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Regulatory effects of ATP and luciferin on firefly luciferase activity.

机译:ATP和荧光素对萤火虫荧光素酶活性的调节作用。

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摘要

ATP and luciferin are not only substrates of firefly luciferase, but can, in addition, modulate its activity. High concentrations of luciferin induce a conformational change of the enzyme that temporarily reduces the catalytic rate. Re-activation takes approx. 20 min and is independent of variation in the concentration of enzyme or ATP, but lengthens with increasing luciferin concentration. High concentrations of albumin reduce this luciferin effect. The kinetic properties of firefly luciferase determined from initial rates and at steady state after 1 min of catalysis have been analysed according to Michaelis-Menten kinetics. There is only one active site for each of the substrates. At steady state the Km and Vmax. values for both substrates are reduced in an uncompetitive manner. Hyperbolic Lineweaver-Burk plots indicate an activation by ATP probably by binding to an allosteric site. A model is presented which incorporates luciferin induced de- and re-activation effects. Experimental conditions to avoid the regulatory effects of substrates during ATP monitoring are proposed.
机译:ATP和荧光素不仅是萤火虫荧光素酶的底物,而且还可以调节其活性。高浓度的萤光素会引起酶的构象变化,从而暂时降低催化速率。重新激活大约需要花费时间。 20分钟,不受酶或ATP浓度变化的影响,但随着萤光素浓度的增加而延长。高浓度白蛋白会降低这种萤光素的作用。根据Michaelis-Menten动力学分析了萤火虫萤光素荧光素酶的动力学特性,该动力学特性是由初始速率和催化作用1分钟后的稳态确定的。每个底物只有一个活性位点。在稳态下,Km和Vmax。两个基板的数值都以非竞争性方式降低。双曲Lineweaver-Burk图表明ATP可能通过结合变构位点而激活。提出了包含萤光素诱导的去激活和再激活作用的模型。提出了在ATP监测过程中避免底物调节作用的实验条件。

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