Chair of Chemistry of Biogenic Resources, Technical University of Munich, 94315 Straubing, Germany.
Curr Opin Biotechnol. 2018 Oct;53:130-136. doi: 10.1016/j.copbio.2018.01.005. Epub 2018 Feb 3.
The distinct biosynthesis pathways for microbial exopolysaccharide production provide different engineering strategies to tailor the chemical structures of the final polymers. This review focuses on the latest insights in the various pathways and identifies bottlenecks as well as promising targets for tailoring microbial polysaccharide production. The main engineering strategies includes the combinatorial assembly of glycosyltransferases and engineering of the Wzx and Wzy proteins for flipping of repeating units as well as polymerization. In the case of synthase based polysaccharides, the use of epimerases or engineering approaches of the synthase itself as well as overexpression of c-di-GMP levels is identified as one of the most promising strategies. For sucrase-based biosynthesis, the in vitro production by engineered sucrase enzymes or adjusted production conditions is shown as a very promising method.
微生物胞外多糖的独特生物合成途径为调整最终聚合物的化学结构提供了不同的工程策略。本综述重点介绍了各种途径的最新研究进展,并确定了调整微生物多糖生产的瓶颈和有前景的目标。主要的工程策略包括糖基转移酶的组合组装以及 Wzx 和 Wzy 蛋白的工程改造,以翻转重复单元并进行聚合。对于基于合酶的多糖,使用差向异构酶或合酶本身的工程改造方法以及 c-di-GMP 水平的过表达被确定为最有前途的策略之一。对于基于蔗糖酶的生物合成,通过工程蔗糖酶的体外生产或调整生产条件显示出一种很有前途的方法。