Lin Feng, Otvos Laszlo, Kumagai Jin, Tregear Geoffrey W, Bathgate Ross A D, Wade John D
Howard Florey Institute, University of Melbourne, Victoria 3010, Australia.
J Pept Sci. 2004 May;10(5):257-64. doi: 10.1002/psc.521.
In contrast to the cellular receptors for insulin and insulin-like growth factors that are known to be protein tyrosine kinases, those of both insulin 3 and relaxin have recently been identified as being members of the leucine-rich repeat-containing G-protein coupled receptor (LGR) family, LGR8 and LGR7, respectively. This has prompted an examination into the possibility that they might also be specific for another member of the insulin superfamily, namely, insulin 4. Towards this aim, a two-chain peptide corresponding to the predicted primary structure of insulin 4 was prepared by solid phase synthesis. As conventional aeration and combination of the two S-reduced chains in solution at high pH failed to produce target product, selectively S-protected A- and B-chains were prepared followed by stepwise, individual formation of each of the three disulfides, one intramolecular within the A-chain and two intermolecular. Chemical characterization confirmed the purity and identity of the synthetic insulin 4 analogue. However, secondary structural analysis indicated that the peptide was devoid of tertiary conformation suggesting that the native peptide may well be either significantly longer in length or is similar to insulin-like growth factor I or II in that it is a single chain product. Screening of the synthetic analogue for activation of transfected cells bearing LGR7, and LGR7 splice variant or LGR8 failed to identify a specific interaction. Thus, the in vivo structural identity of insulin 4 and its receptor (if any) as well as its potential function remains unknown.
与已知为蛋白酪氨酸激酶的胰岛素和胰岛素样生长因子的细胞受体不同,胰岛素3和松弛素的细胞受体最近分别被鉴定为富含亮氨酸重复序列的G蛋白偶联受体(LGR)家族的成员,即LGR8和LGR7。这促使人们研究它们是否也可能对胰岛素超家族的另一个成员即胰岛素4具有特异性。为了实现这一目标,通过固相合成制备了一种与胰岛素4预测的一级结构相对应的双链肽。由于在高pH值的溶液中进行常规曝气和两条S还原链的组合未能产生目标产物,因此制备了选择性S保护的A链和B链,然后逐步分别形成三个二硫键中的每一个,一个在A链内分子内,两个在分子间。化学表征证实了合成胰岛素4类似物的纯度和同一性。然而,二级结构分析表明该肽缺乏三级构象,这表明天然肽可能长度明显更长,或者类似于胰岛素样生长因子I或II,是单链产物。筛选合成类似物对携带LGR7、LGR7剪接变体或LGR8的转染细胞的激活作用,未能发现特异性相互作用。因此,胰岛素4及其受体(如果有的话)的体内结构同一性及其潜在功能仍然未知。