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HC11小鼠乳腺上皮细胞系分化过程中胰岛素样生长因子结合蛋白(IGFBP)-5和IGFBP-2分泌的激素调控

Hormonal control of IGF-binding protein (IGFBP)-5 and IGFBP-2 secretion during differentiation of the HC11 mouse mammary epithelial cell line.

作者信息

Phillips K, Park M A, Quarrie L H, Boutinaud M, Lochrie J D, Flint D J, Allan G J, Beattie J

机构信息

Molecular Recognition Group, Hannah Research Institute, Ayr KA6 5HL, UK.

出版信息

J Mol Endocrinol. 2003 Aug;31(1):197-208. doi: 10.1677/jme.0.0310197.

Abstract

The mouse mammary epithelial cell line HC11 upregulates the synthesis of beta-casein (a differentiation marker) following treatment with the lactogenic hormone mix dexamethasone, insulin and prolactin (DIP). We demonstrate that the basal levels of IGF-binding protein (IGFBP)-5 secreted by undifferentiated HC11 cells are upregulated 10-fold during DIP-induced cellular differentiation whereas the level of the other IGFBP species secreted by HC11 cells (IGFBP-2) is downregulated during this process. As previously reported, the combination of all three of these hormones is required for synthesis of the differentiation marker beta-casein, whereas basal IGFBP-5 secretion is evident in the absence of any hormonal treatment and, unlike beta-casein, secretion of this protein can be stimulated by binary combinations of the hormones (although maximal levels of IGFBP-5 are achieved in the presence of all three lactogenic hormones). Additionally, levels of IGFBP-5 can be increased by DIP treatment under conditions (non-competency of HC11 cultures or presence of epidermal growth factor) where DIP treatment does not increase synthesis of beta-casein. For IGFBP-2, dexamethasone is a potent inhibitor of secretion whilst prolactin stimulated the secretion of this binding protein into the medium. For the IGFBP axis in HC11 cells we conclude that, although the levels of IGFBP-5 and -2 are influenced by the state of cellular differentiation, the hormonal regulation of the levels of these IGFBP species can be dissociated from the regulation of beta-casein synthesis. In a further series of experiments we demonstrate that IGF-I is able to replace insulin in the DIP lactogenic hormone mix and by the use of a specific IGF-I receptor blocking antibody indicate that the action of IGF-I is mediated through the cell surface IGF-I receptor and not by cross-reaction of IGF-I ligand at the insulin receptor. We discuss our data in the context of the potential role of the IGF axis in the process of cell differentiation and illustrate the significance of our findings in the context of the physiology and life cycle of the mammary epithelial cell.

摘要

小鼠乳腺上皮细胞系HC11在用促乳激素混合物地塞米松、胰岛素和催乳素(DIP)处理后,会上调β-酪蛋白(一种分化标志物)的合成。我们证明,未分化的HC11细胞分泌的胰岛素样生长因子结合蛋白(IGFBP)-5的基础水平在DIP诱导的细胞分化过程中上调了10倍,而HC11细胞分泌的其他IGFBP种类(IGFBP-2)的水平在此过程中则下调。如先前报道,这三种激素的组合是分化标志物β-酪蛋白合成所必需的,而基础IGFBP-5分泌在无任何激素处理时就很明显,并且与β-酪蛋白不同,该蛋白的分泌可被激素的二元组合刺激(尽管在所有三种促乳激素存在时IGFBP-5达到最高水平)。此外,可以在DIP处理不增加β-酪蛋白合成的条件下(HC11培养物无反应能力或存在表皮生长因子)通过DIP处理来增加IGFBP-5的水平。对于IGFBP-2,地塞米松是分泌的有效抑制剂,而催乳素则刺激这种结合蛋白分泌到培养基中。对于HC11细胞中的IGFBP轴,我们得出结论,尽管IGFBP-5和-2的水平受细胞分化状态影响,但这些IGFBP种类水平的激素调节可与β-酪蛋白合成的调节分离。在另一系列实验中,我们证明IGF-I能够在DIP促乳激素混合物中替代胰岛素,并且通过使用特异性IGF-I受体阻断抗体表明IGF-I的作用是通过细胞表面IGF-I受体介导的,而不是通过IGF-I配体在胰岛素受体处的交叉反应介导的。我们在IGF轴在细胞分化过程中的潜在作用的背景下讨论我们的数据,并在乳腺上皮细胞的生理学和生命周期的背景下说明我们发现的意义。

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