Physiological Chemistry II, Biocenter, University of Würzburg, Am Hubland, 97074 Würzburg, Germany.
Int J Pharm. 2011 Jul 15;413(1-2):140-6. doi: 10.1016/j.ijpharm.2011.04.043. Epub 2011 Apr 22.
Site-specific PEGylation offers the possibility to modify a therapeutic protein without interfering with its biological activity. Previously, a preferential N-terminal PEGylation has been reported for several proteins when the reaction was performed at acidic pH. In the present study it was explored if acidic pH favors N-terminal PEGylation of bone morphogenetic protein-2 (BMP-2). PEGylation by poly(ethylene glycol) aldehyde (PEG-AL) or poly(ethylene glycol) carboxymethyl succinimidyl ester (PEG-NHS) was performed at moderate acidic pH of 4. Comparing with PEG-NHS, PEG-AL converted more BMP-2 mainly to mono- or di-PEGylated derivatives at much less molar excess and shorter duration. Analysis of Tryptic fragments of the PEGylated derivatives indicated a partial N-terminal PEGylation specificity. PEG-AL exhibited higher specificity than PEG-NHS. UV spectrometry proved that PEGylation improved the solubility of BMP-2 in PBS. Surface plasmon resonance showed that PEGylation decreased the binding of BMP-2 proteins to a type II receptor. Remarkably, mono-PEGylated BMP-2 with PEG-AL showed higher cellular bioactivity than unmodified protein. Higher N-terminal PEGylation specificity correlates with higher receptor binding affinity and cellular activity. In summary, PEGylation of BMP-2 by PEG-AL and PEG-NHS at acidic pH exhibits a partial N-terminal specificity which however might be sufficient for an efficient site-specific PEGylation process.
定点 PEG 化提供了一种可能,即在不干扰治疗性蛋白生物活性的情况下对其进行修饰。先前有报道称,在酸性 pH 下进行反应时,几种蛋白会优先发生 N 端 PEG 化。本研究探讨了酸性 pH 是否有利于骨形态发生蛋白 2(BMP-2)的 N 端 PEG 化。采用聚乙二醇醛(PEG-AL)或聚乙二醇羧甲基琥珀酰亚胺酯(PEG-NHS)在 4 的中等酸性 pH 下进行 PEG 化。与 PEG-NHS 相比,PEG-AL 在较低的摩尔过量和较短的时间内将更多的 BMP-2 主要转化为单或双 PEG 化衍生物。对 PEG 化衍生物的胰蛋白酶片段分析表明,存在部分 N 端 PEG 化特异性。PEG-AL 表现出比 PEG-NHS 更高的特异性。紫外光谱法证明 PEG 化提高了 BMP-2 在 PBS 中的溶解度。表面等离子体共振显示,PEG 化降低了 BMP-2 蛋白与 II 型受体的结合。值得注意的是,与未修饰的蛋白相比,PEG-AL 修饰的单 PEG 化 BMP-2 具有更高的细胞生物活性。更高的 N 端 PEG 化特异性与更高的受体结合亲和力和细胞活性相关。综上所述,在酸性 pH 下,PEG-AL 和 PEG-NHS 对 BMP-2 的 PEG 化表现出部分 N 端特异性,然而,这可能足以实现有效的定点 PEG 化过程。