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Anastral Spindle Assembly: A Mathematical Model

机译:窦道主轴组件:一个数学模型

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摘要

Assembly of an anastral spindle was modeled as a two-stage process: first, the aggregation of microtubule foci or asters around the chromosomes, and second, the elongation of cross-linked microtubules and onset of bipolarity. Several possibilities involving diffusion and transport were investigated for the first stage, and the most feasible was found to be binding of the asters to cytoskeletal filaments and directed transport toward the chromosomes. For the second stage, a differential-equation model was formulated and solved numerically; it involves cross-linking of microtubules with those aligned with the spindle axis and between microtubules bound to different chromosomes, and sliding of microtubules along the spindle axis to elongate the spindle. Ncd was postulated to perform both functions. The model shows that spindle formation begins with rapid cross-linking of microtubules, followed by elongation, which continues until the population of microtubules aligned with the spindle axis is depleted and microtubules cross-linking different chromosomes dominate. It also shows that when sliding is inhibited, short bipolar spindles still form, and if clustering is enhanced, normal-length spindles can form, although requiring longer assembly time. These findings are consistent with spindle assembly in live wild-type and ncd mutant Drosophila oocytes.
机译:吻合轴的组装被分为两个阶段:首先,染色体周围的微管灶或紫s的聚集,其次,交联的微管的伸长和双极性的发作。在第一阶段研究了几种涉及扩散和转运的可能性,最可行的方法是将翠菊与细胞骨架细丝结合并定向转运至染色体。第二阶段,建立了一个微分方程模型并进行了数值求解。它涉及微管与那些与纺锤轴对齐的微管和绑定到不同染色体的微管之间的交联,以及微管沿着纺锤轴的滑动以拉长纺锤。 Ncd被假定执行这两个功能。该模型显示纺锤体的形成开始于微管的快速交联,然后是伸长,持续到与纺锤体轴对齐的微管数量耗尽并且交联不同染色体的微管占主导地位。它还表明,当禁止滑动时,仍会形成短的双极纺锤,并且如果增强了聚簇,则可以形成正常长度的纺锤,尽管需要更长的组装时间。这些发现与活的野生型和ncd突变果蝇卵母细胞中的纺锤体组装一致。

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