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A Theoretical Approach to Some Analytical Properties of Heterogeneous Enzymatic Assays

机译:非均相酶促测定的某些分析性质的理论方法

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Heterogeneous enzymatic assays (HEA), where an enzyme in solution acts upon an immobilized substrate, are been increasingly used. Given their high throughput and versatility they hold great potential for developing massive enzyme inhibitor screening. However, current HEA lack, in general, rigorous quantitative use. This is in part due to technical problems as a multiplicity of suboptimal substrate populations achieved with traditional immobilization techniques but, more importantly, is due to a poor understanding of the particular kinetic behavior of these systems. This paper addresses the kinetic features of HEA that arise from the very low amount of solid-phase substrate and the resulting inalterability of the free enzyme concentration during the assay, which classify HEA as enzyme quasi-saturable systems (EQSS). We assessed the optimal enzyme concentration working range and time of reaction. We also considered certain attributes of HEA for evaluating isosteric inhibitors. These studies were done on the basis of a simplified model for the kinetics of EQSS and a formal splitting of the functional factor of the analytical sensitivity of an enzymatic assay into [E_(o)]/K_(m)-dependent and temporal components.
机译:越来越多地使用异质酶法(HEA),其中溶液中的酶作用于固定的底物。鉴于其高通量和多功能性,它们在开发大规模酶抑制剂筛选方面具有巨大潜力。但是,目前的HEA通常缺乏严格的定量使用方法。这部分是由于技术问题,即使用传统的固定技术实现了许多次优的底物种群,但更重要的是,由于对这些系统的特定动力学行为了解不足。本文探讨了由少量固相底物引起的HEA动力学特征以及测定过程中游离酶浓度的不可变性,将HEA归类为酶准饱和系统(EQSS)。我们评估了最佳酶浓度工作范围和反应时间。我们还考虑了HEA的某些属性,用于评估等位抑制剂。这些研究是在简化的EQSS动力学模型以及将酶法分析灵敏度的功能因子正式分解为[E_(o)] / K_(m)依赖性和时间性成分的基础上进行的。

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