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Determination of Kinetic Parameters, K_(m) and k_(cat), with a Single Experiment on a Chip

机译:通过芯片上的单个实验确定动力学参数K_(m)和k_(cat)

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We have demonstrated a multistep enzyme reaction on a chip to determine the key kinetic parameters of enzyme reaction. We designed and fabricated a fully integrated microfluidic chip to have sample metering, mixing, and incubation functionalities. The chip generates a gradient of reagent concentrations in 11 parallel processors. We used beta-galactosidase and its substrate, resorufin-beta-D-galactopyranoside, as the model system of the enzyme reaction. With a single experiment on the chip, we determined the key parameters for the enzyme kinetics, K_(m) and k_(cat), and evaluated the effect of inhibitor concentrations on the reaction rates. This study provides a new tool for evaluating various effectors, such as inhibitors and cofactors, on the initial rate of an enzyme reaction, and it could be applied to a comprehensive bio/chemical reaction study.
机译:我们已经证明了在芯片上进行多步酶反应以确定酶反应的关键动力学参数。我们设计并制造了完全集成的微流控芯片,以具有样品计量,混合和孵育功能。该芯片在11个并行处理器中生成试剂浓度的梯度。我们使用β-半乳糖苷酶及其底物,试卤灵-β-D-吡喃半乳糖苷,作为酶反应的模型系统。通过芯片上的单个实验,我们确定了酶动力学的关键参数K_(m)和k_(cat),并评估了抑制剂浓度对反应速率的影响。这项研究提供了一种评估酶反应初始速率的各种效应物(如抑制剂和辅因子)的新工具,可将其应用于全面的生物/化学反应研究。

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