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首页> 外文期刊>Extremophiles: Life under extreme conditions >Activity-stability relationships revisited in blue oxidases catalyzing electron transfer at extreme temperatures
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Activity-stability relationships revisited in blue oxidases catalyzing electron transfer at extreme temperatures

机译:在极端温度下催化蓝色电子转移的蓝色氧化酶中的活​​性-稳定性关系得到重新探讨

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摘要

Cuproxidases are a subset of the blue multicopper oxidases that catalyze the oxidation of toxic Cu(I) ions into less harmful Cu(II) in the bacterial periplasm. Cuproxidases from psychrophilic, mesophilic, and thermophilic bacteria display the canonical features of temperature adaptation, such as increases in structural stability and apparent optimal temperature for activity with environmental temperature as well as increases in the binding affinity for catalytic and substrate copper ions. In contrast, the oxidative activities at 25 A degrees C for both the psychrophilic and thermophilic enzymes are similar, suggesting that the nearly temperature-independent electron transfer rate does not require peculiar adjustments. Furthermore, the structural flexibilities of both the psychrophilic and thermophilic enzymes are also similar, indicating that the firm and precise bindings of the four catalytic copper ions are essential for the oxidase function. These results show that the requirements for enzymatic electron transfer, in the absence of the selective pressure of temperature on electron transfer rates, produce a specific adaptive pattern, which is distinct from that observed in enzymes possessing a well-defined active site and relying on conformational changes such as for the induced fit mechanism.
机译:铜氧化酶是蓝色的多铜氧化酶的一个子集,其在细菌的周质中催化有毒的Cu(I)离子氧化成危害较小的Cu(II)。来自嗜冷,中温和嗜热细菌的铜氧化酶显示出温度适应的典型特征,例如结构稳定性的增加和与环境温度有关的活性的表观最佳温度,以及对催化和底物铜离子的结合亲和力的增加。相反,嗜酸和嗜热酶在25 A的氧化活性相似,这表明几乎不依赖温度的电子转移速率不需要特殊的调节。此外,亲热酶和嗜热酶的结构灵活性也相似,表明四种催化铜离子的牢固而精确的结合对于氧化酶功能至关重要。这些结果表明,在没有温度对电子转移速率的选择压力的情况下,对酶促电子转移的要求会产生特定的适应性模式,这与在具有明确定义的活性位点并依赖于构象的酶中观察到的模式不同。变化,例如诱导拟合机制。

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