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产气肠杆菌中一种新型甘油磷酸二酯酶的结构与功能

The structure and function of a novel glycerophosphodiesterase from Enterobacter aerogenes.

作者信息

Jackson Colin J, Carr Paul D, Liu Jian-Wei, Watt Stephen J, Beck Jennifer L, Ollis David L

机构信息

Research School of Chemistry, Australian National University, ACT, 0200, Australia.

出版信息

J Mol Biol. 2007 Apr 6;367(4):1047-62. doi: 10.1016/j.jmb.2007.01.032. Epub 2007 Jan 20.

Abstract

The structure of the glycerophosphodiesterase (GDPD) from Enterobacter aerogenes, GpdQ, has been solved by SAD phasing from the active site metal ions. Structural analysis indicates that GpdQ belongs to the alpha/beta sandwich metallo-phosphoesterase family, rather than the (alpha/beta)(8) barrel GDPD family, suggesting that GpdQ is a structurally novel GDPD. Hexameric GpdQ is generated by interactions between three dimers. The dimers are formed through domain swapping, stabilised by an inter-chain disulfide bond, and beta-sheet extension. The active site contains a binuclear metal centre, with a fully occupied alpha-metal ion site, and partially occupied beta-metal ion site, as revealed by anomalous scattering analysis. Using a combination of TLS refinement and normal mode analysis, the dynamic movement of GpdQ was investigated. This analysis suggests that the hexameric quaternary structure stabilises the base of the dimer, which promotes "breathing" of the active site cleft. Comparison with other metallo-phosphodiesterases shows that although the central, catalytic, domain is highly conserved, many of these enzymes possess structurally unrelated secondary domains located at the entrance of the active site. We suggest that this could be a common structural feature of metallo-phosphodiesterases that constrains substrate specificity, preventing non-specific phosphodiester hydrolysis.

摘要

产气肠杆菌甘油磷酸二酯酶(GDPD)GpdQ的结构已通过基于活性位点金属离子的单波长反常散射(SAD)相位法解析出来。结构分析表明,GpdQ属于α/β夹心金属磷酸酯酶家族,而非(α/β)8桶状GDPD家族,这表明GpdQ是一种结构新颖的GDPD。六聚体GpdQ由三个二聚体之间的相互作用形成。这些二聚体通过结构域交换形成,由链间二硫键和β折叠延伸稳定。反常散射分析显示,活性位点包含一个双核金属中心,其中α金属离子位点被完全占据,β金属离子位点部分被占据。通过联合使用 TLS 精修和正常模式分析,对GpdQ的动态运动进行了研究。该分析表明,六聚体四级结构稳定了二聚体的基部,从而促进了活性位点裂隙的“呼吸”。与其他金属磷酸二酯酶的比较表明,尽管中心催化结构域高度保守,但其中许多酶在活性位点入口处具有结构不相关的二级结构域。我们认为,这可能是金属磷酸二酯酶的一个共同结构特征,它限制了底物特异性,防止非特异性磷酸二酯水解。

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