首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Insulin-like growth factor binding proteins from cultured human fibroblasts. Characterization and hormonal regulation.
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Insulin-like growth factor binding proteins from cultured human fibroblasts. Characterization and hormonal regulation.

机译:来自培养的人成纤维细胞的胰岛素样生长因子结合蛋白。表征和荷尔蒙调节。

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摘要

Specific, high affinity insulin-like growth factor (IGF) binding proteins are secreted by human fibroblasts in culture. By multiple criteria, the species of IGF binding proteins produced by human fibroblasts are distinct from the HepG2/amniotic fluid IGF binding protein, but share many characteristics with the growth hormone-dependent IGF binding protein forms predominant in normal adult human plasma. Treatment of cultured human fibroblasts with growth hormone produced an increase in IGF binding protein activity in the medium, while addition of glucocorticoids markedly diminished IGF binding activity. Insulin, epidermal growth factor, platelet-derived growth factor, and progesterone had no effect on IGF binding activity in fibroblast media. In comparison, HepG2 IGF binding activity was enhanced by progesterone, decreased by insulin, and unaffected by growth hormone or glucocorticoid treatment. Five molecular forms of IGF binding proteins were identified by Western ligand blots in human fibroblast conditioned medium, with Mr = 41,500, 37,000, 32,000, 28,000, and 23,000. In human fibroblast conditioned medium, the Mr = 41,500 and 37,000 IGF binding protein species were abundant, as in normal human plasma, with a major Mr = 23,000 form which was a minor component in plasma.
机译:特定的,高亲和力的胰岛素样生长因子(IGF)结合蛋白是由人类成纤维细胞在培养物中分泌的。通过多种标准,由人类成纤维细胞产生的IGF结合蛋白的种类不同于HepG2 /羊水IGF结合蛋白,但是与生长激素依赖的IGF结合蛋白在正常成人血浆中占主导地位而具有许多特征。用生长激素处理培养的人成纤维细胞在培养基中增加了IGF结合蛋白的活性,而添加糖皮质激素则明显降低了IGF的结合活性。胰岛素,表皮生长因子,血小板衍生生长因子和孕酮对成纤维细胞培养基中IGF结合活性没有影响。相比之下,黄体酮可增强HepG2 IGF的结合活性,胰岛素可降低HepG2 IGF的结合活性,而不受生长激素或糖皮质激素治疗的影响。在人成纤维细胞条件培养基中,通过Western配体印迹鉴定了五种分子形式的IGF结合蛋白,Mr = 41,500、37,000、32,000、28,000和23,000。与正常人血浆一样,在人成纤维细胞条件培养基中,Mr = 41,500和37,000 IGF结合蛋白种类丰富,主要的Mr = 23,000形式是血浆中的次要成分。

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