首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Simple and complex spatiotemporal structures in a glycolytic allosteric enzyme model
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Simple and complex spatiotemporal structures in a glycolytic allosteric enzyme model

机译:糖酵解变构酶模型中的简单和复杂的时空结构

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摘要

Pattern formation in glycolysis is studied with a classical reaction-diffusion allosteric enzyme model. It is found that, similar to recent experimental reports in the yeast extracts, a small magnitude local perturbation can induce transient target waves in a two dimensional oscillatory medium. An above threshold stimulation generates target waves which eventually evolve into spatiotemporal chaos upon collisions with the boundary or other wave activities. Detailed simulation studies show that the studied simple glycolytic reaction-diffusion model can support three types of spatiotemporal behaviors which are independent of the boundary conditions: (1) a spatially uniform stable steady state, (2) periodic global oscillations and (3) spatiotemporal chaos
机译:用经典的反应扩散变构酶模型研究糖酵解中的模式形成。发现,类似于最近在酵母提取物中的实验报道,小幅度的局部扰动可以在二维振荡介质中引起瞬时目标波。高于阈值的刺激会生成目标波,这些目标波在与边界或其他波活动发生碰撞时最终演变为时空混乱。详细的模拟研究表明,所研究的简单糖酵解反应-扩散模型可以支持三种时空行为,这些时空行为与边界条件无关:(1)空间均匀稳定状态,(2)周期性全局振荡和(3)时空混沌

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