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Development and Biotechnological Application of a Novel Endoxylanase Family GH10 Identified from Sugarcane Soil Metagenome

机译:甘蔗土壤基因组鉴定新型内切木聚糖酶家族GH10的开发及生物技术应用

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摘要

Metagenomics has been widely employed for discovery of new enzymes and pathways to conversion of lignocellulosic biomass to fuels and chemicals. In this context, the present study reports the isolation, recombinant expression, biochemical and structural characterization of a novel endoxylanase family GH10 (SCXyl) identified from sugarcane soil metagenome. The recombinant SCXyl was highly active against xylan from beechwood and showed optimal enzyme activity at pH 6,0 and 45°C. The crystal structure was solved at 2.75 Å resolution, revealing the classical (β/α)8-barrel fold with a conserved active-site pocket and an inherent flexibility of the Trp281-Arg291 loop that can adopt distinct conformational states depending on substrate binding. The capillary electrophoresis analysis of degradation products evidenced that the enzyme displays unusual capacity to degrade small xylooligosaccharides, such as xylotriose, which is consistent to the hydrophobic contacts at the +1 subsite and low-binding energies of subsites that are distant from the site of hydrolysis. The main reaction products from xylan polymers and phosphoric acid-pretreated sugarcane bagasse (PASB) were xylooligosaccharides, but, after a longer incubation time, xylobiose and xylose were also formed. Moreover, the use of SCXyl as pre-treatment step of PASB, prior to the addition of commercial cellulolytic cocktail, significantly enhanced the saccharification process. All these characteristics demonstrate the advantageous application of this enzyme in several biotechnological processes in food and feed industry and also in the enzymatic pretreatment of biomass for feedstock and ethanol production.
机译:元基因组学已被广泛用于发现新的酶和将木质纤维素生物质转化为燃料和化学品的途径。在这种情况下,本研究报告了从甘蔗土壤基因组中鉴定的新型内切木聚糖酶家族GH10(SCXyl)的分离,重组表达,生化和结构表征。重组SCXyl对山毛榉木中的木聚糖具有很高的活性,并在pH 6,0和45°C下表现出最佳的酶活性。晶体结构以2.75Å的分辨率解析,揭示了经典的(β/α)8-桶形折叠,带有保守的活性位点口袋,以及Trp281-Arg291环的固有柔性,可以根据底物结合采用不同的构象态。降解产物的毛细管电泳分析表明,该酶显示出异常的降解小木寡糖(如木三糖)的能力,这与+1个亚位点的疏水接触以及远离水解位点的亚位点的低结合能一致。木聚糖聚合物和磷酸预处理的甘蔗渣(PASB)的主要反应产物是木寡糖,但经过较长的孵育时间,也形成了木糖和木糖。此外,在添加商业纤维素分解混合物之前,SCXyl作为PASB的预处理步骤的使用显着增强了糖化过程。所有这些特征证明了该酶在食品和饲料工业的若干生物技术过程中以及在生物质用于原料和乙醇生产的酶法预处理中的有利应用。

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