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Modeling The Temporal Evolution Of The Spindle Assembly Checkpoint And Role Of Aurora B Kinase

机译:主轴装配检查点的时间演变模型和Aurora B激酶的作用

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Faithful separation of chromosomes prior to cell division at mitosis is a highly regulated process. One family of serine/threonine kinases that plays a central role in regulation is the Aurora family. Aurora B plays a role in the spindle assembly checkpoint, in part, by destabilizing the localization of BubR1 and Mad2 at centrosomes and responds to changes in tension caused by aberrant microtubule kinetochore attachments. Aurora B is overexpressed in a subset of cancers and is required for mitosis, making it an attractive anti-cancer target. Here, we use mathematical modeling to extend a current model of the spindle assembly checkpoint to incorporate all signaling kinetochores within a cell rather than just one and the role of Aurora B within the resulting model. We find that the current model of the spindle assembly checkpoint is robust to variation in its key diffusion-limited parameters. Furthermore, when Aurora B inhibition is considered within the model, for a certain range of inhibitor concentrations, a prolonged prometaphase/metaphase is observed. This level of inhibitor concentrations has not yet been studied experimentally, to the authors' best knowledge. Therefore, experimental verification of the results discussed here could provide a deeper understanding of how kinetochores and Aurora B cooperate in the spindle assembly checkpoint.
机译:在有丝分裂的细胞分裂之前,对染色体的忠实分离是一个高度受控的过程。 Aurora家族是在调节中起核心作用的丝氨酸/苏氨酸激酶家族之一。 Aurora B在纺锤体装配检查点中起作用,部分原因是使BubR1和Mad2在中心体上的定位不稳定,并对微管动线粒异常连接所引起的张力变化作出反应。 Aurora B在部分癌症中过表达,是有丝分裂所必需的,使其成为有吸引力的抗癌靶标。在这里,我们使用数学建模来扩展主轴装配检查点的当前模型,以将所有信号动植物整合到一个单元中,而不只是一个,并且将Aurora B的作用纳入到最终模型中。我们发现主轴组件检查点的当前模型对于其关键扩散限制参数的变化具有鲁棒性。此外,当在模型中考虑Aurora B抑制作用时,对于一定范围的抑制剂浓度,可以观察到延长的前中期/中期。据作者所知,尚未对这种抑制剂浓度水平进行实验研究。因此,这里讨论的结果的实验​​验证可以提供更深入的了解,动转体和Aurora B在主轴组件检查点中如何配合。

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