Arens Julia, Bergs Dominik, Mewes Mirja, Merz Juliane, Schembecker Gerhard, Schulz Frank
Department for Chemistry and Biochemistry, Ruhr University Bochum , 44780 Bochum , Germany.
Department of Biochemical and Chemical Engineering, TU Dortmund University , 44227 Dortmund , Germany.
Mycology. 2014 Jul 3;5(3):207-219. doi: 10.1080/21501203.2014.917735. Epub 2014 May 28.
A variety of different applications render terpenes and terpenoids attractive research targets. A promising but so far insufficiently explored family of terpenoids are the fusicoccanes that comprise a characteristic 5-8-5 fused tricyclic ring system. Besides herbicidal effects, these compounds also show apoptotic and anti-tumour effects on mammalian cells. The access to fusicoccanes from natural sources is scarce. Recently, we introduced a metabolically engineered strain to enable the heterologous fermentation of the shared fusicoccane-diterpenoid precursor, fusicocca-2,10(14)-diene. Here, we show experiments towards the identification of bottlenecks in this process. The suppression of biosynthetic by-products via medium optimisation was found to be an important aspect. In addition, the fermentation process seems to be improved under oxygen limitation conditions. Under fed-batch conditions, the fermentation yield was reproducibly increased to approximately 20 mg/L. Furthermore, the impact of the properties of the terpene synthase on the fermentation yield is discussed, and the preliminary studies on the engineering of this key enzyme are presented.
多种不同的应用使萜类化合物和类萜成为有吸引力的研究目标。一类有前景但迄今为止研究尚不充分的类萜是壳梭孢烷类化合物,它们具有特征性的5-8-5稠合三环体系。除了除草作用外,这些化合物对哺乳动物细胞还表现出凋亡和抗肿瘤作用。从天然来源获取壳梭孢烷类化合物很困难。最近,我们引入了一种经过代谢工程改造的菌株,以实现共同的壳梭孢烷-二萜前体——壳梭孢-2,10(14)-二烯的异源发酵。在此,我们展示了旨在识别该过程中瓶颈的实验。通过培养基优化抑制生物合成副产物被发现是一个重要方面。此外,在限氧条件下发酵过程似乎有所改善。在补料分批培养条件下,发酵产量可重复提高到约20mg/L。此外,还讨论了萜烯合酶的性质对发酵产量的影响,并介绍了对这一关键酶进行工程改造的初步研究。