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Microtubule motor ncd induces sliding of Microtubules in vivo

机译:微管马达ncd诱导体内微管滑动

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摘要

The mitotic spindle is a microtubule (MT)-based molecular machine that serves for equal segregation of chromosomes during cell division. The formation of the mitotic spindle requires the activity of MT motors, including members of the kinesin-14 family. Although evidence suggests that kinesins-14 act by driving the sliding of MT bundles in different areas of the spindle, such sliding activity had never been demonstrated directly. To test the hypothesis that kinesins-14 can induce MT sliding in living cells, we developed an in vivo assay, which involves overexpression of the kinesin-14 family member Drosophila Ncd in interphase mammalian fibroblasts. We found that green fluorescent protein (GFP)-Ncd colocalized with cytoplasmic MTs, whose distribution was determined by microinjection of Cy3 tubulin into GFP-transfected cells. Ncd overexpression resulted in the formation of MT bundles that exhibited dynamic "looping" behavior never observed in control cells. Photobleaching studies and fluorescence speckle microscopy analysis demonstrated that neighboring MTs in bundles could slide against each other with velocities of 0.1 mu m/s, corresponding to the velocities of movement of the recombinant Ncd in in vitro motility assays. Our data, for the first time, demonstrate generation of sliding forces between adjacent MTs by Ncd, and they confirm the proposed roles of kinesins-14 in the mitotic spindle morphogenesis.
机译:有丝分裂纺锤体是一种基于微管(MT)的分子机器,可在细胞分裂过程中使染色体相等地分离。有丝分裂纺锤体的形成需要MT马达的活动,包括驱动蛋白14家族的成员。尽管有证据表明,kinesins-14通过驱动MT束在纺锤体不同区域的滑动而起作用,但从未直接证明过这种滑动活动。为了测试驱动蛋白14可以诱导MT在活细胞中滑动的假说,我们开发了一种体内检测方法,该方法涉及在相间哺乳动物成纤维细胞中驱动蛋白14家族成员果蝇Ncd的过表达。我们发现绿色荧光蛋白(GFP)-Ncd与胞质MT共定位,其分布是通过将Cy3微管蛋白显微注射到GFP转染的细胞中来确定的。 Ncd过表达导致MT束的形成,MT束表现出在对照细胞中从未观察到的动态“成环”行为。光漂白研究和荧光斑点显微镜分析表明,成束的相邻MT可以以0.1μm/ s的速度相互滑动,这与重组Ncd在体外运动测定中的移动速度相对应。我们的数据首次证明了Ncd在相邻MT之间产生滑动力,并证实了驱动蛋白14在有丝分裂纺锤体形态发生中的作用。

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