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首页> 外文期刊>The FEBS journal >From steady-state to synchronized yeast glycolytic oscillations I: model construction.
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From steady-state to synchronized yeast glycolytic oscillations I: model construction.

机译:从稳态到同步酵母糖酵解振荡I:模型构建。

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An existing detailed kinetic model for the steady-state behavior of yeast glycolysis was tested for its ability to simulate dynamic behavior. Using a small subset of experimental data, the original model was adapted by adjusting its parameter values in three optimization steps. Only small adaptations to the original model were required for realistic simulation of experimental data for limit-cycle oscillations. The greatest changes were required for parameter values for the phosphofructokinase reaction. The importance of ATP for the oscillatory mechanism and NAD(H) for inter-and intra-cellular communications and synchronization was evident in the optimization steps and simulation experiments. In an accompanying paper [du Preez F et al. (2012) FEBS J279, 2823-2836], we validate the model for a wide variety of experiments on oscillatory yeast cells. The results are important for re-use of detailed kinetic models in modular modeling approaches and for approaches such as that used in the Silicon Cell initiative. Database The mathematical models described here have been submitted to the JWS Online Cellular Systems Modelling Database and can be accessed at http://jjj.biochem.sun.ac.za/database/dupreez/index.html.
机译:测试了现有的酵母糖酵解稳态行为的详细动力学模型模拟动态行为的能力。使用一小部分实验数据,通过在三个优化步骤中调整其参数值来调整原始模型。对于极限循环振荡的实验数据的真实模拟,只需要对原始模型进行少量修改即可。磷酸果糖激酶反应的参数值需要最大的变化。在优化步骤和仿真实验中,ATP对于振荡机制和NAD(H)对于细胞间和细胞内通信和同步的重要性很明显。在随附的论文中[du Preez F等。 (2012)FEBS J279,2823-2836],我们验证了用于振荡酵母细胞的各种实验的模型。结果对于在模块建模方法中重新使用详细的动力学模型以及诸如在Silicon Cell计划中使用的方法非常重要。数据库此处描述的数学模型已提交到JWS在线蜂窝系统建模数据库,可以从http://jjj.biochem.sun.ac.za/database/dupreez/index.html进行访问。

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