首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >Axial bonds at the T1 Cu site of Thermus thermophilus SG0.5JP17‐16 laccase influence enzymatic properties
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Axial bonds at the T1 Cu site of Thermus thermophilus SG0.5JP17‐16 laccase influence enzymatic properties

机译:嗜热栖热菌T1 Cu部位的轴键SG0.5JP17‐16漆酶影响酶性能

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摘要

Laccase is a multi‐copper oxidase which oxidizes substrate at the type 1 copper site, simultaneously coupling the reduction of dioxygen to water at the trinuclear copper center. In this study, we used site‐directed mutagenesis to study the effect of axial bonds between the metal and amino acid residue side chains in lacTT. Our kinetic and spectral data showed that the replacement of the axial residue with non‐coordinating residues resulted in higher efficiency (k cat/K m) and a lower Cu2+ population at the type 1 copper site, while substitution with strongly coordinating residues resulted in lower efficiency and a higher Cu2+ population, as compared with the wild‐type. The redox potentials of mutants with hydrophobic axial residues (Ala and Phe) were higher than that of the wild‐type. In conclusion, these insights into the catalytic mechanism of laccase may be of use in protein engineering to fine‐tune its enzymatic properties for industrial application.
机译:漆酶是一种多铜氧化酶,可氧化1型铜位上的底物,同时在三核铜中心将双氧的还原与水耦合。在这项研究中,我们使用定点诱变研究了lacTT中金属和氨基酸残基侧链之间的轴向键合效应。我们的动力学和光谱数据表明,用非配位残基取代轴向残基可提高效率(k cat / K m),并降低1型铜位的Cu 2 + 种群,与野生型相比,用强配位残基取代导致效率更低,Cu 2 + 种群更高。具有疏水性轴向残基(Ala和Phe)的突变体的氧化还原电势高于野生型。总而言之,这些对漆酶催化机理的见解可能在蛋白质工程中可以用于微调其酶促性质,以供工业应用。

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