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Microtubule flux and sliding in mitotic spindles of Drosophila embryos

机译:果蝇胚胎的有丝分裂纺锤体中的微管通量和滑动

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We proposed that spindle morphogenesis in Drosophila embryos involves progression through four transient isometric structures in which a constant spacing of the spindle poles is maintained by a balance of forces generated by multiple microtubule (MT) motors and that tipping this balance drives pole-pole separation. Here we used fluorescent speckle microscopy to evaluate the influence of MT dynamics on the isometric state that persists through metaphase and anaphase A and on pole-pole separation in anaphase B. During metaphase and anaphase A, fluorescent punctae on kinetochore and interpolar MTs flux toward the poles at 0.03 mum/s, too slow to drive chromatid-to-pole motion at 0.11 mum/s, and during anaphase B, fluorescent punctae on interpolar MTs move away from the spindle equator at the same rate as the poles, consistent with MT-MT sliding. Loss of Ncd, a candidate flux motor or brake, did not affect flux in the metaphase/anaphase A isometric state or MT sliding in anaphase B but decreased the duration of the isometric state. Our results suggest that, throughout this isometric state, an outward force exerted on the spindle poles by MT sliding motors is balanced by flux, and that suppression of flux could tip the balance of forces at the onset of anaphase B, allowing MT sliding and polymerization to push the poles apart. [References: 33]
机译:我们提出,果蝇胚胎中的纺锤体形态发生涉及通过四个瞬态等距结构的进展,在该结构中,通过平衡多个微管(MT)电机产生的力来保持纺锤极的恒定间距,并且使这一平衡达到顶峰将驱动纺锤极分离。在这里,我们使用荧光散斑显微镜来评估MT动力学对在中期和后期A持续存在的等轴测状态以及后期B中极-极分离的影响。在中期和后期A期间,动点上的荧光点和极间MTs通向极以0.03 mum / s的速度移动,太慢而无法以0.11 mum / s的速度驱动染色单体到极的运动,在后期B期间,极间MT上的荧光点以与极相同的速率从主轴赤道移开,与MT一致-MT滑动。 Ncd的损失(候选磁通电动机或制动器)不会影响处于中期/后期A等轴测状态的磁通或影响MT在后期B处滑动的磁通,但会缩短等距状态的持续时间。我们的结果表明,在整个等轴测状态下,MT滑动电机施加在主轴上的外力都受到通量的平衡,并且抑制通量可能会在后期B开始时使力平衡倾斜,从而使MT滑动和聚合把两极分开。 [参考:33]

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