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Generating rate equations for complex enzyme systems by a computer-assisted systematic method

机译:通过计算机辅助系统方法生成复杂酶系统的速率方程

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Background While the theory of enzyme kinetics is fundamental to analyzing and simulating biochemical systems, the derivation of rate equations for complex mechanisms for enzyme-catalyzed reactions is cumbersome and error prone. Therefore, a number of algorithms and related computer programs have been developed to assist in such derivations. Yet although a number of algorithms, programs, and software packages are reported in the literature, one or more significant limitation is associated with each of these tools. Furthermore, none is freely available for download and use by the community. Results We have implemented an algorithm based on the schematic method of King and Altman (KA) that employs the topological theory of linear graphs for systematic generation of valid reaction patterns in a GUI-based stand-alone computer program called KAPattern . The underlying algorithm allows for the assumption steady-state, rapid equilibrium-binding, and/or irreversibility for individual steps in catalytic mechanisms. The program can automatically generate MathML and MATLAB output files that users can easily incorporate into simulation programs. Conclusion A computer program, called KAPattern , for generating rate equations for complex enzyme system is a freely available and can be accessed at http://www.biocoda.org .
机译:背景技术虽然酶动力学理论是分析和模拟生化系统的基础,但推导复杂的酶催化反应机理的速率方程式既麻烦又容易出错。因此,已经开发了许多算法和相关的计算机程序来辅助这种推导。然而,尽管文献中报道了许多算法,程序和软件包,但是这些工具中的每一个都具有一个或多个重要的局限性。此外,社区免费提供免费下载和使用。结果我们已经基于King and Altman(KA)的图解方法实现了一种算法,该算法采用线性图的拓扑理论在基于GUI的独立计算机程序KAPattern中系统生成有效的反应模式。底层算法考虑到催化机制中各个步骤的稳态,快速平衡结合和/或不可逆性。该程序可以自动生成MathML和MATLAB输出文件,用户可以轻松将其合并到仿真程序中。结论可免费获得一个名为KAPattern的计算机程序,用于生成复杂酶系统的速率方程,可从http://www.biocoda.org进行访问。

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