添加辅助酶可提高纤维素酶在高固体负荷下的水解性能。

The addition of accessory enzymes enhances the hydrolytic performance of cellulase enzymes at high solid loadings.

机构信息

Forest Products Biotechnology and Bioenergy Group, University of British Columbia, Vancouver, BC, Canada.

Forest Products Biotechnology and Bioenergy Group, University of British Columbia, Vancouver, BC, Canada.

出版信息

Bioresour Technol. 2015 Jun;186:149-153. doi: 10.1016/j.biortech.2015.03.055. Epub 2015 Mar 17.

Abstract

The pretreatment process used and the nature of the biomass feedstock will influence the role that accessory enzymes can play in synergistically interacting with cellulases to effectively deconstruct the substrate. The work reported here assessed the possible boosting effects of the xylanase and lytic polysaccharide monooxygenase (AA9, formerly known as GH61) on the hydrolytic potential of cellulase enzyme mixtures during hydrolysis of steam pretreated poplar and corn stover at high (10-20% w/v) substrate concentrations. A higher proportion of xylanase was required when the substrate had a relatively high xylan content and at high substrate concentrations. In contrast, a relatively small amount of AA9 (about 2 mg/g cellulose) was enough, regardless of the nature or concentration of the substrate. The overall protein loading required to achieve effective hydrolysis of high concentrations of pretreated biomass substrates could be substantially reduced by optimizing the ratio of enzymes in the "cellulase" mixture.

摘要

预处理过程中使用的方法和生物质原料的性质将影响辅助酶在与纤维素酶协同作用以有效解构底物方面的作用。本研究评估了木聚糖酶和裂解多糖单加氧酶(AA9,以前称为 GH61)对在高浓度(10-20%w/v)底物下,蒸汽预处理杨木和玉米秸秆水解过程中纤维素酶混合物水解潜力的可能促进作用。当底物中含有相对较高的木聚糖时,以及在高底物浓度下,需要更多的木聚糖酶。相比之下,无论底物的性质或浓度如何,相对少量的 AA9(约 2mg/g 纤维素)就足够了。通过优化“纤维素酶”混合物中酶的比例,可以大大降低实现高浓度预处理生物质底物有效水解所需的总蛋白负荷。

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