首页> 外文期刊>Enzyme and Microbial Technology >The effect of an oligosaccharide reducing-end xylanase, BhRex8A, on the synergistic degradation of xylan backbones by an optimised xylanolytic enzyme cocktail
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The effect of an oligosaccharide reducing-end xylanase, BhRex8A, on the synergistic degradation of xylan backbones by an optimised xylanolytic enzyme cocktail

机译:低聚糖还原 - 末端木聚糖酶BHREX8A对木质醇酶鸡尾酒的Xylan主链协同降解的影响

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摘要

Xylan, the most abundant hemicellulose in lignocellulosic biomass, requires a consortium of xylanolytic enzymes to achieve its complete de-polymerisation. As global interest in using xylan-containing lignocellulosic feedstocks for biofuel production increases, an accompanying knowledge on how to efficiently depolymerise these feedstocks into fermentable sugars is required. Since it has been observed that the same enzyme [i.e. an enzyme with the same EC (Enzyme Commission) classification] from different GH families can display different substrate specificities and properties, we evaluated GH10 (XT6) and 11 (Xyn2A) xylanase performance alone, and in combination, during xylan depolymerisation. Synergistic enhancement with respect to reducing sugar release was observed when Xyn2A at 75% loading was supplemented with 25% loading of XT6 for both beechwood glucuronoxylan (1.14-fold improvement) and wheat arabinoxylan (1.1-fold improvement) degradation. Following this, the optimised xylanase mixture was dosed with an oligosaccharide reducing-end xylanase (Rex8A) from either Bifidobacterium adolescentis or Bacillus halodurans for further synergistic enhancement. Dosing 75% of the xylanase mixture (Xyn2A:XT6 at 75:25%) with 25% loading of Rex8A led to an enhancement of reducing sugar (up to an 1.1-fold improvement) and xylose release (up to an 1.5-fold improvement); however, this effect was both xylan and Rex8A specific. Using thin layer chromatography, synergism appeared to be a result of the GH10 and 11 xylanases liberating xylo-oligomers that are preferred substrates of the processive Rex8As. Rex8As then hydrolysed xylo-oligomers to xylose - and xylobiose which was the preferred substrate for xylosidase, SXA. This likely explains why there was a significant improvement in xylose release in the presence of Rex8As. Here, it was shown that Rex8As are key enzymes in the efficient saccharification of hetero-xylan into xylose, a major component of lignocellulosic substrates.
机译:木糖是木质纤维素生物质中最丰富的半纤维素,需要聚集的木聚糖酶,以实现其完全的去聚合。随着全球利益使用含木质的木质纤维素原料进行生物燃料生产的增加,需要有关如何将这些原料有效地解解成可发酵糖的知识。由于已经观察到相同的酶[即来自不同GH家族的具有相同EC(酶委员会)分类的酶可以显示不同的底物特异性和性质,我们在木聚糖期间,单独评估GH10(XT6)和11(XYN2A)木聚糖酶性能,并组合。当Xyn2a载入的Xyn2A载入的Xyn2a载入量的Xychwood葡萄糖氧基(1.14倍改善)和小麦阿拉伯辛(1.1倍改善)降解时,Xyn2a载入Xyn2A时,观察到减少糖释放的协同增强。在此之后,用寡糖还原 - 末端木聚糖酶(REX8A)给予优化的木聚糖酶混合物,用于进一步协同增强。将75%的木聚糖酶混合物(XYN2A:XT6为75:25%),其中25%负载REX8A导致还原糖(高达1.1倍的改善)和木糖释放(高达1.5倍改善) );然而,这种效果是Xylan和Rex8a特异性。使用薄层色谱法,协同作用似乎是GH10和11的木聚糖酶解放的XYLO-低聚物,其是优选的加工REX8As的基板。然后将Rex8As水解的Xylo-Oligomers至木糖 - 和木糖糖,其是木质酶,SXA的优选基质。这可能解释了为什么REX8As存在下的木糖释放有显着改善。这里,显示REX8As是杂菌 - 木聚糖中的高糖化到木糖中的关键酶,木质纤维素基材的主要成分。

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