Using default constraints of the spindle assembly checkpoint to estimate the associated chemical rates.

Q1 Biochemistry, Genetics and Molecular Biology BMC Biophysics Pub Date : 2012-01-19 DOI:10.1186/2046-1682-5-1
Khanh Dao Duc, David Holcman
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引用次数: 32

Abstract

Unlabelled: :

Background: Default activation of the spindle assembly checkpoint provides severe constraints on the underlying biochemical activation rates: on one hand, the cell cannot divide before all chromosomes are aligned, but on the other hand, when they are ready, the separation is quite fast, lasting a few minutes. Our purpose is to use these opposed constraints to estimate the associated chemical rates.

Results: To analyze the above constraints, we develop a markovian model to describe the dynamics of Cdc20 molecules. We compute the probability for no APC/C activation before time t, the distribution of Cdc20 at equilibrium and the mean time to complete APC/C activation after all chromosomes are attached.

Conclusions: By studying Cdc20 inhibition and the activation time, we obtain a range for the main chemical reaction rates regulating the spindle assembly checkpoint and transition to anaphase.

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使用主轴装配检查点的默认约束来估计相关的化学速率。
背景:纺锤体组装检查点的默认激活对潜在的生化激活率提供了严格的限制:一方面,在所有染色体对齐之前细胞不能分裂,但另一方面,当它们准备好时,分离非常快,持续几分钟。我们的目的是利用这些相反的约束来估计相关的化学速率。结果:为了分析上述约束条件,我们建立了描述Cdc20分子动力学的马尔可夫模型。我们计算了在时间t之前APC/C未激活的概率、平衡状态下Cdc20的分布以及所有染色体连接后完成APC/C激活的平均时间。结论:通过研究Cdc20的抑制作用和激活时间,我们获得了一个调节纺锤体组装检查点和向后期过渡的主要化学反应速率范围。
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BMC Biophysics
BMC Biophysics BIOPHYSICS-
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