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A lever-arm rotation drives motility of the minus-end-directed kinesin Ncd

机译:杠杆臂旋转驱动负端驱动蛋白Ncd的运动

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摘要

Kinesins are microtubule-based motor proteins that power intracellular transport,. Most kinesin motors, exemplified by Kinesin-1, move towards the microtubule plus end, and the structural changes that govern this directional preference have been described. By contrast, the nature and timing of the structural changes underlying the minus-end-directed motility of Kinesin-14 motors (such as Drosophila Ncd,) are less well understood. Using cryo-electron microscopy, here we demonstrate that a coiled-coil mechanical element of microtubule-bound Ncd rotates ~70° towards the minus end upon ATP binding. Extending or shortening this coiled coil increases or decreases velocity, respectively, without affecting ATPase activity. An unusual Ncd mutant that lacks directional preference shows unstable nucleotide-dependent conformations of its coiled coil, underscoring the role of this mechanical element in motility. These results show that the force-producing conformational change in Ncd occurs on ATP binding, as in other kinesins, but involves the swing of a lever-arm mechanical element similar to that described for myosins.
机译:驱动蛋白是基于微管的运动蛋白,可促进细胞内运输 。大多数驱动蛋白运动,以Kinesin-1为例,向微管正端移动,并且已经描述了控制该方向偏好的结构变化 。相比之下,驱动Kinesin-14马达负端定向运动的结构变化的性质和时间(如果蝇Ncd )不太了解。使用冷冻电子显微镜,我们在这里证明了微管结合的Ncd的螺旋线圈机械元件在ATP结合时朝负端旋转约70°。延长或缩短此盘绕线圈可分别增加或减小速度,而不会影响ATPase活性。缺乏方向性偏好的异常Ncd突变体 表现出其卷曲螺旋的不稳定的核苷酸依赖性构象,强调了这种机械元件在运动中的作用。这些结果表明,与其他驱动蛋白一样,Ncd中产生力的构象变化发生在ATP结合上,但涉及类似于肌球蛋白的杠杆臂机械元件的摆动。

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