School of Chemical and Biological Engineering, Institute of Chemical Process, Seoul National University, Seoul, Republic of Korea.
Interdisciplinary Program in Bioengineering, Seoul National University, Seoul, Republic of Korea.
Protein Sci. 2023 Dec;32(12):e4839. doi: 10.1002/pro.4839.
G protein-coupled receptors (GPCRs) play crucial roles in sensory, immune, and tumor metastasis processes, making them valuable targets for pharmacological and sensing applications in various industries. However, most GPCRs have low production yields in Escherichia coli (E. coli) expression systems. To overcome this limitation, we introduced AT10 tag, an effective fusion tag that could significantly enhance expression levels of various GPCRs in E. coli and its derived cell-free protein synthesis (CFPS) system. This AT10 tag consisted of an A/T-rich gene sequence designed via optimization of translation initiation rate. It is translated into a short peptide sequence of 10 amino acids at the N-terminus of GPCRs. Additionally, effector proteins could be utilized to suppress cytotoxicity caused by membrane protein expression, further boosting GPCR production in E. coli. Enhanced expression of various GPCRs using this AT10 tag is a promising approach for large-scale production of functional GPCRs in E. coli-based CFPS and whole cell systems, enabling their potential utilization across a wide range of industrial applications.
G 蛋白偶联受体(GPCRs)在感觉、免疫和肿瘤转移过程中发挥着至关重要的作用,使其成为各种行业中药理学和传感应用的有价值的靶标。然而,大多数 GPCR 在大肠杆菌(E. coli)表达系统中的产量较低。为了克服这一限制,我们引入了 AT10 标签,这是一种有效的融合标签,可以显著提高各种 GPCR 在大肠杆菌及其衍生的无细胞蛋白合成(CFPS)系统中的表达水平。该 AT10 标签由一个 A/T 丰富的基因序列组成,该序列是通过优化翻译起始率设计的。它被翻译为 GPCR 氨基末端的 10 个氨基酸的短肽序列。此外,效应蛋白可用于抑制膜蛋白表达引起的细胞毒性,从而进一步提高大肠杆菌中 GPCR 的产量。使用这种 AT10 标签增强各种 GPCR 的表达是在基于大肠杆菌的 CFPS 和整个细胞系统中大规模生产功能性 GPCR 的有前途的方法,使其能够在广泛的工业应用中得到利用。