Chen Le, Du Ji-Liang, Zhan Yong-Jia, Li Jian-An, Zuo Ran-Ran, Tian Shen
a College of Life Science , Capital Normal University , Beijing , China.
Prep Biochem Biotechnol. 2018;48(7):653-661. doi: 10.1080/10826068.2018.1487846. Epub 2018 Jul 11.
Consolidated bioprocessing (CBP) strategy was developed to construct a cell-surface displayed consortium for heterologously expressing functional lignocellulytic enzymes. The reaction system composed of two engineered yeast strains: Y5/XynII-XylA (co-displaying two types of xylanases) and Y5/EG-CBH-BGL (co-displaying three types of cellulases). The immobilization of recombinant fusion proteins and their cell-surface accessibility of were analyzed by flow cytometry and immunofluorescence. The feasibility of consolidated bioprocessing by using pretreated corn stover (CS) as substrate for direct bioconversion was further investigated, and the synergistic activity and proximity effect between cellulases and xylanases on lignocelluloses degradation were also discussed in this work. Without any commercial enzyme addition, the combined yeast consortium produced 1.61 g/L ethanol which achieved 64.7% of the theoretical ethanol yield during 144 h from steam-exploded CS. The results indicated that the assembly of cellulases and xylanases using a synthetic consortium capable of combined displaying lignocellulytic enzymes is a promising approach for simultaneous saccharification and fermentation to ethanol from lignocellulosic biomass.
整合生物加工(CBP)策略旨在构建一个用于异源表达功能性木质纤维素酶的细胞表面展示联合体。该反应系统由两种工程酵母菌株组成:Y5/XynII-XylA(共展示两种木聚糖酶)和Y5/EG-CBH-BGL(共展示三种纤维素酶)。通过流式细胞术和免疫荧光分析重组融合蛋白的固定化及其细胞表面可及性。进一步研究了以预处理玉米秸秆(CS)为底物进行直接生物转化的整合生物加工的可行性,并探讨了纤维素酶和木聚糖酶在木质纤维素降解方面的协同活性和邻近效应。在不添加任何商业酶的情况下,联合酵母联合体在144小时内从蒸汽爆破的CS中产生了1.61 g/L乙醇,达到了理论乙醇产量的64.7%。结果表明,使用能够联合展示木质纤维素酶的合成联合体组装纤维素酶和木聚糖酶是从木质纤维素生物质中同步糖化发酵生产乙醇的一种有前景的方法。