Austrian Centre of Industrial Biotechnology, Petersgasse 14, 8010 Graz, Austria.
Institute of Molecular Biotechnology, Graz University of Technology, NAWI Graz, BioTechMed Graz, Petersgasse 14, 8010 Graz, Austria.
Molecules. 2019 Jun 1;24(11):2092. doi: 10.3390/molecules24112092.
Acyclic monoterpenes constitute a large and highly abundant class of secondary plant metabolites and are, therefore, attractive low-cost raw materials for the chemical industry. To date, numerous biocatalysts for their transformation are known, giving access to highly sought-after monoterpenoids. In view of the high selectivity associated with many of these reactions, the demand for enzymes generating commercially important target molecules is unabated. Here, linalool (de)hydratase-isomerase (Ldi, EC 4.2.1.127) from was examined for the regio- and stereoselective hydration of the acyclic monoterpene β-myrcene to ()-(+)-linalool. Expression of the native enzyme in allowed for identification of bottlenecks limiting enzyme activity, which were investigated by mutating selected residues implied in enzyme assembly and function. Combining these analyses with the recently published 3D structures of Ldi highlighted the precisely coordinated reduction-oxidation state of two cysteine pairs in correct oligomeric assembly and the catalytic mechanism, respectively. Subcellular targeting studies upon fusion of Ldi to different signal sequences revealed the significance of periplasmic localization of the mature enzyme in the heterologous expression host. This study provides biochemical and mechanistic insight into the hydration of β-myrcene, a nonfunctionalized terpene, and emphasizes its potential for access to scarcely available but commercially interesting tertiary alcohols.
无环单萜是一类庞大且含量丰富的次生植物代谢物,因此是具有吸引力的低成本化工原料。迄今为止,已经有许多用于其转化的生物催化剂,可获得备受追捧的单萜类化合物。鉴于许多此类反应具有很高的选择性,对生成具有商业重要性目标分子的酶的需求仍然很高。在这里,研究了来自 的非环单萜烯 β-月桂烯的立体和区域选择性水合的 linalool (de)hydratase-isomerase (Ldi,EC 4.2.1.127)。在 中表达天然酶,可鉴定限制酶活性的瓶颈,通过突变参与酶组装和功能的选定残基来研究这些瓶颈。将这些分析与最近发表的 Ldi 的 3D 结构相结合,分别突出了正确寡聚组装和催化机制中两对半胱氨酸的精确协调的氧化还原状态。Ldi 与不同信号序列融合的亚细胞靶向研究揭示了成熟酶在异源表达宿主中周质定位的重要性。这项研究提供了关于非官能化萜烯 β-月桂烯水合的生化和机制见解,并强调了其获得稀缺但具有商业吸引力的叔醇的潜力。