Hormones and Signal Transduction, German Cancer Research Centre, DKFZ-ZMBH Alliance, Heidelberg, Germany.
Arch Physiol Biochem. 2009 Jul;115(3):119-26. doi: 10.1080/13813450903008628.
The structural modification of insulin results in the generation of insulin analogues that show altered binding affinities to the insulin receptor and/or the IGF-I receptor, and as a consequence insulin analogues may have altered mitogenic potency. We analysed the proliferative effect of the rapid-acting insulin analogue Apidra (insulin glulisine) on mammary epithelial cells. We show that Apidra and Actrapid (recombinant human insulin) have similar proliferative effects on benign MCF10A and tumorigenic MCF7 cells and on epithelial cells of mouse mammary gland. Whereas Apidra and Actrapid induced similar activation of Erk1/2, activation of Akt/PKB by Apidra was significantly weaker compared to regular insulin. As AKT/PKB, an effector of the phosphoinositide 3-kinase pathway, mediates metabolic effects of insulin, we studied induction of hexokinase-2 in MCF7 cells and hexokinase-2 and hexokinase-4 in HepG2 cells by Actrapid and Apidra. Both genes were not significantly induced by Actrapid and Apidra in these cell lines.
胰岛素的结构修饰导致胰岛素类似物的产生,这些类似物表现出与胰岛素受体和/或 IGF-I 受体结合亲和力的改变,因此胰岛素类似物可能具有改变的有丝分裂潜能。我们分析了速效胰岛素类似物 Apidra(胰岛素 glulisine)对乳腺上皮细胞的增殖作用。我们表明,Apidra 和 Actrapid(重组人胰岛素)对良性 MCF10A 和致瘤 MCF7 细胞以及小鼠乳腺上皮细胞具有相似的增殖作用。虽然 Apidra 和 Actrapid 诱导 Erk1/2 的激活相似,但与常规胰岛素相比,Apidra 对 Akt/PKB 的激活明显较弱。由于 AKT/PKB 是磷酸肌醇 3-激酶途径的效应物,介导胰岛素的代谢作用,我们研究了 Actrapid 和 Apidra 在 MCF7 细胞中诱导己糖激酶-2 以及在 HepG2 细胞中诱导己糖激酶-2 和己糖激酶-4 的作用。在这些细胞系中,Actrapid 和 Apidra 均未显著诱导这些基因的表达。