Sytkowski A J, Lunn E D, Davis K L, Feldman L, Siekman S
Laboratory for Cell and Molecular Biology, Division of Hematology and Oncology, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA 02215, USA.
Proc Natl Acad Sci U S A. 1998 Feb 3;95(3):1184-8. doi: 10.1073/pnas.95.3.1184.
Human erythropoietin, a widely used and important therapeutic glycoprotein, has a relatively short plasma half-life due to clearance by glomerular filtration as well as by other mechanisms. We hypothesized that an erythropoietin species with a larger molecular size would exhibit an increased plasma half-life and, potentially, an enhanced biological activity. We now report the production of biologically active erythropoietin dimers and trimers by chemical crosslinking of the conventional monomeric form. We imparted free sulfhydryl residues to a pool of erythropoietin monomer by chemical modification. A second pool was reacted with another modifying reagent to yield monomer with maleimido groups. Upon mixing these two pools, covalently linked dimers and trimers were formed that were biologically active in vitro. The plasma half-life of erythropoietin dimers in rabbits was >24 h compared with 4 h for the monomers. Importantly, erythropoietin dimers were biologically active in vivo as shown by their ability to increase the hematocrits of mice when injected subcutaneously. In addition, the dimers exhibited >26-fold higher activity in vivo than did the monomers and were very effective after only one dose. Dimeric and other oligomeric forms of Epo may have an important role in therapy.
人促红细胞生成素是一种广泛应用且重要的治疗性糖蛋白,由于通过肾小球滤过以及其他机制进行清除,其血浆半衰期相对较短。我们推测,分子尺寸更大的促红细胞生成素种类会表现出更长的血浆半衰期,并且可能具有增强的生物活性。我们现在报告通过常规单体形式的化学交联产生具有生物活性的促红细胞生成素二聚体和三聚体。我们通过化学修饰给一批促红细胞生成素单体赋予游离巯基残基。另一批与另一种修饰试剂反应以产生带有马来酰亚胺基团的单体。将这两批混合后,形成了在体外具有生物活性的共价连接的二聚体和三聚体。兔体内促红细胞生成素二聚体的血浆半衰期大于24小时,而单体为4小时。重要的是,促红细胞生成素二聚体在体内具有生物活性,皮下注射时能够提高小鼠的血细胞比容即证明了这一点。此外,二聚体在体内的活性比单体高26倍以上,并且仅一剂后就非常有效。促红细胞生成素的二聚体和其他寡聚体形式可能在治疗中具有重要作用。