School of Life Science and Biopharmaceutics, Shenyang Pharmaceutical University, No 3 A1 Road 10, Shenyang Economy and Technology Development Zone, Shenyang 110027, China.
Int J Hematol. 2010 Mar;91(2):238-44. doi: 10.1007/s12185-010-0496-x. Epub 2010 Feb 5.
Erythropoietin (EPO) controls the production of red blood cells, so it is important to maintain high levels of EPO activity and half-life. Here, we modified glycosylation sites in human erythropoietin (HuEPO) gene, resulting in proteins with addition of 1-4 glycosylation sites. The modified gene was introduced into CHO cells. The expressed EPO analogs were analyzed by SDS-PAGE. Half-life of the analogs was determined by sialic acid content test. In vivo potencies of analogs were evaluated by reticulocyte count and haematocrit level. The metabolic clearance of recombinant human erythropoietin (rHuEPO) and its analogs were determined by EPO immunoradiometrics assay. We have shown that the carbohydrate content in modified EPO molecules is increased. The modified EPO, [Val(3)Asn(4)Thr(6)Asn(30)Thr(32)Val(87)Asn(88)Thr(90)]EPO, increases 3.3 times in elimination half-life, 2.1 times in activity and prolongs 2 days functional time in vivo in comparison to rHuEPO. These findings suggest that the addition of glycosylation sites in EPO enhances half-life and biological activity of EPO, duration of action of EPO anlogues positively correlated with the number of glycosylated sites, while addition of 4 glycosylation sites does not further enhance the erythropoietic potency.
促红细胞生成素 (EPO) 控制红细胞的生成,因此保持 EPO 活性和半衰期的高水平非常重要。在这里,我们修饰了人促红细胞生成素 (HuEPO) 基因中的糖基化位点,使蛋白增加了 1-4 个糖基化位点。修饰后的基因被导入 CHO 细胞。通过 SDS-PAGE 分析表达的 EPO 类似物。通过唾液酸含量测试确定类似物的半衰期。通过网织红细胞计数和血细胞比容水平评估类似物的体内效力。通过 EPO 免疫放射测量法测定重组人促红细胞生成素 (rHuEPO) 及其类似物的代谢清除率。我们已经表明,修饰后的 EPO 分子中的碳水化合物含量增加。与 rHuEPO 相比,修饰的 EPO,[Val(3)Asn(4)Thr(6)Asn(30)Thr(32)Val(87)Asn(88)Thr(90)]EPO 的消除半衰期延长了 3.3 倍,活性增加了 2.1 倍,体内功能时间延长了 2 天。这些发现表明,EPO 中糖基化位点的添加增强了 EPO 的半衰期和生物活性,EPO 类似物的作用持续时间与糖基化位点的数量呈正相关,而添加 4 个糖基化位点不会进一步增强红细胞生成能力。