Sweileh W, Wenberg K, Xu J, Forsayeth J, Hardy S, Loring R H
Department of Pharmaceutical Sciences, 211 Mugar, Northeastern University, 360 Huntington Avenue, Boston, MA, USA.
Brain Res Mol Brain Res. 2000 Feb 22;75(2):293-302. doi: 10.1016/s0169-328x(99)00302-2.
We tested the hypothesis that the folding, assembly and insertion of neuronal nicotinic receptors are critically dependent on the host cell line. We used recombinant adenoviruses encoding either the rat alpha7, alpha4 or beta2 subunits in which expression of the subunit is controlled by a tetracycline-dependent promoter to screen five cell lines (GH4C1, SH-EP1, CV1, SN-56, and CHO-CAR). All five lines do not express detectable nicotinic receptor but do express receptor for human adenovirus, and all expressed mRNA for alpha7, alpha4 and beta2 subunits when infected with viruses. Each cell line expressed varying levels of alpha4beta2 receptors that bound [3H]cytisine, but only the GH4C1 and SH-EP1 cell lines expressed either surface or internal alpha7 receptors that bound [125I]alpha-bungarotoxin ([125I]alpha-BGT). All five cell lines expressed a 60 kDa protein immunoblotted by anti-alpha7 antibodies when infected with the alpha7 virus, presumably representing unassembled alpha7 subunits. In addition, GH4C1 cells expressed over 10-fold more surface alpha7 receptor than SH-EP1 cells, even though the total alpha7 receptor in the two cell lines was similar. Sedimentation experiments indicate that SH-EP1 cells only partially assemble alpha7 receptors compared with GH4C1 cells and control alpha7 from rat brain. These data suggest that not only is surface alpha7 receptor expression a multistep process, but that each step may involve cell-specific assembly factors.
神经元烟碱型受体的折叠、组装和插入严重依赖于宿主细胞系。我们使用了编码大鼠α7、α4或β2亚基的重组腺病毒,其中亚基的表达由四环素依赖性启动子控制,以筛选五种细胞系(GH4C1、SH-EP1、CV1、SN-56和CHO-CAR)。所有这五种细胞系均不表达可检测到的烟碱型受体,但表达人腺病毒的受体,并且在感染病毒时均表达α7、α4和β2亚基的mRNA。每种细胞系表达了不同水平的能结合[3H]胞嘧啶的α4β2受体,但只有GH4C1和SH-EP1细胞系表达了能结合[125I]α-银环蛇毒素([125I]α-BGT)的表面或内部α7受体。当用α7病毒感染时,所有五种细胞系均表达一种60 kDa的蛋白质,该蛋白质可被抗α7抗体免疫印迹,推测代表未组装的α7亚基。此外,尽管两个细胞系中的总α7受体相似,但GH4C1细胞表达的表面α7受体比SH-EP1细胞多10倍以上。沉降实验表明,与GH4C1细胞和大鼠脑来源的对照α7相比,SH-EP1细胞仅部分组装α7受体。这些数据表明,表面α7受体的表达不仅是一个多步骤过程,而且每个步骤可能涉及细胞特异性组装因子。