Wang Yang, Vilaplana Francisco, Brumer Harry, Aspeborg Henrik
Division of Glycoscience, School of Biotechnology, KTH Royal Institute of Technology, AlbaNova University Centre, 106 91, Stockholm, Sweden.
Planta. 2014 Mar;239(3):653-65. doi: 10.1007/s00425-013-2005-y. Epub 2013 Dec 11.
Each plant genome contains a repertoire of β-mannanase genes belonging to glycoside hydrolase family 5 subfamily 7 (GH5_7), putatively involved in the degradation and modification of various plant mannan polysaccharides, but very few have been characterized at the gene product level. The current study presents recombinant production and in vitro characterization of AtMan5-1 as a first step towards the exploration of the catalytic capacity of Arabidopsis thaliana β-mannanase. The target enzyme was expressed in both E. coli (AtMan5-1e) and P. pastoris (AtMan5-1p). The main difference between the two forms was a higher observed thermal stability for AtMan5-1p, presumably due to glycosylation of that particular variant. AtMan5-1 displayed optimal activity at pH 5 and 35 °C and hydrolyzed polymeric carob galactomannan, konjac glucomannan, and spruce galactoglucomannan as well as oligomeric mannopentaose and mannohexaose. However, the galactose-rich and highly branched guar gum was not as efficiently degraded. AtMan5-1 activity was enhanced by Co(2+) and inhibited by Mn(2+). The catalytic efficiency values for carob galactomannan were 426.8 and 368.1 min(-1) mg(-1) mL for AtMan5-1e and AtMan5-1p, respectively. Product analysis of AtMan5-1p suggested that at least five substrate-binding sites were required for manno-oligosaccharide hydrolysis, and that the enzyme also can act as a transglycosylase.
每个植物基因组都包含一系列属于糖苷水解酶家族5亚家族7(GH5_7)的β-甘露聚糖酶基因,推测这些基因参与各种植物甘露聚糖多糖的降解和修饰,但在基因产物水平上对其进行表征的却很少。本研究展示了AtMan5-1的重组生产及体外特性分析,作为探索拟南芥β-甘露聚糖酶催化能力的第一步。目标酶在大肠杆菌(AtMan5-1e)和巴斯德毕赤酵母(AtMan5-1p)中均有表达。两种形式之间的主要差异在于AtMan5-1p具有更高的热稳定性,推测是由于该特定变体的糖基化作用。AtMan5-1在pH 5和35℃时表现出最佳活性,可水解聚合角豆半乳甘露聚糖、魔芋葡甘露聚糖、云杉半乳葡甘露聚糖以及低聚甘露五糖和甘露六糖。然而富含半乳糖且高度分支的瓜尔胶降解效率不高。AtMan5-1的活性受Co(2+)增强,受Mn(2+)抑制。AtMan5-1e和AtMan5-1p对角豆半乳甘露聚糖的催化效率值分别为426.8和368.1 min(-¹) mg(-¹) mL。AtMan5-1p的产物分析表明,甘露寡糖水解至少需要五个底物结合位点,并且该酶还可作为转糖基酶发挥作用。