Division of Endocrinology, Diabetes and Metabolism, Department of Medicine, Wayne State University School of Medicine, Detroit, MI, USA.
Cell Signal. 2013 Apr;25(4):981-8. doi: 10.1016/j.cellsig.2012.12.011. Epub 2013 Jan 11.
We previously have shown that Ahsg, a liver glycoprotein, inhibits insulin receptor (InsR) tyrosine kinase (TK) activity and the ERK1/2 mitogenic signaling arm of insulin signaling. Here we show that Ahsg blocks insulin-stimulated GLUT4 translocation and Akt activation in intact cells (mouse myoblasts). Furthermore, Ahsg inhibits InsR autophosphorylation of highly-purified insulin holoreceptors in a cell-free, ATP-dependent system, with an IC50 within the range of single-chain Ahsg concentrations in human serum. Binding of (125)I-insulin to living cells overexpressing the InsR shows a dissociation constant (KD) of 250pM, unaltered in the presence of 300 nM Ahsg. A mutant InsR cDNA encoding the signal peptide, the β-subunit and the furin processing site, but deleting the α-subunit, was stably expressed in HEK293 cells. Treatment with peroxovanadate, but not insulin, dramatically increased the 95 kD β-subunit tyrosine phosphoryation. The level of tyrosine phosphorylation of the 95-kD β-subunit can be driven down sharply by treatment of living HEK293 transfectant cells with physiological doses of Ahsg. Treatment of myogenic cells with Ahsg blunts insulin-stimulated InsR autophosphorylation and AKT phosphorylation. Taken together, we show that Ahsg antagonizes the metabolic functions initiated by InsR activation without interference in insulin binding. The experiments suggest a direct interaction of Ahsg with the InsR ectodomain β-subunit in a mode that does not significantly alter the high-affinity binding of insulin to the holoreceptor's two complementing α-subunits.
我们之前已经表明,肝糖蛋白 Ahsg 抑制胰岛素受体 (InsR) 酪氨酸激酶 (TK) 活性和胰岛素信号转导的 ERK1/2 有丝分裂信号通路。在这里,我们表明 Ahsg 可阻止完整细胞(小鼠成肌细胞)中胰岛素刺激的 GLUT4 易位和 Akt 激活。此外,Ahsg 在无细胞、ATP 依赖性系统中抑制高度纯化的胰岛素全受体的 InsR 自动磷酸化,IC50 处于人血清中单链 Ahsg 浓度范围内。用 (125)I-胰岛素与过表达 InsR 的活细胞结合显示出 250pM 的解离常数 (KD),在存在 300 nM Ahsg 时不变。编码信号肽、β 亚基和 furin 加工位点但缺失 α 亚基的突变 InsR cDNA 在 HEK293 细胞中稳定表达。用过氧钒酸盐处理,但不是胰岛素处理,可显著增加 95kD β 亚基酪氨酸磷酸化。用生理剂量的 Ahsg 处理活的 HEK293 转染细胞可将 95kD β 亚基的酪氨酸磷酸化水平急剧降低。用 Ahsg 处理成肌细胞可阻止胰岛素刺激的 InsR 自动磷酸化和 AKT 磷酸化。总之,我们表明 Ahsg 拮抗由 InsR 激活引发的代谢功能,而不干扰胰岛素与全受体的两个互补的 α 亚基的高亲和力结合。实验表明 Ahsg 以不显著改变胰岛素与全受体的两个互补的 α 亚基的高亲和力结合的模式与 InsR 细胞外结构域 β 亚基直接相互作用。