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Discovery and characterization of a thermostable two-domain GH6 endoglucanase from a compost metagenome

机译:从堆肥基因组中发现热稳定的两结构域GH6内切葡聚糖酶并进行表征

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摘要

Enzymatic depolymerization of recalcitrant polysaccharides plays a key role in accessing the renewable energy stored within lignocellulosic biomass, and natural biodiversities may be explored to discover microbial enzymes that have evolved to conquer this task in various environments. Here, a metagenome from a thermophilic microbial community was mined to yield a novel, thermostable cellulase, named mgCel6A, with activity on an industrial cellulosic substrate (sulfite-pulped Norway spruce) and a glucomannanase side activity. The enzyme consists of a glycoside hydrolase family 6 catalytic domain (GH6) and a family 2 carbohydrate binding module (CBM2) that are connected by a linker rich in prolines and threonines. MgCel6A exhibited maximum activity at 85°C and pH 5.0 on carboxymethyl cellulose (CMC), but in prolonged incubations with the industrial substrate, the highest yields were obtained at 60°C, pH 6.0. Differential scanning calorimetry (DSC) indicated a Tm(app) of 76°C. Both functional data and the crystal structure, solved at 1.88 Å resolution, indicate that mgCel6A is an endoglucanase. Comparative studies with a truncated variant of the enzyme showed that the CBM increases substrate binding, while not affecting thermal stability. Importantly, at higher substrate concentrations the full-length enzyme was outperformed by the catalytic domain alone, underpinning previous suggestions that CBMs may be less useful in high-consistency bioprocessing.
机译:顽固性多糖的酶解聚在获取木质纤维素生物质中存储的可再生能源方面起着关键作用,并且可以探索自然生物多样性以发现已发展为在各种环境中征服此任务的微生物酶。在这里,从嗜热微生物群落中提取了一个基因组,产生了一种新型的,热稳定的纤维素酶,名为mgCel6A,对工业纤维素底物具有活性(亚硫酸盐制的挪威云杉),并且具有葡甘露聚糖酶的活性。该酶由糖苷水解酶家族6催化域(GH6)和家族2碳水化合物结合模块(CBM2)组成,它们通过富含脯氨酸和苏氨酸的接头连接。 MgCel6A在85°C和pH 5.0的条件下对羧甲基纤维素(CMC)表现出最大活性,但在与工业底物的长时间孵育中,在60°C,pH 6.0的条件下可获得最高的收率。差示扫描量热法(DSC)表明Tm(app)为76℃。功能数据和以1.88Å分辨率解析的晶体结构均表明mgCel6A是一种内切葡聚糖酶。用酶截短的变体进行的比较研究表明,CBM可增加底物结合,同时不影响热稳定性。重要的是,在较高的底物浓度下,全长酶仅靠催化结构域的表现要好,这支持了以前的建议,即煤层气在高浓度生物处理中可能不太有用。

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