首页> 外文会议>NATO Advanced Research Workshop on Technological and Medical Implications of Metabolic Control Analysis Visegrad, Hungary 10-16 April 1999 >Quantifying the Importance of Regulatory Loops in Homeostatic Control Mechanisms: Hierarchical Control of DNA Supercoiling
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Quantifying the Importance of Regulatory Loops in Homeostatic Control Mechanisms: Hierarchical Control of DNA Supercoiling

机译:量化稳态控制机制中调节环的重要性:DNA超螺旋的分层控制

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Many regulatory structures in the cell appear to aim at maintaining an optimal cellular state. These are here referred to as homeostatic control mechanisms. After a change in environmental conditions a cell adjusts to return as closely as possible to its previous state. Interestingly, these control mechanisms also function after perturbations of the cellular state itself. Apparently this type of regulatory mechanism is not so much addressed from the extracellular as it is from the intracellular environment, a topic dealt with in this volume in Chapter 26. Although the homeostatic control mechanisms are by definition beneficial to the biological system, they can be a nuisance when trying to engineer it. Attempts to manipulate the system tend to be largely overruled by subsequent adaptation. Part of such homeostatic control mechanisms is embedded in the nature of the kinetics of the catalytic steps in the system. On activation of such a step the product of the reaction iwll increase initially but this increase will lead to both an inhibition of the stimulated step and an activation of the subsequent step in the pathway. IN this way, both enzymes surrounding the intermediate will tend to keep the concentration of the latter constant.
机译:细胞中的许多调节结构似乎旨在维持最佳的细胞状态。这些在这里被称为稳态控制机制。在环境条件发生变化后,单元会进行调整以尽可能接近其先前状态。有趣的是,这些控制机制在细胞状态本身受到干扰后也起作用。显然,这种调节机制并没有从细胞外环境中得到解决,而是从细胞内环境中得到了解决,这是在第26章中处理的一个主题。尽管从定义上说,稳态控制机制对生物系统有益,但它们可以是尝试进行工程设计时会造成麻烦。尝试对系统进行操作的尝试在很大程度上被后来的适应推翻了。这种稳态控制机制的一部分嵌入在系统中催化步骤的动力学性质中。一旦激活了该步骤,反应的产物将首先增加,但是该增加将导致抑制受激步骤和激活该途径中的后续步骤。这样,围绕中间体的两种酶将倾向于保持后者的浓度恒定。

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