Sandoz Biopharmaceuticals, Mengeš, Lek Pharmaceuticals d.d., Kolodvorska 27, SI-1234 Mengeš, Slovenia.
Bioconjug Chem. 2013 Jun 19;24(6):889-96. doi: 10.1021/bc3005232. Epub 2013 May 10.
A new PEGylation reagent enabling selective modification of free thiol groups is described in this article. The reagent was synthesized by attaching linear polyethylene glycol (PEG) N-hydroxysuccinimide to selenocystamine. The reaction was very fast, resulting in over 95% conversion yield. The active group of this new PEG-Se reagent is a diselenide, reacting with thiols via thiol/diselenide exchange reaction. Recombinant human granulocyte colony-stimulating factor (rhG-CSF) with an unpaired cysteine at the position 18 (Cys18) was used as a model protein. It was comparatively PEGylated with the new PEG-Se reagent, as well as with commercially available maleimide (PEG-Mal) and ortho-pyridyl disulfide (PEG-OPSS) PEG reagents. The highest PEGylation yield was obtained with PEG-Mal, followed by PEG-OPSS and PEG-Se. The reaction rates of PEG-Mal and PEG-Se were comparable, while the reaction rate of PEG-OPSS was lower. Purified monoPEGylated rhG-CSF conjugates were characterized and compared. Differences in activity, stability, and in vivo performance were observed, although all conjugates contained a 20 kDa PEG attached to the Cys18. Minor conformational changes were observed in the conjugate prepared with PEG-Mal. These changes were also reflected in low in vitro biological activity and aggregate formation of the maleimide conjugate. The conjugate prepared with PEG-Se had the highest in vitro biological activity, while the conjugate prepared with PEG-OPSS had the best in vivo performance.
本文描述了一种新的聚乙二醇(PEG)化试剂,可用于选择性修饰游离巯基。该试剂是通过将线性聚乙二醇(PEG)N-羟基琥珀酰亚胺连接到硒代半胱氨酸上合成的。反应非常快,转化率超过 95%。这种新的 PEG-Se 试剂的活性基团是二硒键,通过巯基/二硒键交换反应与巯基反应。使用位置 18 处未配对半胱氨酸(Cys18)的重组人粒细胞集落刺激因子(rhG-CSF)作为模型蛋白。与新的 PEG-Se 试剂以及商业上可用的马来酰亚胺(PEG-Mal)和邻吡啶二硫化物(PEG-OPSS)PEG 试剂比较,对其进行了 PEG 化。用 PEG-Mal 获得了最高的 PEG 化产率,其次是 PEG-OPSS 和 PEG-Se。PEG-Mal 和 PEG-Se 的反应速率相当,而 PEG-OPSS 的反应速率较低。对纯化的单 PEG 化 rhG-CSF 缀合物进行了表征和比较。尽管所有缀合物都在 Cys18 上连接了 20 kDa 的 PEG,但观察到活性、稳定性和体内性能存在差异。用 PEG-Mal 制备的缀合物观察到较小的构象变化。这些变化也反映在马来酰亚胺缀合物的体外生物活性低和聚集形成上。用 PEG-Se 制备的缀合物具有最高的体外生物活性,而用 PEG-OPSS 制备的缀合物具有最佳的体内性能。