首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Biochemical spectroscopic and X-ray structural analysis of deuterated multicopper oxidase CueO prepared from a new expression construct for neutron crystallography
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Biochemical spectroscopic and X-ray structural analysis of deuterated multicopper oxidase CueO prepared from a new expression construct for neutron crystallography

机译:用中子晶体学的新型表达构建体制备的氘化多铜氧化酶CueO的生化光谱和X射线结构分析

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摘要

Multicopper oxidases oxidize various phenolic and nonphenolic compounds by using molecular oxygen as an electron acceptor to produce water. A multicopper oxidase protein, CueO, from Escherichia coli is involved in copper homeostasis in the bacterial cell. Although X-ray crystallographic studies have been conducted, the reduction mechanism of oxygen and the proton-transfer pathway remain unclear owing to the difficulty in identifying H atoms from X-ray diffraction data alone. To elucidate the reaction mechanism using neutron crystallography, a preparation system for obtaining large, high-quality single crystals of deuterated CueO was developed. Tiny crystals were obtained from the deuterated CueO initially prepared from the original construct. The X-ray crystal structure of the deuterated CueO showed that the protein contained an incompletely truncated signal sequence at the N-terminus, which resulted in the heterogeneity of the protein sample for crystallization. Here, a new CueO expression system that had an HRV3C cleavage site just after the signal sequence was constructed. Deuterated CueO from the new construct was expressed in cells cultured in deuterated algae-extract medium and the signal sequence was completely eliminated by HRV3C protease. The deuteration level of the purified protein was estimated by MALDI-TOF mass spectrometry to be at least 83.2% compared with nondeuterated protein. Nondeuterated CueO crystallized in space group P21, with unit-cell parameters a = 49.51, b = 88.79, c = 53.95 Å, β = 94.24°, and deuterated CueO crystallized in space group P212121, with unit-cell parameters a = 49.91, b = 106.92, c = 262.89 Å. The crystallographic parameters for the crystals of the new construct were different from those previously reported for nondeuterated crystals. The nondeuterated and deuterated CueO from the new construct had similar UV–Vis spectra, enzymatic activities and overall structure and geometry of the ligands of the Cu atoms in the active site to those of previously reported CueO structures. These results indicate that the CueO protein prepared using the new construct is suitable for further neutron diffraction studies.
机译:多铜氧化酶通过使用分子氧作为电子受体来氧化各种酚类和非酚类化合物以产生水。来自大肠杆菌的多铜氧化酶蛋白CueO与细菌细胞中的铜稳态有关。尽管已经进行了X射线晶体学研究,但是由于难以仅从X射线衍射数据中识别出H原子,因此氧的还原机理和质子转移途径仍然不清楚。为了阐明使用中子晶体学的反应机理,开发了一种用于制备大质量的氘代CueO单晶的制备系统。从最初由原始构建物制备的氘代CueO中获得微小的晶体。氘代的CueO的X射线晶体结构表明,该蛋白在N端包含不完全截断的信号序列,这导致了用于结晶的蛋白样品的异质性。在这里,一个新的CueO表达系统在信号序列刚构建后就具有HRV3C切割位点。来自新构建体的氘代CueO在氘代藻类提取培养基中培养的细胞中表达,并且信号序列被HRV3C蛋白酶完全消除。通过MALDI-TOF质谱分析,与非氘代蛋白相比,纯化蛋白的氘代水平至少为83.2%。在单元格参数a = 49.51,b = 88.79,c = 53.95Å,β= 94.24°的空间群中结晶的非氘代CueO,在单元格参数a = 49.91,b的空间群P212121中结晶的氘代CueO = 106.92,c = 262.89。新构建体晶体的晶体学参数与先前报道的非氘代晶体的晶体学参数不同。新构造的未氘代和氘代的CueO具有与以前报道的CueO结构相似的UV-Vis光谱,酶活性以及活性位中Cu原子配体的整体结构和几何形状。这些结果表明,使用新构建体制备的CueO蛋白适用于进一步的中子衍射研究。

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