Dyer J M, Chapital D C, Kuan J W, Mullen R T, Pepperman A B
USDA-ARS Southern Regional Research Center, 1100 Robert E. Lee Blvd, New Orleans, LA 70124, USA.
Appl Microbiol Biotechnol. 2002 Jul;59(2-3):224-30. doi: 10.1007/s00253-002-0997-5. Epub 2002 Apr 25.
The yeast Saccharomyces cerevisiae has been modified successfully for production of numerous metabolites and therapeutic proteins through metabolic engineering, but has not been utilized to date for the production of lipid-derived compounds. We developed a lipid metabolic engineering strategy in S. cerevisiae based upon culturing techniques that are typically employed for studies of peroxisomal biogenesis; cells were grown in media containing fatty acids as a sole carbon source, which promotes peroxisomal proliferation and induction of enzymes associated with fatty acid beta-oxidation. Our results indicate that growth of yeast on fatty acids such as oleate results in extensive uptake of these fatty acids from the media and a subsequent increase in total cellular lipid content from 2% to 15% dry cell weight. We also show that co-expression of plant fatty acid desaturases 2 and 3 ( FAD2 and FAD3), using a fatty acid-inducible peroxisomal gene promoter, coupled the processes of fatty acid uptake with the induction of a new metabolic pathway leading from oleic acid (18:1) to linolenic acid (18:3). Finally, we show that cultivation of yeast cells in the presence of triacylglycerols and exogenously supplied lipase promotes extensive incorporation of triglyceride fatty acids into yeast cells. Collectively, these results provide a framework for bioconversion of low-cost oils into value-added lipid products.
酿酒酵母已通过代谢工程成功改造用于生产多种代谢物和治疗性蛋白质,但迄今为止尚未用于生产脂质衍生化合物。我们基于通常用于过氧化物酶体生物发生研究的培养技术,在酿酒酵母中开发了一种脂质代谢工程策略;细胞在含有脂肪酸作为唯一碳源的培养基中生长,这促进过氧化物酶体增殖并诱导与脂肪酸β-氧化相关的酶。我们的结果表明,酵母在油酸等脂肪酸上生长会导致从培养基中大量摄取这些脂肪酸,随后细胞总脂质含量从干细胞重量的2%增加到15%。我们还表明,使用脂肪酸诱导的过氧化物酶体基因启动子共表达植物脂肪酸去饱和酶2和3(FAD2和FAD3),将脂肪酸摄取过程与从油酸(18:1)到亚麻酸(18:3)的新代谢途径的诱导相结合。最后,我们表明在三酰甘油和外源供应的脂肪酶存在下培养酵母细胞可促进甘油三酯脂肪酸大量掺入酵母细胞。总的来说,这些结果为将低成本油生物转化为高附加值脂质产品提供了一个框架。