Leckett B, Germinario R J
Lady Davis Institute for Medical Research, Sir Mortimer B. Davis-Jewish General Hospital, Montreal (Quebec), Canada.
Biochem Cell Biol. 1991 Dec;69(12):859-63. doi: 10.1139/o91-127.
NS-1 mouse plasmacytoma cells were examined for their insulin and insulinlike growth factor-1 (IGF-1) binding characteristics and ability to produce peptide-dependent cellular effects. At concentrations of labelled insulin (i.e., 1.7 x 10(-10) M) or IGF-1 (i.e., 1.5 x 10(-10) M), NS-1 cells specifically bind 0.2 +/- 0.06 fmol insulin per 10(6) cells (n = 7), where little, if any, IGF-1 specific binding was observed (0.02 +/- 0.01 fmol/10(6) cells) (n = 3). Additionally, the data indicate that the total number of insulin binding sites per cell was 3200 +/- 390 (n = 3). Insulin was employed at various concentrations (6.7-667 nM) and failed to stimulate either sugar or amino acid transport. Insulin at low concentrations (i.e., 6.7 or 67 nM) did not stimulate DNA synthesis, yet a small but significant increase was observed at a concentration of 667 nM insulin. IGF-1 did not stimulate DNA synthesis at all concentrations employed (1.4-143 nM). In summary, there exists a small but significant number of insulin receptors, little insulin-stimulated DNA synthesis, and no apparent insulin stimulation of sugar or amino acid transport. Also, since there is no significant IGF-1 binding and no IGF-1 stimulation of DNA synthesis, these findings indicate that this cell line might be a good candidate for the study of insulin receptor function as a transfection recipient of insulin receptor genes.
对NS-1小鼠浆细胞瘤细胞进行了研究,以考察其胰岛素和胰岛素样生长因子-1(IGF-1)的结合特性以及产生肽依赖性细胞效应的能力。在标记胰岛素浓度(即1.7×10⁻¹⁰ M)或IGF-1浓度(即1.5×10⁻¹⁰ M)下,NS-1细胞每10⁶个细胞特异性结合0.2±0.06 fmol胰岛素(n = 7),而几乎未观察到IGF-1特异性结合(0.02±0.01 fmol/10⁶个细胞)(n = 3)。此外,数据表明每个细胞胰岛素结合位点的总数为3200±390(n = 3)。使用了不同浓度(6.7 - 667 nM)的胰岛素,但未能刺激糖或氨基酸转运。低浓度(即6.7或67 nM)胰岛素未刺激DNA合成,但在胰岛素浓度为667 nM时观察到有小幅度但显著的增加。在所用的所有IGF-1浓度(1.4 - 143 nM)下,IGF-1均未刺激DNA合成。总之,存在少量但显著数量的胰岛素受体,胰岛素刺激的DNA合成很少,且未观察到胰岛素对糖或氨基酸转运有明显刺激。此外,由于不存在显著的IGF-1结合且IGF-1未刺激DNA合成,这些发现表明该细胞系可能是作为胰岛素受体基因转染受体来研究胰岛素受体功能的良好候选对象。