Yan Xiao-Xue, An Xiao-Min, Gui Lu-Lu, Liang Dong-Cai
National Laboratory of Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, 15 Datun Road, Chaoyang District, Beijing 100101, P. R. China.
J Mol Biol. 2008 Jun 6;379(3):535-44. doi: 10.1016/j.jmb.2008.03.068. Epub 2008 Apr 7.
BCman, a beta-mannanase from the plant root beneficial bacterium Bacillus subtilis Z-2, has a potential to be used in the production of mannooligosaccharide, which shows defense induction activity on both melon and tobacco, and plays an important role in the biological control of plant disease. Here we report the biochemical properties and crystal structure of BCman-GH26 enzyme. Kinetic analysis reveals that BCman is an endo-beta-mannanase, specific for mannan, and has no activity on mannooligosaccharides. The catalytic acid/base Glu167 and nucleophile Glu266 are positioned on the beta4 and beta7 strands, respectively. The 1.45-A crystal structure reveals that BCman is a typical (beta/alpha)(8) folding type. One large difference from the saddle-shaped active center of other endo-beta-mannanases is the presence of a shallow-dish-shaped active center and substrate-binding site that are both unique to BCman. These differences are mainly due to important changes in the length and position of loop 1 (Phe37-Met47), loop 2 (Ser103-Ala134), loop3 (Phe162-Asn185), loop 4 (Tyr215-Ile236), loop 5 (Pro269-Tyr278), and loop 6 (Trp298-Gly309), all of which surround the active site. Data from isothermal titration calorimetry and crystallography indicated only two substrate-binding subsites (+1 and -1) within the active site of BCman. These two sites are involved in the enzyme's mannan degradation activity and in restricting the binding capacity for mannooligosaccharides. Binding and catalysis of BCman to mannan is mediated mainly by a surface containing a strip of solvent-exposed aromatic rings of Trp302, Trp298, Trp172, and Trp72. Additionally, BCman contains a disulfide bond (Cys66Cys86) and a special His1-His23-Glu336 metal-binding site. This secondary structure is a key factor in the enzyme's stability.
BCman是一种来自植物根际有益细菌枯草芽孢杆菌Z-2的β-甘露聚糖酶,具有用于生产低聚甘露糖的潜力,低聚甘露糖对甜瓜和烟草均表现出防御诱导活性,在植物病害的生物防治中发挥重要作用。在此,我们报道了BCman-GH26酶的生化特性和晶体结构。动力学分析表明,BCman是一种内切β-甘露聚糖酶,对甘露聚糖具有特异性,对低聚甘露糖无活性。催化酸/碱Glu167和亲核试剂Glu266分别位于β4和β7链上。1.45 Å的晶体结构表明,BCman是典型的(β/α)8折叠类型。与其他内切β-甘露聚糖酶的鞍形活性中心的一个主要区别是存在浅盘形活性中心和底物结合位点,这两者都是BCman所特有的。这些差异主要是由于环绕活性位点的环1(Phe37-Met47)、环2(Ser103-Ala134)、环3(Phe162-Asn185)、环4(Tyr215-Ile236)、环5(Pro269-Tyr278)和环6(Trp298-Gly309)的长度和位置发生了重要变化。等温滴定量热法和晶体学数据表明,BCman活性位点内只有两个底物结合亚位点(+1和-1)。这两个位点参与了酶的甘露聚糖降解活性,并限制了对低聚甘露糖的结合能力。BCman与甘露聚糖的结合和催化主要由一个包含Trp302、Trp298、Trp172和Trp72的溶剂暴露芳香环条带的表面介导。此外,BCman含有一个二硫键(Cys66-Cys86)和一个特殊的His1-His23-Glu336金属结合位点。这种二级结构是酶稳定性的关键因素。