State Key Laboratory of Food Science and Technology, Jiangnan University, 1800 Lihu Avenue, Wuxi, 214122, China.
International Joint Laboratory On Food Safety, Jiangnan University, Wuxi, 214122, China.
Microb Cell Fact. 2021 Mar 20;20(1):73. doi: 10.1186/s12934-021-01565-8.
Escherichia coli is generally used as model bacteria to define microbial cell factories for many products and to investigate regulation mechanisms. E. coli exhibits phospholipids, lipopolysaccharides, colanic acid, flagella and type I fimbriae on the outer membrane which is a self-protective barrier and closely related to cellular morphology, growth, phenotypes and stress adaptation. However, these outer membrane associated molecules could also lead to potential contamination and insecurity for fermentation products and consume lots of nutrients and energy sources. Therefore, understanding critical insights of these membrane associated molecules is necessary for building better microbial producers. Here the biosynthesis, function, influences, and current membrane engineering applications of these outer membrane associated molecules were reviewed from the perspective of synthetic biology, and the potential and effective engineering strategies on the outer membrane to improve fermentation features for microbial cell factories were suggested.
大肠杆菌通常被用作模型细菌,用于定义许多产品的微生物细胞工厂,并研究调控机制。大肠杆菌在外膜上展示磷脂、脂多糖、菌毛酸、鞭毛和 I 型菌毛,这是一种自我保护的屏障,与细胞形态、生长、表型和应激适应密切相关。然而,这些与外膜相关的分子也可能导致发酵产物的潜在污染和不安全,并消耗大量的营养物质和能源。因此,了解这些膜相关分子的关键见解对于构建更好的微生物生产者是必要的。在这里,从合成生物学的角度综述了这些与外膜相关的分子的生物合成、功能、影响和当前的膜工程应用,并提出了在外膜上提高微生物细胞工厂发酵特性的潜在和有效工程策略。