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Xylanase (GH11) from Acremonium cellulolyticus: homologous expression and characterization

机译:纤维素解球菌木聚糖酶(GH11):同源表达和表征

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摘要

Cellulosic materials constitute most of the biomass on earth, and can be converted into biofuel or bio-based materials if fermentable sugars can be released using cellulose-related enzymes. Acremonium cellulolyticus is a mesophilic fungus which produces a high amount of cellulose-related enzymes. In the genome sequence data of A. cellulolyticus, ORFs showing homology to GH10 and GH11 xylanases were found. The xylanases of A. cellulolyticus play an important role in cellulolytic biomass degradation. Search of a draft genome sequence of A. cellulolyticus for xylanase coding regions identified seven ORFs showing homology to GH 11 xylanase genes (xylA, xylB, xylC, xylD, xylE, xylF and xylG). These genes were cloned and their enzymes were prepared with a homologous expression system under the control of a glucoamylase promoter. Six of the seven recombinant enzymes were successfully expressed, prepared, and characterized. These enzymes exhibited optimal xylanase activity at pH 4.0 – 4.5. But this time, we found that only XylC had enormously higher relative activity (2947 U•mg −1) than the other xylanases at optimum pH. This result is surprising because XylC does not retain a carbohydrate-binding module 1 (CBM-1) that is necessary to bind tightly own substrate such as xylan. In this study, we discuss the relationship between activity, pH and sequence of seven xylanases in A. cellulolyticus.
机译:纤维素材料构成了地球上大部分的生物质,如果可以使用纤维素相关的酶释放可发酵的糖,则可以将其转换为生物燃料或生物基材料。顶头纤维素酶是一种中温真菌,会产生大量纤维素相关的酶。在溶纤曲霉的基因组序列数据中,发现了显示与GH10和GH11木聚糖酶同源的ORF。纤维素分解曲霉的木聚糖酶在纤维素分解生物质降解中起重要作用。搜索解纤维素曲霉的基因组序列草稿中的木聚糖酶编码区,鉴定出七个显示与GH 11木聚糖酶基因(xylA,xylB,xylC,xylD,xylE,xylF和xylG)同源的ORF。克隆这些基因,并在葡糖淀粉酶启动子的控制下用同源表达系统制备其酶。七个重组酶中的六个已成功表达,制备和鉴定。这些酶在pH 4.0 – 4.5时表现出最佳的木聚糖酶活性。但是这一次,我们发现在最佳pH值下,只有XylC的相对活性(2947 U•mg -1 )比其他木聚糖酶高得多。该结果是令人惊讶的,因为XylC没有保留碳水化合物结合模块1(CBM-1),而碳水化合物结合模块1是紧密结合自己的底物如木聚糖所必需的。在这项研究中,我们讨论了纤维素酶中七种木聚糖酶的活性,pH和序列之间的关系。

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