Novozymes Inc., 1445 Drew Ave, Davis, CA 95618, United States.
Novozymes Inc., 1445 Drew Ave, Davis, CA 95618, United States.
Curr Opin Chem Biol. 2014 Apr;19:162-70. doi: 10.1016/j.cbpa.2014.02.015. Epub 2014 Mar 25.
Innovations at a small scale through enzyme discovery in the laboratory can have large scale impacts when rolled out in an industrial process, and this is evidenced in recent advances for commercial ethanol production. In the starch to ethanol processes, new enzyme product launches squeeze even more value from an already efficient process, as evidenced in new use of proteases for oil release and cellulases for downstream processing and ethanol yield. As for biomass to ethanol, diverse new thermophilic enzymes, expansins and auxiliary activity (AA) collections are growing rapidly. Our mechanistic understanding of the functions of AA family 9, cellulose binding modules, and cellulase/xylanase synergy will lead to continued improvements in overall enzymatic conversion, thus reducing cost for cellulosic ethanol (or other biofuel) production.
通过实验室中的酶发现进行小规模创新,当在工业过程中推广时,可以产生巨大的影响,这在最近商业化乙醇生产的进展中得到了证明。在淀粉到乙醇的过程中,新型酶产品的推出进一步提高了已经高效的工艺的价值,这在蛋白酶用于释放油脂和纤维素酶用于下游加工和乙醇产量方面得到了证明。至于从生物质到乙醇,各种新型嗜热酶、扩展蛋白和辅助活性 (AA) 集合正在迅速发展。我们对 AA 家族 9、纤维素结合模块和纤维素酶/木聚糖酶协同作用的功能的机制理解将导致整体酶转化的持续改进,从而降低纤维素乙醇(或其他生物燃料)生产的成本。