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Chromosomes Progress to Metaphase in Multiple Discrete Steps via Global Compaction/Expansion Cycles

机译:染色体通过整体压紧/膨胀循环以多个离散步骤进展到中期

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摘要

Mammalian mitotic chromosome morphogenesis was analyzed by 4D live-cell and snapshot deconvolution fluorescence imaging. Prophase chromosomes, whose organization was previously unknown, are revealed to comprise co-oriented sister linear loop arrays displayed along a single, peripheral, regularly kinked topoisomerase II/cohesin/condensin II axis. Thereafter, rather than smooth, progressive compaction as generally envisioned, progression to metaphase is a discontinuous process involving chromosome expansion as well as compaction. At late prophase, dependent on topoisomerase II and with concomitant cohesin release, chromosomes expand, axes split and straighten, and chromatin loops transit to a radial disposition around now-central axes. Finally, chromosomes globally compact, giving the metaphase state. These patterns are consistent with the hypothesis that the molecular events of chromosome morphogenesis are governed by accumulation and release of chromosome stress, created by chromatin compaction and expansion. Chromosome state could evolve analogously throughout the cell cycle.
机译:通过4D活细胞和快照解卷积荧光成像分析了哺乳动物的有丝分裂染色体形态。前期染色体,其组织以前是未知的,被发现包括沿单个,外围,规则扭结的拓扑异构酶II / cohesin / condensin II轴显示的同向姐妹线性环阵列。此后,进展到中期,而不是通常设想的平滑渐进式压实,而是一个不连续的过程,涉及染色体扩增和压实。在前期后期,依赖于拓扑异构酶II和伴随的黏附素释放,染色体扩展,轴分裂和拉直,染色质环转移到围绕当前中心轴的径向位置。最后,染色体整体紧缩,形成中期状态。这些模式与以下假设相符:染色体形态发生的分子事件受染色质压紧和扩展产生的染色体应力的积累和释放支配。染色体状态可以在整个细胞周期内类似地演变。

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