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Modelling chromosome dynamics in mitosis: a historical perspective on models of metaphase and anaphase in eukaryotic cells

机译:建模有丝分裂中的染色体动力学:真核细胞中期和后期模型的历史观点。

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摘要

Mitosis is the process by which the genome is segregated to form two identical daughter cells during cell division. The process of cell division is essential to the maintenance of every form of life. However, a detailed quantitative understanding of mitosis has been difficult owing to the complexity of the process. Indeed, it has been long recognized that, because of the complexity of the molecules involved, their dynamics and their properties, the mitotic events that mediate the segregation of the genome into daughter nuclei cannot be fully understood without the contribution of mathematical/quantitative modelling. Here, we provide an overview of mitosis and describe the dynamic and mechanical properties of the mitotic apparatus. We then discuss several quantitative models that emerged in the past decades and made an impact on our understanding of specific aspects of mitosis, including the motility of the chromosomes within the mitotic spindle during metaphase and anaphase, the maintenance of spindle length during metaphase and the switch to spindle elongation that occurs during anaphase.
机译:有丝分裂是在细胞分裂过程中基因组分离形成两个相同子细胞的过程。细胞分裂的过程对于维持各种生命至关重要。然而,由于该过程的复杂性,难以对有丝分裂进行详细的定量理解。确实,人们早就认识到,由于所涉及分子的复杂性,它们的动力学及其特性,如果没有数学/定量建模的贡献,就无法完全理解介导基因组分离成子核的有丝分裂事件。在这里,我们提供了有丝分裂的概述,并描述了有丝分裂装置的动态和机械特性。然后,我们讨论了过去几十年来出现的几种定量模型,这些模型对我们对有丝分裂的特定方面的理解产生了影响,包括中期和后期的有丝分裂纺锤体中染色体的运动性,中期和纺锤期的转换过程中纺锤体长度的维持到后期发生的主轴伸长。

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