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嗜热栖热菌D-阿拉伯糖脱氢酶的晶体结构和生化特性

Crystal structure and biochemical properties of the D-arabinose dehydrogenase from Sulfolobus solfataricus.

作者信息

Brouns Stan J J, Turnbull Andrew P, Willemen Hanneke L D M, Akerboom Jasper, van der Oost John

机构信息

Laboratory of Microbiology, Department of Agrotechnology and Food Sciences, Wageningen University, Hesselink van Suchtelenweg 4, 6703 CT Wageningen, Netherlands.

出版信息

J Mol Biol. 2007 Aug 31;371(5):1249-60. doi: 10.1016/j.jmb.2007.05.097. Epub 2007 Jun 8.

Abstract

Sulfolobus solfataricus metabolizes the five-carbon sugar d-arabinose to 2-oxoglutarate by an inducible pathway consisting of dehydrogenases and dehydratases. Here we report the crystal structure and biochemical properties of the first enzyme of this pathway: the d-arabinose dehydrogenase. The AraDH structure was solved to a resolution of 1.80 A by single-wavelength anomalous diffraction and phased using the two endogenous zinc ions per subunit. The structure revealed a catalytic and cofactor binding domain, typically present in mesophilic and thermophilic alcohol dehydrogenases. Cofactor modeling showed the presence of a phosphate binding pocket sequence motif (SRS-X2-H), which is likely to be responsible for the enzyme's preference for NADP+. The homo-tetrameric enzyme is specific for d-arabinose, l-fucose, l-galactose and d-ribose, which could be explained by the hydrogen bonding patterns of the C3 and C4 hydroxyl groups observed in substrate docking simulations. The enzyme optimally converts sugars at pH 8.2 and 91 degrees C, and displays a half-life of 42 and 26 min at 85 and 90 degrees C, respectively, indicating that the enzyme is thermostable at physiological operating temperatures of 80 degrees C. The structure represents the first crystal structure of an NADP+-dependent member of the medium-chain dehydrogenase/reductase (MDR) superfamily from Archaea.

摘要

嗜热栖热菌通过由脱氢酶和脱水酶组成的诱导途径将五碳糖D-阿拉伯糖代谢为2-氧代戊二酸。在此,我们报道了该途径中首个酶——D-阿拉伯糖脱氢酶的晶体结构和生化特性。通过单波长异常衍射并利用每个亚基的两个内源性锌离子进行相位分析,将AraDH结构解析至1.80 Å的分辨率。该结构揭示了一个催化和辅因子结合结构域,这在嗜温和嗜热醇脱氢酶中通常存在。辅因子建模显示存在一个磷酸盐结合口袋序列基序(SRS-X²-H),这可能是该酶对NADP⁺具有偏好性的原因。该同四聚体酶对D-阿拉伯糖、L-岩藻糖、L-半乳糖和D-核糖具有特异性,这可以通过底物对接模拟中观察到的C3和C4羟基的氢键模式来解释。该酶在pH 8.2和91℃时能最佳地转化糖类,在85℃和90℃时的半衰期分别为42分钟和26分钟,表明该酶在80℃的生理工作温度下具有热稳定性。该结构代表了古菌中中链脱氢酶/还原酶(MDR)超家族中依赖NADP⁺成员的首个晶体结构。

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