Hughes Stephen R, Moser Bryan R, Harmsen Amanda J, Bischoff Kenneth M, Jones Marjorie A, Pinkelman Rebecca, Bang Sookie S, Tasaki Ken, Doll Kenneth M, Qureshi Nasib, Saha Badal C, Liu Siqing, Jackson John S, Robinson Samantha, Cotta Michael C, Rich Joseph O, Caimi Paolo
Renewable Product Technology Research Unit, United States Department of Agriculture (USDA), Agricultural Research Service (ARS), National Center for Agricultural Utilization Research (NCAUR), Peoria, IL 61604, USA.
J Lab Autom. 2011 Feb;16(1):17-37. doi: 10.1016/j.jala.2010.04.002. Epub 2010 Jul 21.
A synthetic Candida antarctica lipase B (CALB) gene open reading frame (ORF) for expression in yeast was constructed, and the lycotoxin-1 (Lyt-1) C3 variant gene ORF, potentially to improve the availability of the active enzyme at the surface of the yeast cell, was added in frame with the CALB ORF using an automated PCR assembly and DNA purification protocol on an integrated robotic workcell. Saccharomyces cerevisiae strains expressing CALB protein or CALB Lyt-1 fusion protein were first grown on 2% (w/v) glucose, producing 9.3 g/L ethanol during fermentation. The carbon source was switched to galactose for GAL1-driven expression, and the CALB and CALB Lyt-1 enzymes expressed were tested for fatty acid ethyl ester (biodiesel) production. The synthetic enzymes catalyzed the formation of fatty acid ethyl esters from ethanol and either corn or soybean oil. It was further demonstrated that a one-step-charging resin, specifically selected for binding to lipase, was capable of covalent attachment of the CALB Lyt-1 enzyme, and that the resin-bound enzyme catalyzed the production of biodiesel. High-level expression of lipase in an ethanologenic yeast strain has the potential to increase the profitability of an integrated biorefinery by combining bioethanol production with coproduction of a low-cost biocatalyst that converts corn oil to biodiesel.
构建了一个用于在酵母中表达的合成南极假丝酵母脂肪酶B(CALB)基因开放阅读框(ORF),并使用集成机器人工作单元上的自动PCR组装和DNA纯化方案,将可能提高活性酶在酵母细胞表面可用性的lycotoxin-1(Lyt-1)C3变体基因ORF与CALB ORF进行框内添加。表达CALB蛋白或CALB Lyt-1融合蛋白的酿酒酵母菌株首先在2%(w/v)葡萄糖上生长,发酵过程中产生9.3 g/L乙醇。将碳源切换为半乳糖以进行GAL1驱动的表达,并对表达的CALB和CALB Lyt-1酶进行脂肪酸乙酯(生物柴油)生产测试。合成酶催化由乙醇和玉米油或大豆油形成脂肪酸乙酯。进一步证明,一种专门选择用于结合脂肪酶的一步装料树脂能够共价连接CALB Lyt-1酶,并且树脂结合的酶催化生物柴油的生产。在产乙醇酵母菌株中高水平表达脂肪酶有可能通过将生物乙醇生产与将玉米油转化为生物柴油的低成本生物催化剂的联产相结合,提高综合生物精炼厂的盈利能力。