Bach L A, Hsieh S, Brown A L, Rechler M M
Growth and Development Section, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland 20892.
Endocrinology. 1994 Nov;135(5):2168-76. doi: 10.1210/endo.135.5.7525263.
Insulin-like growth factor-binding protein-6 (IGFBP-6) is an O-linked glycoprotein that binds insulin-like growth factor-II (IGF-II) with marked preferential affinity over IGF-I. Recombinant human IGFBP-6 (rhIGFBP-6) was synthesized by COS-7 monkey kidney cells that were transiently transfected with a eukaryotic expression vector into which a complementary DNA for IGFBP-6 modified for optimal translation had been inserted. rhIGFBP-6 was similar to IGFBP-6 purified from human cerebrospinal fluid with respect to IGF binding and O-glycosylation. The effect of rhIGFBP-6 on IGF-induced L6A1 myoblast differentiation was studied using creatine kinase activity as an index of differentiation. rhIGFBP-6 inhibited differentiation initiated by IGF-II in a dose-dependent manner, inhibition was complete when rhIGFBP-6 was present in a slight molar excess. In contrast, rhIGFBP-6 had no effect on IGF-I-induced differentiation, even when coincubated in a 5-fold molar excess. These results are consistent with the preferential affinity of IGFBP-6 for IGF-II. As cell association and proteolysis have been associated with the potentiation, rather than the inhibition, of IGF action by IGFBPs, we investigated whether they occurred in the L6A1 myoblast system. After incubation of L6A1 myoblasts with rhIGFBP-6, IGFBP-6 was recovered from the medium, but not from cell lysates or extracellular matrix. In addition, [125I]IGFBP-6 did not bind to myoblast monolayers, and there was no evidence that proteolysis had occurred. Together, these results indicate that rhIGFBP-6 remains intact and soluble and, hence, inhibits IGF-II-induced differentiation. The fidelity of the IGFBP-6 expression system used for these studies will enable us to use this system to determine how structural modifications of the protein affect the modulation of IGF action by IGFBP-6.
胰岛素样生长因子结合蛋白-6(IGFBP-6)是一种O-连接糖蛋白,它与胰岛素样生长因子-II(IGF-II)结合,对IGF-II的亲和力明显高于IGF-I。重组人IGFBP-6(rhIGFBP-6)由COS-7猴肾细胞合成,这些细胞用真核表达载体进行瞬时转染,该载体中插入了经优化翻译修饰的IGFBP-6互补DNA。rhIGFBP-6在IGF结合和O-糖基化方面与从人脑脊液中纯化的IGFBP-6相似。以肌酸激酶活性作为分化指标,研究了rhIGFBP-6对IGF诱导的L6A1成肌细胞分化的影响。rhIGFBP-6以剂量依赖性方式抑制IGF-II引发的分化,当rhIGFBP-6以轻微摩尔过量存在时抑制作用完全。相反,rhIGFBP-6对IGF-I诱导的分化没有影响,即使以5倍摩尔过量共孵育也是如此。这些结果与IGFBP-6对IGF-II的优先亲和力一致。由于细胞结合和蛋白水解与IGFBPs增强而非抑制IGF作用有关,我们研究了它们是否在L6A1成肌细胞系统中发生。用rhIGFBP-6孵育L6A1成肌细胞后,IGFBP-6从培养基中回收,但未从细胞裂解物或细胞外基质中回收。此外,[125I]IGFBP-6不与成肌细胞单层结合,也没有证据表明发生了蛋白水解。总之,这些结果表明rhIGFBP-6保持完整且可溶,因此抑制IGF-II诱导的分化。用于这些研究的IGFBP-6表达系统的保真度将使我们能够利用该系统确定蛋白质的结构修饰如何影响IGFBP-6对IGF作用的调节。