Peng Fei, Liu Yongdong, Li Xiunan, Sun Lijing, Zhao Dawei, Wang Qingqing, Ma Guanghui, Su Zhiguo
National Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China.
National Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China.
J Biotechnol. 2014 Jan 20;170:42-9. doi: 10.1016/j.jbiotec.2013.10.037. Epub 2013 Dec 4.
Previous studies demonstrated that hydrophobic proteins could be PEGylated in organic phase rather than water phase. It is still not known what the difference is for a hydrophilic protein's PEGylation in these two different phases. In this study, granulocyte colony stimulating factor (G-CSF) was dissolved in neat dimethyl sulfoxide (DMSO) and was PEGylated. In comparison with the PEGylation in water solution, the PEGylation degree in the organic solvent increased by 33% and 42% for PEG-maleimide (MAL-PEG) and PEG-succinimidyl carbonate (SC-PEG) respectively. Structure analysis revealed that the protein was unfolded in DMSO, which could make the PEGylated sites of G-CSF easily accessible. The hydrolysis half-life in water solution was 40min and 9h for SC-PEG and MAL-PEG respectively. However, in DMSO solvent, PEGs were very stable and no hydrolysis could be detected. Stopped-flow demonstrated that the conjugation speed of G-CSF by MAL-PEG and SC-PEG in DMSO were 1.6×10(4) and 2×10(2) times faster than those in aqueous solution. The remarkable acceleration could mainly be attributed to an increase of protein nucleophilicity in DMSO. The results of this study could be referential to industrial application where the cost of PEG reagents and the speed of reaction on large scale are very important.
先前的研究表明,疏水性蛋白质可以在有机相中而非水相中进行聚乙二醇化修饰。然而,对于亲水性蛋白质在这两种不同相中进行聚乙二醇化修饰的差异仍不清楚。在本研究中,将粒细胞集落刺激因子(G-CSF)溶解在纯二甲基亚砜(DMSO)中并进行聚乙二醇化修饰。与在水溶液中的聚乙二醇化修饰相比,对于聚乙二醇马来酰亚胺(MAL-PEG)和聚乙二醇琥珀酰亚胺碳酸酯(SC-PEG),在有机溶剂中的聚乙二醇化修饰程度分别提高了33%和42%。结构分析表明,蛋白质在DMSO中发生了去折叠,这使得G-CSF的聚乙二醇化修饰位点易于接近。在水溶液中,SC-PEG和MAL-PEG的水解半衰期分别为40分钟和9小时。然而,在DMSO溶剂中,聚乙二醇非常稳定,未检测到水解现象。停流实验表明,MAL-PEG和SC-PEG在DMSO中与G-CSF的偶联速度分别比在水溶液中快1.6×10⁴和2×10²倍。这种显著的加速主要归因于蛋白质在DMSO中的亲核性增加。本研究结果对于聚乙二醇试剂成本和大规模反应速度非常重要的工业应用具有参考价值。