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铜配位且表面暴露的组氨酸残基在蓝铜蛋白天青蛋白中的结构作用。

The structural role of the copper-coordinating and surface-exposed histidine residue in the blue copper protein azurin.

作者信息

Jeuken L J, Ubbink M, Bitter J H, van Vliet P, Meyer-Klaucke W, Canters G W

机构信息

Leiden Institute of Chemistry Gorlaeus Laboratories, Leiden University, Leiden, 2300 RA, The Netherlands.

出版信息

J Mol Biol. 2000 Jun 9;299(3):737-55. doi: 10.1006/jmbi.2000.3754.

Abstract

Copper K-edge extended X-ray absorption fine structure (EXAFS) spectroscopy and (15)N NMR relaxation studies were performed on samples of a variant azurin in which the surface-exposed histidine ligand of the copper atom (His117) has been replaced by glycine. The experiments were performed to probe the structure of the active site and the protein dynamics. The cavity in the protein structure created by the His-->Gly replacement could be filled by external ligands, which can either restore the spectroscopic properties of the original type-1 copper site or create a new type-2 copper site. The binding of external ligands occurs only when the copper atom is in its oxidised state. In the reduced form, the binding is abolished. From the EXAFS experiments, it is concluded that for the oxidised type-1 copper sites the protein plus external ligand (L) provide an NSSL donor set deriving from His46, Cys112, Met121 and the external ligand. The type-2 copper site features an S(N/O)(3) donor set in which the S-donor derives from Cys112, one N-donor from His46 and the remaining two N or O donors from one or more external ligands. Upon reduction of the type-1 as well as the type-2 site, the external ligand drops out of the copper site and the coordination reduces to 3-fold with an SSN donor set deriving from His46, Cys112 and Met121. The Cu-S(delta)(Met) distance is reduced from about 3.2 to 2.3 A. Analysis of the NMR data shows that the hydrophobic patch around His117 has gained fluxionality when compared to wild-type azurin, which may explain why the His117Gly variant is able to accommodate a variety of external ligands of different sizes and with different chelating properties. On the other hand, the structure and dynamics of the beta-sandwich, which comprises the main body of the protein, is only slightly affected by the mutation. The unusually high reduction potential of the His117Gly azurin is discussed in light of the present results.

摘要

对一种变体天青蛋白样品进行了铜 K 边扩展 X 射线吸收精细结构(EXAFS)光谱和(15)N NMR 弛豫研究,在该变体中铜原子表面暴露的组氨酸配体(His117)已被甘氨酸取代。进行这些实验以探测活性位点的结构和蛋白质动力学。His→Gly 取代在蛋白质结构中产生的空腔可被外部配体填充,这要么可以恢复原始 1 型铜位点的光谱性质,要么可以产生一个新的 2 型铜位点。外部配体的结合仅在铜原子处于氧化态时发生。在还原形式下,结合被消除。从 EXAFS 实验得出,对于氧化的 1 型铜位点,蛋白质加上外部配体(L)提供了一个源自 His46、Cys112、Met121 和外部配体的 NSSL 供体集。2 型铜位点具有一个 S(N/O)(3)供体集,其中 S 供体源自 Cys112,一个 N 供体源自 His46,其余两个 N 或 O 供体来自一个或多个外部配体。1 型和 2 型位点还原后,外部配体从铜位点脱落,配位减少到 3 重,形成一个源自 His46、Cys112 和 Met121 的 SSN 供体集。Cu-S(δ)(Met)距离从约 3.2 埃减小到 2.3 埃。对 NMR 数据的分析表明,与野生型天青蛋白相比,His117 周围的疏水区域具有更高的流动性,这可能解释了为什么 His117Gly 变体能够容纳各种不同大小和具有不同螯合性质的外部配体。另一方面,构成蛋白质主体的β-折叠结构和动力学仅受到突变的轻微影响。根据目前的结果讨论了 His117Gly 天青蛋白异常高的还原电位。

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