Bao Shao-Heng, Jiang Hui, Zhu Ling-Yun, Yao Ge, Han Peng-Gang, Wan Xiu-Kun, Wang Kang, Song Tian-Yu, Liu Chang-Jun, Wang Shan, Zhang Zhe-Yang, Zhang Dong-Yi, Meng Er
State Key Laboratory of NBC Protection for Civilian, Beijing, PRC.
College of Arts and Sciences, National University of Defense Technology, Changsha, PRC.
Cell Rep. 2021 Jul 20;36(3):109413. doi: 10.1016/j.celrep.2021.109413.
Metabolic regulation strategies have been developed to redirect metabolic fluxes to production pathways. However, it is difficult to screen out target genes that, when repressed, improve yield without affecting cell growth. Here, we report a strategy using a quorum-sensing system to control small RNA transcription, allowing cell-density-dependent repression of target genes. This strategy is shown with convenient operation, dynamic repression, and availability for simultaneous regulation of multiple genes. The parameters A, A, and R (3-oxohexanoyl-homoserine lactone [AHL] concentrations at which half of the maximum repression and the maximum repression were reached and value of the maximum repression when AHL was added manually, respectively) are defined and introduced to characterize repression curves, and the variant LuxR is identified as the most suitable tuning factor for shake flask culture. Moreover, it is shown that dynamic overexpression of the Hfq chaperone is the key to combinatorial repression without disruptions on cell growth. To show a broad applicability, the production titers of pinene, pentalenene, and psilocybin are improved by 365.3%, 79.5%, and 302.9%, respectively, by applying combinatorial dynamic repression.
已经开发出代谢调控策略来将代谢流重定向到生产途径。然而,很难筛选出那些在被抑制时能提高产量而不影响细胞生长的靶基因。在此,我们报告一种使用群体感应系统来控制小RNA转录的策略,从而实现对靶基因的细胞密度依赖性抑制。该策略具有操作简便、动态抑制以及可同时调控多个基因的特点。定义并引入参数A、A和R(分别为达到最大抑制的一半和最大抑制时的3-氧代己酰高丝氨酸内酯[AHL]浓度以及手动添加AHL时的最大抑制值)来表征抑制曲线,并鉴定出变体LuxR是摇瓶培养中最合适的调控因子。此外,研究表明Hfq伴侣蛋白的动态过表达是组合抑制且不干扰细胞生长的关键。为了展示广泛的适用性,通过应用组合动态抑制,蒎烯、戊烯和裸盖菇素的产量分别提高了365.3%、79.5%和302.9%。