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Processivity and enzymatic mechanism of a multifunctional family 5 endoglucanase from Bacillus subtilis BS-5 with potential applications in the saccharification of cellulosic substrates

机译:来自枯草芽孢杆菌BS-5的多功能家庭5内葡聚糖酶的处理能力和酶机机制,纤维素基材糖化中的潜在应用

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摘要

Abstract Background Presently, enzymes still constitute a major part of the cost of biofuel production from lignocellulosic biomass. Processive endoglucanases, which possess both endoglucanase and exoglucanase activity, have the potential to reduce the costs of biomass saccharification when used together with commercial cellulases. Therefore, the exploration of new processive endoglucanases has attracted much attention with a view to accelerating the industrialization of biofuels and biochemicals. Results The endoglucanase EG5C and its truncated form EG5C-1 from Bacillus subtilis BS-5 were expressed and characterized. EG5C was a typical endoglucanase, comprised of a family 5 catalytic domain and family 3 carbohydrate-binding domain, and which had high activity toward soluble cellulosic substrates, but low activity toward insoluble cellulosic substrates. Importantly, the truncated form EG5C-1 was a processive endoglucanase that hydrolyzed not only carboxymethyl cellulose (CMC), but also insoluble cellulosic substrates. The hydrolytic activities of EG5C-1 towards CMC, phosphoric acid-swollen cellulose (PASC), p-nitrophenyl-β-d-cellobioside, filter paper and Avicel are 4170, 700, 2550, 405 and 320 U/μmol, respectively. These data demonstrated that EG5C-1 had higher activity ratio of exoglucanase to endoglucanase than other known processive endoglucanases. When PASC was degraded by EG5C-1, the ratio of soluble to insoluble reducing sugars was about 3.7 after 3 h of incubation with cellobiose and cellotriose as the main products. Importantly, EG5C-1 alone was able to hydrolyze filter paper and PASC. At 5% substrate concentration and 10 FPU/g PASC enzyme loading, the saccharification yield was 76.5% after 60 h of incubation. Replacement of a phenylalanine residue (F238) by an alanine at the entrance/exit of the substrate binding cleft significantly reduces the ability of EG5C-1 to degrade filter paper and Avicel, but this mutation has little impact on CMCase activity. The processivity of this mutant was also greatly reduced while its cellulose binding ability was markedly enhanced. Conclusions The processive endoglucanase EG5C-1 from B. subtilis BS-5 exhibits excellent properties that render it a suitable candidate for use in biofuel and biochemical production from lignocellulosic biomass. In addition, our studies also provide useful information for research on enzyme processivity at the molecular level.
机译:摘要背景目前,酶仍然构成了木质纤维素生物量生物燃料生产成本的主要部分。与商品纤维素酶一起使用时进行性内切葡聚糖酶,它同时具有内切葡聚糖酶和外切葡聚糖酶的活性,具有降低糖化过程的成本的潜力。因此,新的加工内葡聚糖酶的探索引起了很多关注,以加速生物燃料和生物化学的产业化。结果表达并表征了胚芽芽孢杆菌BS-5的内切葡聚糖酶EG5C及其截短的形式EG5C-1。 EG5C是典型的内切葡聚糖酶,其包含家庭5催化结构域和家族3碳水化合物结合结构域,并且对可溶性纤维素基材具有高活性,但对不溶性纤维素基材的活性低。重要的是,截短的形式EG5C-1是一种加工内葡聚糖酶,其不仅不仅水解羧甲基纤维素(CMC),而且还不溶于纤维素基材。 EG5C-1朝向CMC,磷酸 - 溶胀纤维素(PASC),P-硝基苯基-β-D-纤维酰胺,滤纸和Avicel的水解活性分别为4170,700,2550,405和320u /μmol。这些数据证明,EG5C-1具有比其他已知的加工内葡聚糖酶更高的外葡聚糖酶的活性比。当PASC通过EG5C-1降解时,在与纤维生物糖和Cellotriose温育3小时后,可溶性与不溶性还原糖的比例约为3.7,作为主要产物。重要的是,单独的EG5C-1能够水解滤纸和PASC。在孵育60小时后,在5%底物浓度和10fpu / g petcase酶负载下,糖化率为76.5%。在底物结合裂隙的入口/出口处通过丙氨酸替换苯丙氨酸残基(F238)显着降低了EG5C-1降解过滤纸和玻璃纤维的能力,但这种突变对CMCASE活性几乎没有影响。在显着提高其纤维素结合能力的同时,该突变体的处理率也大大降低。结论来自B.枯草芽孢杆菌BS-5的加工内葡聚糖酶EG5C-1表现出优异的性质,使其成为从木质纤维素生物量的生物燃料和生物化学生产中使用的合适候选者。此外,我们的研究还提供了有用的分子水平研究酶处理能力的有用信息。

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