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首页> 外文期刊>FEBS letters. >Comparing the temperature dependence of FMN to heme electron transfer in full length and truncated inducible nitric oxide synthase proteins
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Comparing the temperature dependence of FMN to heme electron transfer in full length and truncated inducible nitric oxide synthase proteins

机译:比较FMN对全长和截短型可诱导型一氧化氮合酶蛋白的血红素电子转移的温度依赖性

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摘要

The FMN-heme interdomain (intraprotein) electron transfer (IET) kinetics in full length and oxygenase/FMN (oxyFMN) construct of human iNOS were determined by laser flash photolysis over the temperature range from 283 to 304 K. An appreciable increase in the rate constant value was observed with an increase in the temperature. Our previous viscosity study indicated that the IET process is conformationally gated, and Eyring equation was thus used to analyze the temperature dependence data. The obtained magnitude of activation entropy for the IET in the oxyFMN construct is only one-fifth of that for the holoenzyme. This indicates that the FMN domain in the holoenzyme needs to sample more conformations before the IET takes place, and that the FMN domain in the oxyFMN construct is better poised for efficient IET.
机译:在283至304 K的温度范围内,通过激光闪光光解法测定了人iNOS全长FMN-血红素间域(蛋白内)电子转移(IET)动力学和加氧酶/ FMN(oxyFMN)构建体。速率显着增加随着温度升高观察到恒定值。我们之前的粘度研究表明,IET过程是构象化的,因此使用了Eyring方程来分析温度依赖性数据。 oxyFMN构建体中IET的激活熵的大小仅为全酶的五分之一。这表明在IET发生之前,全酶中的FMN结构域需要采样更多的构象,而且oxyFMN构建体中的FMN结构域更适合有效的IET。

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