Thi Nguyen Ngoc-Thanh, Yun Soi, Lim Dong Woo, Lee E K
a Department of Bionanotechnology, Graduate School , Hanyang University ERICA , Ansan , Korea.
Prep Biochem Biotechnol. 2018;48(6):522-527. doi: 10.1080/10826068.2018.1466157. Epub 2018 Jun 22.
'Shielding' effect of a conjugated PEG molecule could cause a change in the electrostatic interaction characteristics of a PEGylate. We investigated how PEG chain length (or molecular weight) alters the electrostatic interaction potential of exenatide variants using their mono-PEGylates in a branched and linear form as model PEGylates. First, we performed the experiments to demonstrate the elution time changes of the mono-PEGylates conjugated with various MW PEGs (5, 10, 20, and 40 kD) using cation exchange chromatography (HiTrap SP) at various pHs (2.5, 3.0, 3.5, and 4.0). Then, we calculated the net surface charge of each mono-PEGylate to propose the PEG molecule's shielding range in terms of the number of amino acids adjacent to the conjugation residue, assuming that a PEG molecule in solution sweeps out a spherical space and an exenatide molecule have a secondary structure. The net charge calculation result was well-correlated with the experimental elution time data, where 5, 10, 20, and 40 kD PEG hindered the electrostatic potential of 5, 8, 12, and 17 amino acid residues in maximum, respectively, on each side of the conjugation point.
共轭聚乙二醇(PEG)分子的“屏蔽”效应可能会导致聚乙二醇化产物的静电相互作用特性发生变化。我们以支链和线性形式的单聚乙二醇化艾塞那肽变体作为模型聚乙二醇化产物,研究了PEG链长(或分子量)如何改变艾塞那肽变体的静电相互作用电位。首先,我们进行了实验,使用阳离子交换色谱(HiTrap SP)在不同pH值(2.5、3.0、3.5和4.0)下,展示与不同分子量PEG(5、10、20和40 kD)共轭的单聚乙二醇化产物的洗脱时间变化。然后,我们计算了每个单聚乙二醇化产物的净表面电荷,以根据与共轭残基相邻的氨基酸数量提出PEG分子的屏蔽范围,假设溶液中的PEG分子扫出一个球形空间且艾塞那肽分子具有二级结构。净电荷计算结果与实验洗脱时间数据高度相关,其中5、10、20和40 kD的PEG分别在共轭点两侧最多阻碍了5、8、12和17个氨基酸残基的静电电位。