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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Identifying the Oscillatory Mechanism of the Glucose Oxidase-Catalase Coupled Enzyme System
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Identifying the Oscillatory Mechanism of the Glucose Oxidase-Catalase Coupled Enzyme System

机译:鉴定葡萄糖氧化酶 - 过氧化氢酶偶联酶系统的振荡机制

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摘要

We provide experimental evidence of periodic and aperiodic oscillations in an enzymatic system of glucose oxidase-catalase in a continuous-flow stirred reactor coupled by a membrane with a continuous-flow reservoir supplied with hydrogen peroxide. To describe such dynamics, we formulate a detailed mechanism based on partial results in the literature. Finally, we introduce a novel method for estimation of unknown kinetic parameters. The method is based on matching experimental data at an oscillatory instability with stoichiometric constraints of the mechanism formulated by applying the stability theory of reaction networks. This approach has been used to estimate rate coefficients in the catalase part of the mechanism. Remarkably, model simulations show good agreement with the observed oscillatory dynamics, including apparently chaotic intermittent behavior. Our method can be applied to any reaction system with an experimentally observable dynamical instability.
机译:我们提供在由用过氧化氢的连续流量储存器偶联的连续流动搅拌的反应器中的葡萄糖氧化酶 - 过氧化氢酶的酶氧化酶 - 过失酶的酶促和非周期性振荡的实验证据。 为了描述这种动态,我们根据文献中的部分结果制定了一种详细的机制。 最后,我们介绍了一种估计未知动力学参数的新方法。 该方法基于通过应用反应网络的稳定性理论,具有通过应用稳定性理论的机制的化学计量的腐蚀实验数据。 这种方法已被用于估算该机制的过氧化酶部分中的速率系数。 值得注意的是,模型模拟与观察到的振荡动力学表现出良好的一致性,包括显然混乱的间歇性行为。 我们的方法可以应用于任何反应系统,具有实验可观察的动态不稳定。

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