分裂主轴中的脚轮围绕和扭矩产生。

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