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首页> 外文期刊>Biochemistry >Thermodynamic analysis of the binding of oxidized and reduced FMN cofactor to Vibrio harveyi NADPH-FMN oxidoreductase FRP apoenzyme
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Thermodynamic analysis of the binding of oxidized and reduced FMN cofactor to Vibrio harveyi NADPH-FMN oxidoreductase FRP apoenzyme

机译:氧化和还原FMN辅因子与哈维弧菌NADPH-FMN氧化还原酶FRP脱辅酶结合的热力学分析

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摘要

The Vibrio harveyi NADPH-specific flavin reductase FRP follows a ping-pong mechanism but switches to a sequential mechanism in the luciferase-coupled reaction. The bound FMN co-isolated with FRP, while acting as a genuine cofactor in the single-enzyme reaction, functions in the luciferase-coupled reaction as a prebound substrate and is directly transferred to luciferase once it is reduced [Lei, B., and Tu, S.-C. (1998) Biochemistry 37, 14623-14629]. With the aim of better understanding the functions of FMN in the FRP holoenzyme, this study was undertaken to quantify and compare the thermodynamic properties of the binding of oxidized and reduced FMN by the FRP apoenzyme. By isothermal titration calorimetry (ITC) measurements in various buffers at pH 7.0 and 15-30 degrees C, the binding of FMN by apo-FRP was found to be noncooperative, exothermic, and primarily enthalpy driven. The binding free energy change (hence, the association constant) was nearly invariant over this temperature range. Significant conformational changes in FRP upon binding of FMN were indicated. Equilibrium bindings of reduced flavins by flavin-dependent proteins have rarely been studied. In this work, the thermodynamic properties of binding of reduced FMN by apo-FRP were found to closely resemble those of FMN binding under three sets of experimental conditions via ITC measurements and, in one case, fluorescence quenching. The kinetically deduced ping-pong mechanism of FRP is now supported by direct measurements of binding affinities of the oxidized and reduced FMN cofactors. These findings are also discussed in relation to the function of FRP as a reduced flavin donor in the FRP-luciferase couple.
机译:哈维弧菌NADPH特异的黄素还原酶FRP遵循乒乓机制,但在萤光素酶偶联反应中切换为顺序机制。与FRP共分离的结合的FMN,虽然在单酶反应中起着真正的辅助因子的作用,但在萤光素酶偶联的反应中作为预先结合的底物起作用,一旦还原就直接转移至萤光素酶[Lei,B.,and Tu,S.-C. (1998)Biochemistry 37,14623-14629]。为了更好地了解FMN在FRP全酶中的功能,本研究旨在量化和比较FRP脱辅酶氧化和还原FMN结合的热力学性质。通过在pH 7.0和15-30摄氏度下的各种缓冲液中进行等温滴定量热(ITC)测量,发现载脂蛋白FRP与FMN的结合是不合作的,放热的并且主要是焓驱动的。在此温度范围内,结合自由能变化(因此,缔合常数)几乎不变。表示在FMN结合后FRP的构象发生重大变化。黄素依赖性蛋白对还原的黄素的平衡结合很少进行研究。在这项工作中,发现通过载脂蛋白-FRP结合还原FMN的热力学性质与IMN测量的三组实验条件下与FMN结合的热力学性质非常相似,在一种情况下还包括荧光猝灭。现在通过直接测量氧化和还原FMN辅因子的结合亲和力来支持FRP的动力学推论乒乓机制。还讨论了有关FRP作为FRP-萤光素酶对中减少的黄素供体的功能的这些发现。

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