York Structural Biology Laboratory, University of York, Heslington, York YO10 5DD, United Kingdom.
Protein Biochemistry and Stability, Novozymes A/S, Krogshøjvej 36, 2880 Bagsvaerd, Denmark.
Acta Crystallogr D Struct Biol. 2020 Nov 1;76(Pt 11):1124-1133. doi: 10.1107/S205979832001253X. Epub 2020 Oct 16.
α-L-Arabinofuranosidases from glycoside hydrolase family 51 use a stereochemically retaining hydrolytic mechanism to liberate nonreducing terminal α-L-arabinofuranose residues from plant polysaccharides such as arabinoxylan and arabinan. To date, more than ten fungal GH51 α-L-arabinofuranosidases have been functionally characterized, yet no structure of a fungal GH51 enzyme has been solved. In contrast, seven bacterial GH51 enzyme structures, with low sequence similarity to the fungal GH51 enzymes, have been determined. Here, the crystallization and structural characterization of MgGH51, an industrially relevant GH51 α-L-arabinofuranosidase cloned from Meripilus giganteus, are reported. Three crystal forms were grown in different crystallization conditions. The unliganded structure was solved using sulfur SAD data collected from a single crystal using the I23 in vacuo diffraction beamline at Diamond Light Source. Crystal soaks with arabinose, 1,4-dideoxy-1,4-imino-L-arabinitol and two cyclophellitol-derived arabinose mimics reveal a conserved catalytic site and conformational itinerary between fungal and bacterial GH51 α-L-arabinofuranosidases.
α-L-阿拉伯呋喃糖苷酶属于糖苷水解酶家族 51,采用立体化学保留的水解机制,从植物多糖如阿拉伯木聚糖和阿拉伯聚糖中释放非还原末端的α-L-阿拉伯呋喃糖残基。迄今为止,已经对十多种真菌 GH51 α-L-阿拉伯呋喃糖苷酶进行了功能表征,但尚未解析出真菌 GH51 酶的结构。相比之下,已经确定了 7 种与真菌 GH51 酶具有低序列相似性的细菌 GH51 酶结构。在此,报道了从巨大梅里皮丝菌中克隆的具有工业应用价值的 GH51 α-L-阿拉伯呋喃糖苷酶 MgGH51 的结晶和结构特征。在不同的结晶条件下生长了三种晶体形式。使用在 Diamond Light Source 的 I23 真空衍射光束线上从单个晶体收集的硫 SAD 数据解决了无配体结构。用阿拉伯糖、1,4-二脱氧-1,4-亚氨基-L-阿拉伯糖醇和两个环磷己糖醇衍生的阿拉伯糖类似物进行晶体浸泡,揭示了真菌和细菌 GH51 α-L-阿拉伯呋喃糖苷酶之间保守的催化位点和构象途径。