Instituto de Procesos Biotecnológicos y Químicos (IPROBYQ), Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario (UNR), CONICET, Suipacha 531, 2000, Rosario, Argentina.
Keclon S.A., Tucuman 7180, 2000, Rosario, Argentina.
World J Microbiol Biotechnol. 2018 Feb 21;34(3):40. doi: 10.1007/s11274-018-2423-x.
Extremophilic microorganisms are a rich source of enzymes, the enzymes which can serve as industrial catalysts that can withstand harsh processing conditions. An example is thermostable β-glucosidases that are addressing a challenging problem in the biodiesel industry: removing steryl glucosides (SGs) from biodiesel. Steryl glucosidases (SGases) must be tolerant to heat and solvents in order to function efficiently in biodiesel. The amphipathic nature of SGs also requires enzymes with an affinity for water/solvent interfaces in order to achieve efficient hydrolysis. Additionally, the development of an enzymatic process involving a commodity such as soybean biodiesel must be cost-effective, necessitating an efficient manufacturing process for SGases. This review summarizes the identification of microbial SGases and their applications, discusses biodiesel refining processes and the development of analytical methods for identifying and quantifying SGs in foods and biodiesel, and considers technologies for strain engineering and process optimization for the heterologous production of a SGase from Thermococcus litoralis. All of these technologies might be used for the production of other thermostable enzymes. Structural features of SGases and the feasibility of protein engineering for novel applications are explored.
极端微生物是酶的丰富来源,这些酶可用作工业催化剂,能够承受苛刻的加工条件。例如,耐热β-葡萄糖苷酶正在解决生物柴油行业的一个难题:从生物柴油中去除甾醇葡萄糖苷 (SGs)。甾醇葡萄糖苷酶 (SGases) 必须耐受热和溶剂,才能在生物柴油中有效地发挥作用。SGs 的两亲性还需要对水/溶剂界面具有亲和力的酶,才能实现有效的水解。此外,涉及商品如大豆生物柴油的酶促工艺的开发必须具有成本效益,这就需要对 SGases 进行高效的制造工艺。本文综述了微生物 SGases 的鉴定及其应用,讨论了生物柴油精炼工艺以及用于鉴定和定量食品和生物柴油中 SGs 的分析方法的发展,并考虑了用于从 Thermococcus litoralis 异源生产 SGase 的菌株工程和过程优化技术。所有这些技术都可用于生产其他耐热酶。本文还探讨了 SGases 的结构特征以及用于新型应用的蛋白质工程的可行性。