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利用无细胞系统对促黄体生成素寡糖进行硫酸化修饰。

Sulfation of lutropin oligosaccharides with a cell-free system.

作者信息

Green E D, Gruenebaum J, Bielinska M, Baenziger J U, Boime I

出版信息

Proc Natl Acad Sci U S A. 1984 Sep;81(17):5320-4. doi: 10.1073/pnas.81.17.5320.

Abstract

Sulfate is covalently linked to the oligosaccharides on the alpha and beta subunits of bovine lutropin (luteinizing hormone; LH) but not to those on human chorionic gonadotropin (hCG). Since the amino acid sequences of the pituitary and placental alpha subunits are homologous, comparison of their asparagine-linked sugars can provide information regarding tissue specificity of oligosaccharide maturation. To characterize this post-translational modification, we have developed a reconstituted cell-free sulfation system. Sulfate is incorporated into exogenously added glycoproteins by sulfotransferases from Triton X-100-lysed Golgi membranes in the presence of 3'-phosphoadenosine 5'-phospho[35S]sulfate, which is generated from [35S]sulfate by a ribosome-free supernate from Krebs ascites tumor cells. LH is sulfated by pituitary and liver membranes but not by those from placenta. Desialylated hCG (AshCG) is sulfated by membranes from placenta and pituitary, but not liver, while hCG is not sulfated by any of these membranes. Endoglycosidase F releases all the incorporated sulfate from LH in the form of a heterogeneous mixture of mono- and disulfated oligosaccharides. In contrast, the sulfate added to AshCG is apparently attached to peptide rather than oligosaccharide. As found with the cell-free system, sulfate metabolically incorporated into LH by pituitary cells is present on a heterogeneous population of mono- and disulfated oligosaccharides. Thus the cell-free sulfation system accurately duplicates the in vivo process.

摘要

硫酸根共价连接到牛促黄体素(促黄体生成素;LH)的α和β亚基上的寡糖,但不连接到人类绒毛膜促性腺激素(hCG)的寡糖上。由于垂体和胎盘α亚基的氨基酸序列是同源的,比较它们的天冬酰胺连接糖可以提供有关寡糖成熟的组织特异性的信息。为了表征这种翻译后修饰,我们开发了一种重构的无细胞硫酸化系统。在3'-磷酸腺苷5'-磷酸[35S]硫酸盐存在下,硫酸根通过来自Triton X-100裂解的高尔基体膜的磺基转移酶掺入外源添加的糖蛋白中,3'-磷酸腺苷5'-磷酸[35S]硫酸盐由[35S]硫酸盐通过来自克雷布斯腹水肿瘤细胞的无核糖体上清液产生。LH被垂体和肝膜硫酸化,但不被胎盘膜硫酸化。去唾液酸化的hCG(AshCG)被胎盘和垂体膜硫酸化,但不被肝膜硫酸化,而hCG不被任何这些膜硫酸化。内切糖苷酶F以单硫酸化和二硫酸化寡糖的异质混合物形式从LH中释放所有掺入的硫酸根。相反,添加到AshCG中的硫酸根显然连接到肽而不是寡糖上。正如在无细胞系统中发现的那样,垂体细胞代谢掺入LH中的硫酸根存在于单硫酸化和二硫酸化寡糖的异质群体上。因此,无细胞硫酸化系统准确地复制了体内过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0592/391695/8f1b9082f48e/pnas00618-0047-a.jpg

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