Kowalski A, Gazzano H, Fehlmann M, Van Obberghen E
Biochem Biophys Res Commun. 1983 Dec 28;117(3):885-93. doi: 10.1016/0006-291x(83)91679-0.
We have compared here the reversibility of phosphorylation of insulin receptors either partially purified by lectin chromatography, or highly purified by specific immunoprecipitation with anti-receptor antibodies. We found that the beta subunit of partially purified insulin receptors was rapidly dephosphorylated (t 1/2 = 15 min). In contrast, the level of phosphorylation of immunoprecipitated receptors remained unchanged for up to 4 hours at 37 degrees C. However, cytosolic phosphatases, which are inhibited by vanadate, were able to induce a complete dephosphorylation of immunoprecipitated receptors. These results show that 1. phosphorylation of insulin receptors is reversible; and 2. no phosphatase activity is contained in the insulin receptor structure itself.
我们在此比较了通过凝集素色谱法部分纯化的胰岛素受体或通过抗受体抗体特异性免疫沉淀高度纯化的胰岛素受体磷酸化的可逆性。我们发现,部分纯化的胰岛素受体的β亚基迅速去磷酸化(t 1/2 = 15分钟)。相比之下,免疫沉淀受体的磷酸化水平在37℃下长达4小时保持不变。然而,被钒酸盐抑制的胞质磷酸酶能够诱导免疫沉淀受体的完全去磷酸化。这些结果表明:1. 胰岛素受体的磷酸化是可逆的;2. 胰岛素受体结构本身不包含磷酸酶活性。