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Construction and Optimization of a BgaR-Based Lactose Biosensor for High-Throughput Selection of Human Milk
Junzhong Li1, Tingyu He1, Shaodong Ren1
1Key Laboratory of Industrial Fermentation Microbiology of the Ministry of Education, Tianjin Key Laboratory of Industrial Microbiology, College of Biotechnology, Tianjin University of Science and Technology, National Engineering Laboratory for Industrial Enzymes, Tianjin 300457, P. R. China.
Abstract:
Biosensors are crucial for high-throughput screening (HTS) of metabolite overproducers, but human milk oligosaccharide (HMO) biosensors are rarely reported. The concentrations of HMOs were evaluated by detecting the residual lactose, since lactose served as a universal substrate. In this study, a lactose biosensor was developed using the lactose-sensing transcription factor BgaR, correlating lactose concentration with strain growth. The biosensor was optimized, expanding the detection and dynamic ranges from 5-10 g/L and 1.47-fold to 0-12 g/L and 5.19-fold, respectively. To convert growth coupling with lactose to that with HMOs, LacI was introduced. LacI expression was controlled by BgaR and fine-tuned to optimize the biosensor. Lacto-N-triose II and 2'-fucosyllactose (2'-FL) overproducers were obtained through HTS. A secYT1124C mutation was identified as a new mechanism for high production of 2'-FL, which reached 78.21 ± 2.10 g/L. This study provided an approach to construct and optimize universal biosensors for HMOs and is beneficial for developing HMO overproducers.
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