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Redox cycling and kinetic analysis of single molecules of solution-phase nitrite reductase

机译:溶液相亚硝酸还原酶单分子的氧化还原循环和动力学分析

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摘要

Single-molecule measurements are a valuable tool for revealing details of enzyme mechanisms by enabling observation of unsynchronized behavior. However, this approach often requires immobilizing the enzyme on a substrate, a process which may alter enzyme behavior. We apply a microfluidic trapping device to allow, for the first time, prolonged solution-phase measurement of single enzymes in solution. Individual redox events are observed for single molecules of a blue nitrite reductase and are used to extract the microscopic kinetic parameters of the proposed catalytic cycle. Changes in parameters as a function of substrate concentration are consistent with a random sequential substrate binding mechanism.
机译:单分子测量是通过观察不同步行为来揭示酶机制细节的有价值的工具。但是,这种方法通常需要将酶固定在基质上,该过程可能会改变酶的行为。我们应用微流体捕集装置,首次允许延长溶液中单个酶的溶液相测量。观察到单个亚硝酸蓝还原酶分子的氧化还原事件,并用于提取拟议催化循环的微观动力学参数。作为底物浓度的函数的参数变化与随机顺序的底物结合机制一致。

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