首页> 美国卫生研究院文献>Acta Crystallographica Section D: Biological Crystallography >Effect of the L499M mutation of the ascomycetous Botrytis aclada laccase on redox potential and catalytic properties
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Effect of the L499M mutation of the ascomycetous Botrytis aclada laccase on redox potential and catalytic properties

机译:子囊灰霉菌漆酶L499M突变对氧化还原电势和催化性能的影响

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摘要

Laccases are members of a large family of multicopper oxidases that catalyze the oxidation of a wide range of organic and inorganic substrates accompanied by the reduction of dioxygen to water. These enzymes contain four Cu atoms per molecule organized into three sites: T1, T2 and T3. In all laccases, the T1 copper ion is coordinated by two histidines and one cysteine in the equatorial plane and is covered by the side chains of hydrophobic residues in the axial positions. The redox potential of the T1 copper ion influences the enzymatic reaction and is determined by the nature of the axial ligands and the structure of the second coordination sphere. In this work, the laccase from the ascomycete Botrytis aclada was studied, which contains conserved Ile491 and nonconserved Leu499 residues in the axial positions. The three-dimensional structures of the wild-type enzyme and the L499M mutant were determined by X-ray crystallography at 1.7 Å resolution. Crystals suitable for X-ray analysis could only be grown after deglycosylation. Both structures did not contain the T2 copper ion. The catalytic properties of the enzyme were characterized and the redox potentials of both enzyme forms were determined: E 0 = 720 and 580 mV for the wild-type enzyme and the mutant, respectively. Since the structures of the wild-type and mutant forms are very similar, the change in the redox potential can be related to the L499M mutation in the T1 site of the enzyme.
机译:漆酶是多铜氧化酶家族的一员,该酶催化多种有机和无机底物的氧化,同时将双氧还原为水。这些酶每个分子包含四个Cu原子,分为三个位点:T1,T2和T3。在所有漆酶中,T1铜离子在赤道平面上由两个组氨酸和一个半胱氨酸配位,并在轴向位置被疏水性残基的侧链覆盖。 T1铜离子的氧化还原电势影响酶促反应,并由轴向配体的性质和第二配位球的结构决定。在这项工作中,研究了来自子囊灰霉菌的漆酶,该漆酶在轴向位置包含保守的Ile491和非保守的Leu499残基。野生型酶和L499M突变体的三维结构通过X射线晶体学以1.7Å的分辨率确定。适用于X射线分析的晶体只能在去糖基化后才能生长。两种结构均不含T2铜离子。表征了该酶的催化特性,并测定了两种酶形式的氧化还原电势:野生型酶和突变体的E 0分别为720和580 mV。由于野生型和突变形式的结构非常相似,因此氧化还原电位的变化可能与酶T1位点的L499M突变有关。

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