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Modulation of Firefly Luciferase Bioluminescence at Bioelectrochemical Interfaces

机译:萤火虫萤光素酶生物发光在生物电化学界面的调控。

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This paper describes a method by which the activity of an immobilized enzyme can be modulated electrochemically at an electrode. The particular example studied, involving the enzyme firefly luciferase being immobilized in a gelatin film of thickness < 1 μm, provides a useful model system since changes in the catalytic activity can be measured instantaneously through the natural bioluminescent emission. Using this biointerfacial arrangement, we have been able to demonstrate the reversible switching off and on of the enzyme's activity. Through a series of mechanistic studies, we have been able to determine that the bioluminescence response is modulated (on long time scales) as a consequence of the electrochemical depletion of protons at the electrode interface resulting in a local increase in pH.
机译:本文介绍了一种方法,通过该方法可以在电极上以电化学方式调节固定化酶的活性。所研究的特定示例涉及萤火虫荧光素酶固定在厚度<1μm的明胶膜中,提供了一个有用的模型系统,因为可以通过自然的生物发光发射瞬时测量催化活性的变化。使用这种生物界面排列,我们已经能够证明酶活性的可逆关闭和打开。通过一系列的机理研究,我们已经能够确定,由于电极界面上质子的电化学消耗导致pH值局部升高,生物发光响应得到了调节(在较长的时间尺度上)。

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