论文标题

运动驱动微管束的结构和动力学

Structure and dynamics of motor-driven microtubule bundles

论文作者

Lemma, Bezia, Lemma, Linnea, Ems-McClung, Stephanie C., Walczak, Claire E., Dogic, Zvonimir, Needleman, Daniel J.

论文摘要

将活性材料的大规模新兴行为与其成分的显微镜特性联系起来,这是一个挑战,因为缺乏有关此类系统的多尺度动力学和结构的数据。我们通过研究拥挤剂对微管和驱动蛋白14分子电动机束的聚乙烯乙二醇的影响来解决这个问题。在低浓度或高浓度聚乙二醇存在下组装的束会产生相似的净延伸行为。然而,随着聚乙烯乙二醇浓度的增加,束从双向滑动的束中的微管运动转变为延伸到纯延伸而没有滑动。小角度X射线散射表明,微管动力学中的过渡与从开放的六边形到压缩矩形晶格的束中的微管重排。这些结果表明,尽管内部结构和动力学非常不同,但微管和分子电动机的捆绑包仍会显示出相似的介质扩展行为。

Connecting the large-scale emergent behaviors of active materials to the microscopic properties of their constituents is a challenge due to a lack of data on the multiscale dynamics and structure of such systems. We approach this problem by studying the impact of polyethylene glycol, a crowding agent, on bundles of microtubules and kinesin-14 molecular motors. Bundles assembled in the presence of either low or high concentrations of polyethylene glycol generate similar net extensile behaviors. However, as polyethylene glycol concentration is increased, the motion of microtubules in the bundles transition from bi-directional sliding with extension to pure extension with no sliding. Small-angle X-ray scattering shows that the transition in microtubule dynamics is concomitant with a rearrangement of microtubules in the bundles from an open hexagonal to a compressed rectangular lattice. These results demonstrate that bundles of microtubules and molecular motors can display similar mesoscopic extensile behaviors despite having very different internal structures and dynamics.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源