Shiota K, Min K S, Ogawa T
University of Tokyo, Japan.
Nihon Yakurigaku Zasshi. 1997 Oct;110 Suppl 1:59P-62P. doi: 10.1254/fpj.110.supplement_59.
Equine chorionic gonadotropin (eCG) and luteinizing hormone (eLH) are encoded by a single gene and have identical peptide portions. They, however, differ in the structures of their attached oligosaccharides, which depend on the sites of their production. Recombinant eCG/LH (rec-eCG/LH) possesses dual LH and FSH activities. Mutant eCG/LH in which Asn 56 of the alpha-subunit was changed to Gln to remove the N-linked oligosaccharide showed complete loss of LH activity, whereas in contrast its FSH activity was more potent than that of the wild-type. Another mutant, which lacked the carboxyterminal portion of the beta-subunit to which O-linked oligosaccharides are attached, showed LH activity similar to that of the wild-type, whereas it had the most potent FSH activity. Thus, the oligosaccharides attached to eCG/LH play differential roles in the expression of biological activity.
马绒毛膜促性腺激素(eCG)和促黄体生成素(eLH)由单一基因编码,且具有相同的肽段部分。然而,它们连接的寡糖结构不同,这取决于其产生部位。重组eCG/LH(rec-eCG/LH)具有双重促黄体生成素(LH)和促卵泡生成素(FSH)活性。α亚基中天冬酰胺56被改变为谷氨酰胺以去除N-连接寡糖的突变型eCG/LH显示LH活性完全丧失,而相比之下其FSH活性比野生型更强。另一个突变体缺少连接O-连接寡糖的β亚基的羧基末端部分,其显示出与野生型相似的LH活性,而其FSH活性最强。因此,连接到eCG/LH的寡糖在生物活性表达中发挥不同作用。