Department of Biotechnology, College of Life Science and Technology, Huazhong University of Science and Technology, MOE Key Laboratory of Molecular Biophysics, Wuhan 430074, China.
Int J Mol Sci. 2022 Jun 6;23(11):6344. doi: 10.3390/ijms23116344.
Optogenetics has the advantages of a fast response time, reversibility, and high spatial and temporal resolution, which make it desirable in the metabolic engineering of chassis cells. In this study, a light-induced expression system of was constructed, which successfully achieved the synthesis and functional verification of Bleomycin resistance protein (BleoR). The core of the blue light-induced system, the light-responsive element (TF), is constructed based on the blue photosensitive protein EL222 and the transcription activator VP16. The results show that the light-induced sensor based on TF, upstream activation sequence (C120), and minimal promoter CYC can respond to blue light and initiate the expression of GFPMut3 report gene. With four copies of the responsive promoter and reporter gene assembled, they can produce a 128.5-fold higher fluorescent signal than that under dark conditions after 8 h of induction. The effects of light dose and periodicity on this system were investigated, which proved that the system has good spatial and temporal controllability. On this basis, the light-controlled system was used for the synthesis of BleoR to realize the expression and verification of functional protein. These results demonstrated that this system has the potential for the transcriptional regulation of target genes, construction of large-scale synthetic networks, and overproduction of the desired product.
光遗传学具有快速响应时间、可逆性和高时空分辨率等优点,使其成为底盘细胞代谢工程的理想选择。在本研究中,构建了一个光诱导表达系统,成功实现了博来霉素抗性蛋白(BleoR)的合成和功能验证。蓝光诱导系统的核心——光响应元件(TF),是基于蓝光光敏蛋白 EL222 和转录激活因子 VP16 构建的。结果表明,基于 TF、上游激活序列(C120)和最小启动子 CYC 的光诱导传感器可以响应蓝光并启动 GFPmut3 报告基因的表达。在诱导 8 h 后,带有四个响应启动子和报告基因的组装体可以产生比黑暗条件下高 128.5 倍的荧光信号。还研究了光剂量和周期性对该系统的影响,证明该系统具有良好的时空可控性。在此基础上,用光控系统合成 BleoR,实现功能蛋白的表达和验证。这些结果表明,该系统具有目标基因转录调控、大规模合成网络构建和所需产物过量生产的潜力。