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首页> 外文期刊>Chembiochem: A European journal of chemical biology >Investigating the Role of Conformational Effects on Laccase Stability and Hyperactivation under Stress Conditions
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Investigating the Role of Conformational Effects on Laccase Stability and Hyperactivation under Stress Conditions

机译:研究构象效应在应激条件下对漆酶稳定性和过度活化的作用

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摘要

Fungal laccase from Steccherinum ochraceum 1833 displays remarkable stability under different harsh conditions: organic/buffer mixtures, thermal treatment, and microwave radiation. The behavior is particularly significant in the light of the sharp inactivation observed for two different fungal laccases. Laccase from S.ochraceum 1833 also displays hyperactivation under mild thermal treatment (60 degrees C). Molecular dynamics simulations at 80 degrees C explained how this laccase retains the geometry of the electron transfer pathway, thereby assuring electron transfer through the copper ions and thus maintaining its catalytic activity at high temperature. Spectroscopic studies revealed that the thermal activation corresponds to specific conformational changes in the protein. The results indicate that this laccase is potentially applicable under denaturing conditions that might be beneficial for the biotransformation of recalcitrant substrates.
机译:在不同的苛刻条件下(有机/缓冲液混合物,热处理和微波辐射),Ste球菌1833的真菌漆酶均具有出色的稳定性。鉴于观察到的两种不同的真菌漆酶的急剧失活,该行为特别重要。在温和的热处理(60摄氏度)下,och曲霉1833年产生的漆酶也显示出过度活化。在80摄氏度下的分子动力学模拟解释了这种漆酶如何保持电子传递路径的几何形状,从而确保电子通过铜离子的传递并因此在高温下保持其催化活性。光谱研究表明,热激活对应于蛋白质中特定的构象变化。结果表明该漆酶在变性条件下可能适用,这可能对顽固底物的生物转化有益。

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