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Use of a system of differential equations to analyze the functioning of a catalytic bio macromolecule under non equilibrium conditions

机译:使用微分方程组分析非平衡条件下催化生物大分子的功能

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摘要

>The aim of the work is to analyze the response of a biomolecule to an external influence based on the study of its hidden states by identifying differential equations with constant coefficients.>The relevance of the work lies in the fact that often the main reaction of an object to an external action can be represented as a sum of various exponential functions with a common starting point and a material balance equation. In this case, the response of an object to an external action corresponds to a system of differential equations with constant coefficients. This character of the main reaction may be due to the influence of the hidden properties of the object, which play the role of regulatory parameters.>The problem is that the hidden factors and the system of differential equations are not identified>. As an object, isolated reaction centers (RC) of the bacteria >Rhodobacter sphaeroides, which possess the above properties, has used. Their structure is well studied.>As result of studying of photo excitation processes of the reaction center has shown that electron transfer kinetics (the main reaction) can be approximated by three normalized exponential functions. Program was developed to identify for four differential equations of electron transfer and the balance equation, the behavior of hidden states of the reaction center.>It was concluded that time the dependence the probability density of finding an electron in different conformational states of the reaction center characterizes the space-time changes in the structure of the reaction center.
机译:>目的是通过研究具有恒定系数的微分方程,在研究生物分子对外部影响的基础上,通过研究其隐藏状态来分析生物分子。>相关性这项工作是基于这样一个事实,即对象对外部作用的主要反应通常可以表示为具有共同起点和材料平衡方程的各种指数函数的总和。在这种情况下,物体对外部作用的响应对应于具有恒定系数的微分方程组。主要反应的这一特征可能是由于对象的隐藏属性的影响,而这些属性起着调节参数的作用。>问题问题在于隐藏因素和微分方程组不是鉴定为>。作为对象,使用了具有上述特性的细菌>球形红球菌的分离反应中心(RC)。对它们的结构进行了很好的研究。>对反应中心的光激发过程的研究结果表明,可以通过三个归一化指数函数来近似电子传递动力学(主要反应)。开发了程序以识别四个电子转移微分方程和平衡方程,反应中心隐藏状态的行为。>得出结论,该时间与在不同位置找到电子的概率密度有关反应中心的构象状态表征了反应中心结构的时空变化。

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