Komourian J, Quik M
Department of Pharmacology, McGill University, Montreal, Quebec, Canada.
Brain Res. 1996 Apr 29;718(1-2):37-45. doi: 10.1016/0006-8993(96)00024-8.
Nicotinic acetylcholine receptors, particularly nicotinic alpha-bungarotoxin (alpha-BGT) receptors, are present in relatively high concentrations in rat hippocampus. Because of the difficulties encountered in studying receptors using primary cells in culture, especially for biochemical work, we investigated the possibility of using an immortalized cell line from embryonic rat hippocampus (H19-7). RNase protection assays show that alpha 4, alpha 7 and beta 2 neuronal nicotinic receptor subunit mRNAs are present in differentiated but not undifferentiated H19-7 cells, while alpha 2, alpha 3, alpha 5 and beta 3 subunit mRNAs were not detectable under either condition. In line with these results, the present data demonstrate that the H19-7 cells express cell surface nicotinic alpha-BGT binding sites, which were maximal after seven days of differentiation in culture. The receptors were saturable, of high affinity (Kd = 1.30 nM and Bmax = 11.70 fmol/10(5) cells) and had a pharmacological profile similar to that observed for CNS alpha-BGT receptors. On the other hand, although alpha 4 and beta 2 neuronal nicotinic subunit mRNAs were present in differentiated H19-7 cells, no [3H]cytisine binding was observed. Because immortalized cell lines have the advantage that they provide a limitless supply of cells as compared to primary cell cultures, but yet are not malignant in origin, the present results may suggest that the H19-7 immortalized hippocampal cell line represent a useful CNS model system for examining alpha-BGT nicotinic receptors.
烟碱型乙酰胆碱受体,尤其是烟碱型α-银环蛇毒素(α-BGT)受体,在大鼠海马体中的浓度相对较高。由于在使用原代培养细胞研究受体时遇到困难,特别是对于生化研究工作,我们研究了使用源自胚胎大鼠海马体的永生化细胞系(H19-7)的可能性。核糖核酸酶保护分析表明,α4、α7和β2神经元烟碱型受体亚基mRNA存在于分化后的而非未分化的H19-7细胞中,而在两种条件下均未检测到α2、α3、α5和β3亚基mRNA。与这些结果一致,目前的数据表明,H19-7细胞表达细胞表面烟碱型α-BGT结合位点,在培养分化七天后达到最大值。这些受体具有饱和性、高亲和力(Kd = 1.30 nM,Bmax = 11.70 fmol/10(5)个细胞),并且药理学特征与中枢神经系统α-BGT受体相似。另一方面,尽管分化后的H19-7细胞中存在α4和β2神经元烟碱型亚基mRNA,但未观察到[3H]胞嘧啶结合。由于与原代细胞培养相比,永生化细胞系具有能提供无限细胞供应的优势,且并非起源于恶性肿瘤,目前的结果可能表明,H19-7永生化海马体细胞系是用于研究α-BGT烟碱型受体的有用的中枢神经系统模型系统。