Julsing Mattijs K, Koulman Albert, Woerdenbag Herman J, Quax Wim J, Kayser Oliver
Department of Pharmaceutical Biology, University of Groningen, Antonius Deusinglaan 1, 9713 AV Groningen, The Netherlands.
Biomol Eng. 2006 Dec;23(6):265-79. doi: 10.1016/j.bioeng.2006.08.001. Epub 2006 Aug 22.
Combinatorial biosynthesis is a new tool in the generation of novel natural products and for the production of rare and expensive natural products. The basic concept is combining metabolic pathways in different organisms on a genetic level. As a consequence heterologous organisms provide precursors from their own primary and secondary metabolism that are metabolised to the desired secondary product due to the expression of foreign genes. In this review we discuss the possibilities and limitations of combining genes from different organisms and the expression of heterologous genes. Major focuses are fundamentals of the genetic work, used expression systems and latest progress in this field. Combinatorial biosynthesis is discussed for important classes of natural products, including alkaloids (vinblastine, vincristine), terpenoids (artemisinin, paclitaxel) and flavonoids. The role and importance of today's used host organisms is critically described, and the latest approaches discussed to give an outlook for future trends and possibilities.
组合生物合成是生成新型天然产物以及生产稀有且昂贵天然产物的一种新工具。其基本概念是在基因层面上组合不同生物体中的代谢途径。因此,异源生物体提供来自其自身初级和次级代谢的前体,由于外源基因的表达,这些前体被代谢为所需的次级产物。在本综述中,我们讨论了组合来自不同生物体的基因以及异源基因表达的可能性和局限性。主要重点是基因工程的基本原理、所使用的表达系统以及该领域的最新进展。针对重要类别的天然产物,包括生物碱(长春碱、长春新碱)、萜类化合物(青蒿素、紫杉醇)和黄酮类化合物,对组合生物合成进行了讨论。批判性地描述了当今所使用宿主生物体的作用和重要性,并讨论了最新方法,以展望未来的趋势和可能性。