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A comprehensive model to predict mitotic division in budding yeasts

机译:预测发芽酵母中有丝分裂分裂的综合模型

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High-fidelity chromosome segregation during cell division depends on a series of concerted interdependent interactions. Using a systems biology approach, we built a robust minimal computational model to comprehend mitotic events in dividing budding yeasts of two major phyla: Ascomycota and Basidiomycota. This model accurately reproduces experimental observations related to spindle alignment, nuclear migration, and microtubule (MT) dynamics during cell division in these yeasts. The model converges to the conclusion that biased nucleation of cytoplasmic microtubules (cMTs) is essential for directional nuclear migration. Two distinct pathways, based on the population of cMTs and cortical dyneins, differentiate nuclear migration and spindle orientation in these two phyla. In addition, the model accurately predicts the contribution of specific classes of MTs in chromosome segregation. Thus we present a model that offers a wider applicability to simulate the effects of perturbation of an event on the concerted process of the mitotic cell division.
机译:细胞分裂过程中的高保真染色体分离取决于一系列协调一致的相互作用。使用系统生物学方法,我们建立了一个鲁棒的最小计算模型来理解分裂两个主要门的芽孢酵母(子囊菌和担子菌)中的有丝分裂事件。该模型准确地再现了与这些酵母细胞分裂过程中纺锤体对准,核迁移和微管(MT)动态有关的实验观察结果。该模型得出以下结论:胞质微管(cMT)的成核偏向对于定向核迁移至关重要。基于cMT和皮质动力蛋白的种群,两种不同的途径区分了这两个门中的核迁移和纺锤体定向。此外,该模型可准确预测特定类别的MT在染色体分离中的作用。因此,我们提出了一个模型,该模型提供了更广泛的适用性,可以模拟事件的摄动对有丝分裂细胞分裂的协调过程的影响。

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