Takayama Hidehito, Sugio Shigetoshi
R&D Strategy Department, Corporate Strategy Division, Mitsubishi Chemical Corporation, Yokohama, Japan.
Protein Expr Purif. 2011 Apr;76(2):211-20. doi: 10.1016/j.pep.2010.11.015. Epub 2010 Dec 1.
The serotonin transporter (SERT), a member of the solute carrier 6 family, is responsible for reuptake of the monoamine neurotransmitter serotonin (5-hydroxytryptamine) from the synaptic cleft on the neural cells, and a vital target for several antidepressants. To investigate biophysical studies of this pharmacologically relevant transporter, we developed a mammalian expression system with tetracycline-inducible HEK293 cells using synthetic human SERT genes produced by PCR-based self-assembly method. Codon-optimization of this de novo constructed genes and construction of stable cell lines improved expression 3.5-fold and single-step immunoaffinity purification with FLAG-epitope tag yielded around one milligram functional SERT per liter culture medium assessed by [(3)H] imipramine ligand binding. Some characterizations including electrospray ionization MS/MS analysis, subcellular localization and cellular-uptake assay demonstrated that expressed human SERT was properly expressed, folded and fully functional. The long cytosolic N-terminal of SERT was predicted as containing 'intrinsically disordered region (IDR)' (∼85 residues) by DISOPRED2 program. We engineered this salient region by step-wise truncation and ligand binding assay determined that dissociation constant for a series of de novo designed truncation constructs was close to the one for full-length wild type SERT. Our expression platform using synthetic codon-optimized gene and mammalian stable cell lines is feasible to produce milligram-scale functional membrane transporter for further biophysical and biochemical studies.
血清素转运体(SERT)是溶质载体6家族的成员之一,负责从神经细胞的突触间隙中重新摄取单胺神经递质血清素(5-羟色胺),并且是几种抗抑郁药的重要靶点。为了研究这种具有药理学相关性的转运体的生物物理特性,我们使用基于PCR的自组装方法产生的合成人类SERT基因,开发了一种用四环素诱导的HEK293细胞的哺乳动物表达系统。对这些从头构建的基因进行密码子优化并构建稳定细胞系,使表达提高了3.5倍,并且用FLAG表位标签进行单步免疫亲和纯化,每升培养基可产生约1毫克功能性SERT,通过[³H]丙咪嗪配体结合进行评估。包括电喷雾电离质谱/质谱分析、亚细胞定位和细胞摄取试验在内 的一些表征表明表达的人类SERT表达正确、折叠正确且功能完全正常 。通过DISOPRED2程序预测,SERT较长 的胞质N端含有“内在无序区域(IDR)”(约85个残基)。我们通过逐步截短对这一显著区域进行了改造,配体结合试验确定一系列从头设计的截短构建体的解离常数与全长野生型SERT 的解离常数相近。我们使用合成密码子优化基因 和哺乳动物稳定细胞系的表达平台可行,可生产毫克级的功能性膜转运体用于进一步的生物物理和生化研究。