首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >Comparison of seven different heterologous protein expression systems for the production of the serotonin transporter.
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Comparison of seven different heterologous protein expression systems for the production of the serotonin transporter.

机译:七个不同异源蛋白质表达系统用于生产5-羟色胺转运蛋白的比较。

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摘要

The rat serotonin transporter (rSERT) is an N-glycosylated integral membrane protein with 12 transmembrane regions; the N-glycans improve the ability of the SERT polypeptide chain to fold into a functional transporter, but they are not required for the transmembrane transport of serotonin per se. In order to define the best system for the expression, purification and structural analysis of serotonin transporter (SERT), we expressed SERT in Escherichia coli, Pichia pastoris, the baculovirus expression system and in four different stable mammalian cell lines. Two stable cell lines that constitutively expressed SERT (Imi270 and Coca270) were constructed using episomal plasmids in HEK293 cells expressing the EBNA-1 antigen. SERT expression in the three different inducible stable mammalian cell lines was induced either by a decrease in temperature (cell line pCytTS-SERT), the addition of tetracycline to the growth medium (cell line T-REx-SERT) or by adding DMSO which caused the cells to differentiate (cell line MEL-SERT). All the mammalian cell lines expressed functional SERT, but SERT expressed in E. coli or P. pastoris was nonfunctional as assessed by 5-hydroxytryptamine uptake and inhibitor binding assays. Expression of functional SERT in the mammalian cell lines was assessed by an inhibitor binding assay; the cell lines pCytTS-SERT, Imi270 and Coca270 contained levels of functional SERT similar to that of the standard baculovirus expression system (250,000 copies per cell). The expression of SERT in induced T-REx-SERT cells was 400,000 copies per cell, but in MEL-SERT it was only 80,000 copies per cell. All the mammalian stable cell lines expressed SERT at the plasma membrane as assessed by [3H]-5-hydroxytryptamine uptake into whole cells, but the V(max) for the T-Rex-SERT cell line was 10-fold higher than any of the other cell lines. It was noticeable that the cell lines that constitutively expressed SERT grew extremely poorly, compared to the inducible cell lines whose growth rates were similar to the parental cell lines when not induced. In addition, the cell lines MEL-SERT, Imi270 and T-REx-SERT all expressed fully N-glycosylated SERT and no unglycosylated inactive protein, in contrast to the baculovirus expression system where the vast majority of expressed SERT was unglycosylated and nonfunctional.
机译:大鼠血清素转运蛋白(rSERT)是具有12个跨膜区域的N-糖基化的整合膜蛋白。 N-聚糖提高了SERT多肽链折叠成功能性转运蛋白的能力,但对于5-羟色胺本身的跨膜转运而言,它们并不是必需的。为了定义表达,纯化和血清素转运蛋白(SERT)的最佳系统,我们在大肠杆菌,巴斯德毕赤酵母,杆状病毒表达系统和四种不同的稳定哺乳动物细胞系中表达了SERT。使用游离质粒在表达EBNA-1抗原的HEK293细胞中构建两个组成性表达SERT的稳定细胞系(Imi270和Coca270)。通过降低温度(细胞系pCytTS-SERT),向生长培养基中添加四环素(细胞系T-REx-SERT)或通过添加DMSO诱导三种不同的可诱导稳定哺乳动物细胞系中的SERT表达。细胞以分化(细胞系MEL-SERT)。所有哺乳动物细胞系均表达功能性SERT,但通过5-羟色胺吸收和抑制剂结合试验评估,在大肠杆菌或巴斯德毕赤酵母中表达的SERT无功能。通过抑制剂结合测定法评估功能性SERT在哺乳动物细胞系中的表达。细胞系pCytTS-SERT,Imi270和Coca270的功能性SERT水平与标准杆状病毒表达系统相似(每个细胞250,000个拷贝)。 SERT在诱导的T-REx-SERT细胞中的表达为每个细胞400,000拷贝,但是在MEL-SERT中它的表达仅为每个细胞80,000拷贝。所有哺乳动物稳定细胞系均通过[3H] -5-羟基色胺吸收进入全细胞,在质膜上表达SERT,但T-Rex-SERT细胞系的V(max)比任何一种高10倍。其他细胞系。值得注意的是,与诱导型细胞相比,组成型表达SERT的细胞系生长极差,而诱导型细胞的生长速率与未诱导时的亲代细胞相似。另外,与杆状病毒表达系统相反,杆状病毒表达系统中绝大多数表达的SERT是未糖基化的并且是无功能的,而细胞系MEL-SERT,Imi270和T-REx-SERT都表达完全N-糖基化的SERT,而没有未糖基化的无活性蛋白。

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