首页> 外文期刊>Chromosome research: An international journal on the molecular, supramolecular and evolutionary aspects of chromosome biology >Condensin controls mitotic chromosome stiffness and stability without forming a structurally contiguous scaffold
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Condensin controls mitotic chromosome stiffness and stability without forming a structurally contiguous scaffold

机译:凝结物控制有丝分裂染色体刚度和稳定性,而不形成结构邻接的支架

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摘要

During cell division, chromosomes must be folded into their compact mitotic form to ensure their segregation. This process is thought to be largely controlled by the action of condensin SMC protein complexes on chromatin fibers. However, how condensins organize metaphase chromosomes is not understood. We have combined micromanipulation of single human mitotic chromosomes, sub-nanonewton force measurement, siRNA interference of condensin subunit expression, and fluorescence microscopy, to analyze the role of condensin in large-scale chromosome organization. Condensin depletion leads to a dramatic (10-fold) reduction in chromosome elastic stiffness relative to the native, non-depleted case. We also find that prolonged metaphase stalling of cells leads to overloading of chromosomes with condensin, with abnormally high chromosome stiffness. These results demonstrate that condensin is a main element controlling the stiffness of mitotic chromosomes. Isolated, slightly stretched chromosomes display a discontinuous condensing staining pattern, suggesting that condensins organize mitotic chromosomes by forming isolated compaction centers that do not form a continuous scaffold.
机译:在细胞分裂期间,必须将染色体折叠成它们的紧凑型丝状物,以确保它们的偏析。认为该过程主要由染色质纤维上的夹杂素SMC蛋白复合物的作用控制。然而,丁克斯如何组织中期染色体被理解。我们已经组合了单一人类丝分裂染色体,亚纳奈堡力测量,夹蛋白亚基表达的siRNA干扰,以及荧光显微镜,分析夹杂物在大规模染色体组织中的作用。凝结耗竭导致相对于天然非耗尽壳体的染色体弹性刚度的显着(10倍)降低。我们还发现细胞的延长中期停滞导致染色体的染色体过载,具有异常高的染色体刚度。这些结果表明,夹杂物是控制有丝分裂染色体刚度的主要元素。隔离的略微拉伸染色体显示出不连续的冷凝染色图案,表明凝结物通过形成不形成连续支架的分离的压实中心组织有丝分裂染色体。

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