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Introducing total substrates simplifies theoretical analysis at non-negligible enzyme concentrations: Pseudo first-order kinetics and the loss of zero-order ultrasensitivity

机译:引入总底物简化了在不可忽略的酶浓度下的理论分析:伪一级动力学和零级超敏性的丧失

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摘要

The Briggs-Haldane standard quasi-steady state approximation and the resulting rate expressions for enzyme driven biochemical reactions provide crucial theoretical insight compared to the full set of equations describing the reactions, mainly because it reduces the number of variables and equations. When the enzyme is in excess of the substrate, a significant amount of substrate can be bound in intermediate complexes, so-called substrate sequestration. The standard quasi-steady state approximation is known to fail under such conditions, a main reason being that it neglects these intermediate complexes. Introducing total substrates, i.e., the sums of substrates and intermediate complexes, provides a similar reduction of the number of variables to consider but without neglecting the contribution from intermediate complexes. The present theoretical study illustrates the usefulness of such simplifications for the understanding of biochemical reaction schemes. We show how introducing the total substrates allows a simple analytical treatment of the relevance of significant enzyme concentrations for pseudo first-order kinetics and reconciles two proposed criteria for the validity of the pseudo first-order approximation. In addition, we show how the loss of zero-order ultrasensitivity in covalent modification cycles can be analyzed, in particular that approaches such as metabolic control analysis are immediately applicable to scenarios described by the total substrates with enzyme concentrations higher than or comparable to the substrate concentrations. A simple criterion which excludes the possibility of zero-order ultrasensitivity is presented.
机译:与描述反应的完整方程组相比,Briggs-Haldane标准准稳态近似和所得的酶驱动生化反应速率表达式提供了至关重要的理论见解,主要是因为它减少了变量和方程的数量。当酶超过底物时,大量的底物可以结合在中间复合物中,即所谓的底物螯合。已知标准准稳态逼近在这种情况下会失败,主要原因是它忽略了这些中间复合物。引入总底物,即底物和中间配合物的总和,可以类似地减少要考虑的变量数量,但不会忽略中间配合物的贡献。本理论研究说明了这种简化对于理解生化反应方案的有用性。我们展示了如何引入总底物如何对假酶一级动力学的重要酶浓度的相关性进行简单的分析处理,并为拟议的一级近似的有效性调和了两个拟议的标准。此外,我们展示了如何分析共价修饰循环中零级超敏性的损失,尤其是诸如代谢控制分析之类的方法可立即应用于由酶浓度高于或可比的底物的总底物描述的场景。浓度。提出了一个简单的标准,该标准排除了零级超敏性的可能性。

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