Le Nours Jérôme, Anderson Lars, Stoll Dominik, Stålbrand Henrik, Lo Leggio Leila
Centre for Crystallographic Studies, Biophysical Chemistry Group, Department of Chemistry, University of Copenhagen, Universitetsparken 5, DK-2100 Copenhagen, Denmark.
Biochemistry. 2005 Sep 27;44(38):12700-8. doi: 10.1021/bi050779v.
The endo-beta-1,4-mannanase from the soil bacterium Cellulomonas fimi is a modular plant cell wall degrading enzyme involved in the hydrolysis of the backbone of mannan, one of the most abundant polysaccharides of the hemicellulosic network in the plant cell wall. The crystal structure of a recombinant truncated endo-beta-1,4-mannanase from C. fimi (CfMan26A-50K) was determined by X-ray crystallography to 2.25 A resolution using the molecular replacement technique. The overall structure of the enzyme consists of a core (beta/alpha)8-barrel catalytic module characteristic of clan GH-A, connected via a linker to an immunoglobulin-like module of unknown function. A complex with the oligosaccharide mannotriose to 2.9 A resolution has also been obtained. Both the native structure and the complex show a cacodylate ion bound at the -1 subsite, while subsites -2, -3, and -4 are occupied by mannotriose in the complex. Enzyme kinetic analysis and the analysis of hydrolysis products from manno-oligosaccharides and mannopentitol suggest five important active-site cleft subsites. CfMan26A-50K has a high affinity -3 subsite with Phe325 as an aromatic platform, which explains the mannose releasing property of the enzyme. Structural differences with the homologous Cellvibrio japonicus beta-1,4-mannanase (CjMan26A) at the -2 and -3 subsites may explain the poor performance of CfMan26A mutants as "glycosynthases".
来自土壤细菌纤维单胞菌的内切-β-1,4-甘露聚糖酶是一种模块化的植物细胞壁降解酶,参与甘露聚糖主链的水解,甘露聚糖是植物细胞壁半纤维素网络中最丰富的多糖之一。采用分子置换技术,通过X射线晶体学测定了来自纤维单胞菌的重组截短内切-β-1,4-甘露聚糖酶(CfMan26A-50K)的晶体结构,分辨率为2.25 Å。该酶的整体结构由一个属于GH-A家族特征的核心(β/α)8桶催化模块组成,通过一个连接子与一个功能未知的免疫球蛋白样模块相连。还获得了与低聚糖甘露三糖分辨率为2.9 Å的复合物。天然结构和复合物均显示在-1亚位点结合有二甲胂酸离子,而在复合物中,-2、-3和-4亚位点被甘露三糖占据。酶动力学分析以及对甘露寡糖和甘露戊糖醇水解产物的分析表明有五个重要的活性位点裂隙亚位点。CfMan26A-50K具有一个高亲和力的-3亚位点,以苯丙氨酸325作为芳香平台,这解释了该酶的甘露糖释放特性。在-2和-3亚位点与同源的日本纤维弧菌β-1,4-甘露聚糖酶(CjMan26A)的结构差异可能解释了CfMan26A突变体作为“糖合成酶”时性能不佳的原因。