Austrian Centre of Industrial Biotechnology, Graz, Austria.
NAWI Graz, BioTechMed Graz, Institute of Molecular Biotechnology, Graz University of Technology, Graz, Austria.
Yeast. 2020 Jan;37(1):163-172. doi: 10.1002/yea.3444. Epub 2019 Oct 27.
The triterpenoid (+)-ambrein is the major component of ambergris, a coprolite of the sperm whale that can only be rarely found on shores. Upon oxidative degradation of (+)-ambrein, several fragrance molecules are formed, amongst them (-)-ambrox, one of the highest valued compounds in the perfume industry. In order to generate a Saccharomyces cerevisiae whole-cell biocatalyst for the production of (+)-ambrein, intracellular supply of the squalene was enhanced by overexpression of two central enzymes in the mevalonate and sterol biosynthesis pathway, namely the N-terminally truncated 3-hydroxy-3-methylglutaryl-CoA reductase 1 (tHMG) and the squalene synthase (ERG9). In addition, another key enzyme in sterol biosynthesis, squalene epoxidase (ERG1) was inhibited by an experimentally defined amount of the inhibitor terbinafine in order to reduce flux of squalene towards ergosterol biosynthesis while retaining sufficient activity to maintain cell viability and growth. Heterologous expression of a promiscuous variant of Bacillus megaterium tetraprenyl-β-curcumene cyclase (BmeTC-D373C), which has been shown to be able to catalyse the conversion of squalene to 3-deoxyachillol and then further to (+)-ambrein resulted in production of these triterpenoids in S. cerevisiae for the first time. Triterpenoid yields are comparable with the best microbial production chassis described in literature so far, the methylotrophic yeast Pichia pastoris. Consequently, we discuss similarities and differences of these two yeast species when applied for whole-cell (+)-ambrein production.
(+)-ambrein 是龙涎香的主要成分,龙涎香是抹香鲸的粪化石,只能在海岸上罕见地发现。(+)-ambrein 氧化降解后,会形成几种香料分子,其中包括(-)-ambrox,这是香料行业最有价值的化合物之一。为了生成用于(+)-ambrein 生产的酿酒酵母全细胞生物催化剂,通过过量表达甲羟戊酸和甾醇生物合成途径中的两个关键酶,即 N 端截断的 3-羟-3-甲基戊二酰辅酶 A 还原酶 1(tHMG)和鲨烯合酶(ERG9),增强了细胞内鲨烯的供应。此外,通过实验确定的抑制剂特比萘芬抑制甾醇生物合成中的另一个关键酶鲨烯环氧化酶(ERG1),以减少鲨烯向麦角固醇生物合成的通量,同时保持足够的活性以维持细胞活力和生长。异源表达已显示能够催化鲨烯转化为 3-脱氧阿齐醇,然后进一步转化为(+)-ambrein 的巨大芽孢杆菌四萜烯-β-姜黄素环化酶(BmeTC-D373C)的混杂变体,导致这些三萜类化合物首次在酿酒酵母中产生。三萜类化合物的产量与迄今为止文献中描述的最佳微生物生产底盘,甲基营养酵母巴斯德毕赤酵母相当。因此,我们讨论了当应用于全细胞(+)-ambrein 生产时,这两个酵母物种的相似之处和不同之处。