Vadas Oscar, Hartley Oliver, Rose Keith
Department of Structural Biology and Bioinformatics, University Medical Center (CMU), University of Geneva, CH-1211 Geneva 4, Switzerland.
Biopolymers. 2008;90(4):496-502. doi: 10.1002/bip.20959.
In addition to its natural ligand, the receptor for erythropoietin can be activated by small peptides known as erythropoietin mimetic peptides (EMPs). Although EMPs are less potent than the natural ligand, EMP dimers, consisting of two EMPs joined via a linker, have been shown to exhibit significantly improved activity compared to the corresponding monomers, with potency approaching that of the native hormone. In this study, we used a panel of novel EMP dimers to explore the effects of linker length and EMP attachment site on potency. The EC50 values obtained in an EPO-dependent proliferation assay indicated that, as has been shown with similar molecules, EMP dimerization can lead to increases in potency of more than 2 orders of magnitude. We found that both C-terminal and N-terminal attachment of the linker to EMP was tolerated, and that, with the exception of the shortest linker, all of the linker lengths tested provided a similar increase in potency. In follow-up work devised to explore the potential benefit of contacting additional cell surface EPO receptors, we designed a tetrameric template consisting of lysine-based dimers joined via commercial PEG linkers of various molecular weights. Evaluation of the resulting molecules indicated a clear effect of PEG linker size on activity, while the "dimer of dimer" with the shortest linker exhibited 10-fold lower potency than the corresponding dimer, the longest tetramer increased potency by fivefold. We discuss the implications of these results for the further development of EMP multimers.
除了其天然配体之外,促红细胞生成素受体还可被称为促红细胞生成素模拟肽(EMPs)的小肽激活。尽管EMPs的效力低于天然配体,但由两个通过连接子连接的EMPs组成的EMP二聚体已显示出与相应单体相比活性显著提高,其效力接近天然激素。在本研究中,我们使用了一组新型EMP二聚体来探究连接子长度和EMP连接位点对效力的影响。在促红细胞生成素依赖性增殖试验中获得的EC50值表明,正如在类似分子中所显示的那样,EMP二聚化可导致效力增加超过2个数量级。我们发现连接子与EMP的C末端和N末端连接均可耐受,并且除了最短的连接子外,所有测试的连接子长度均能使效力有类似的增加。在后续旨在探索接触额外细胞表面促红细胞生成素受体潜在益处的工作中,我们设计了一种四聚体模板,该模板由通过各种分子量的商业聚乙二醇连接子连接的基于赖氨酸的二聚体组成。对所得分子的评估表明聚乙二醇连接子大小对活性有明显影响,而具有最短连接子的“二聚体的二聚体”的效力比相应二聚体低10倍,最长的四聚体使效力增加了五倍。我们讨论了这些结果对EMP多聚体进一步开发的意义。