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核黄素的核磁共振15N和1H共振归属及整体折叠。对蓝铜位点配位和酸稳定性的深入了解。

Nuclear magnetic resonance 15N and 1H resonance assignments and global fold of rusticyanin. Insights into the ligation and acid stability of the blue copper site.

作者信息

Hunt A H, Toy-Palmer A, Assa-Munt N, Cavanagh J, Blake R C, Dyson H J

机构信息

Department of Molecular Biology, Scripps Research Institute, La Jolla, CA 92037.

出版信息

J Mol Biol. 1994 Dec 9;244(4):370-84. doi: 10.1006/jmbi.1994.1737.

Abstract

Nuclear magnetic resonance assignments are reported at pH approximately 3 for a type 1 ("blue") copper protein, rusticyanin, obtained from the acidophilic organism Thiobacillus ferrooxidans. A combination of homonuclear proton and heteronuclear 15N-edited NMR spectra has been used to assign most of the 1H and 15N resonances of reduced rusticyanin. The copper-binding site is shown by analogy with other blue copper proteins to contain the side-chains of Cys138, His143 and Met148 at the C-terminal end of the sequence and a fourth ligand that is most likely a histidine, His85, consistent with the constitution of other type 1 copper sites. The global fold of the molecule is a compact beta-barrel or beta-sandwich, which contains a high proportion of beta-sheet secondary structure and a hydrophobic core particularly rich in aromatic residues. The copper-binding active site is surrounded by aromatic residues, and many of the resonances of the residues flanking the active site are shifted to unusual values, consistent with the effects of ring currents. The protected nature of the copper site is demonstrated by the large number of amide protons that are persistent in this region in 99% 2H2O solution at pH 3.4. We suggest that the unusual acid stability, both of the protein itself and of the blue copper active site, is a direct result of the protected and highly hydrophobic nature of the active site sequence and contacting loops and the high proportion of secondary structure in the protein.

摘要

本文报道了从嗜酸生物氧化亚铁硫杆菌中获得的1型(“蓝色”)铜蛋白rusticyanin在pH约为3时的核磁共振归属。通过同核质子和异核15N编辑的核磁共振谱相结合,对还原态rusticyanin的大部分1H和15N共振峰进行了归属。通过与其他蓝色铜蛋白类比,发现铜结合位点在序列的C末端包含Cys138、His143和Met148的侧链,以及第四个配体,最有可能是组氨酸His85,这与其他1型铜位点的组成一致。该分子的整体折叠结构是一个紧密的β桶或β三明治,其中β折叠二级结构比例很高,且有一个特别富含芳香族残基的疏水核心。铜结合活性位点被芳香族残基包围,活性位点两侧残基的许多共振峰移至异常值,这与环电流效应一致。在pH 3.4的99% 2H2O溶液中,该区域有大量酰胺质子持续存在,证明了铜位点的受保护性质。我们认为,蛋白质本身以及蓝色铜活性位点不同寻常的酸稳定性,是活性位点序列及其接触环的受保护和高度疏水性质以及蛋白质中高比例二级结构的直接结果。

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