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粪产碱杆菌S-6假单胞蓝铜蛋白的定点诱变;Pro80Ala突变体的还原电位显著增加。

Site-directed mutagenesis of pseudoazurin from Alcaligenes faecalis S-6; Pro80Ala mutant exhibits marked increase in reduction potential.

作者信息

Nishiyama M, Suzuki J, Ohnuki T, Chang H C, Horinouchi S, Turley S, Adman E T, Beppu T

机构信息

Department of Agricultural Chemistry, University of Tokyo, Japan.

出版信息

Protein Eng. 1992 Mar;5(2):177-84. doi: 10.1093/protein/5.2.177.

Abstract

Pseudoazurin (a blue copper protein or cupredoxin) of a denitrifying bacterium Alcaligenes faecalis S-6 is a direct electron carrier for a Cu-containing nitrite reductase (NIR) of the same organism. Site-directed mutagenesis of the pseudoazurin was carried out using an Escherichia coli expression system. Replacement of Tyr74 by Phe to remove an internal hydrogen bond in the beta-barrel caused a slight decrease in heat stability as well as a requirement for a higher concentration of Cu2+ for production in the E. coli host. Exchange of Ala for Pro80 adjacent to His81, one of the four ligands binding a type I Cu atom, caused a marked increase in reduction potential by 139 mV without change in the optical absorption spectrum. The ability of the pseudoazurin to transfer electrons to NIR was markedly diminished but the apparent Km of NIR for pseudoazurin was not affected by the mutation. X-ray diffraction data collected on the oxidized and reduced forms of the Pro80Ala mutant show that a water molecule occupies the pocket created by the absent side chain. This observation suggests that the increase in reduction potential may be caused due to the increased solvent accessibility to the Cu atom. The electron density difference maps on these structures (at 2.0 A) show that this water moves during the change in oxidation state, and that there are small, but localized, conformational changes greater than 6.5 A from the copper site, as well as movement of both the Cu2+ and the cysteinate sulfur.

摘要

粪产碱菌S-6的假天青蛋白(一种蓝色铜蛋白或铜还原蛋白)是同一生物体中含铜亚硝酸还原酶(NIR)的直接电子载体。利用大肠杆菌表达系统对假天青蛋白进行了定点诱变。用苯丙氨酸取代酪氨酸74以消除β桶中的一个内部氢键,导致热稳定性略有下降,并且在大肠杆菌宿主中生产时需要更高浓度的Cu2+。将丙氨酸与81位组氨酸相邻的80位脯氨酸进行交换,81位组氨酸是结合I型铜原子的四个配体之一,导致还原电位显著增加139 mV,而光吸收光谱没有变化。假天青蛋白向NIR转移电子的能力明显减弱,但NIR对假天青蛋白的表观Km不受突变影响。对Pro80Ala突变体的氧化态和还原态收集的X射线衍射数据表明,一个水分子占据了由缺失侧链形成的口袋。这一观察结果表明,还原电位的增加可能是由于溶剂对铜原子的可及性增加所致。这些结构(2.0 Å)的电子密度差图表明,这种水在氧化态变化期间移动,并且在距铜位点大于6.5 Å处存在小的但局部的构象变化,以及Cu2+和半胱氨酸硫的移动。

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