静电
静电学
静电相互作用
离子强度
二价(发动机)
疏水效应
蛋白质-蛋白质相互作用
化学
融合蛋白
氢键
内在无序蛋白质
化学物理
融合
生物物理学
离子键合
离子
分子
生物化学
生物
物理化学
金属
水溶液
哲学
工程类
有机化学
电气工程
重组DNA
基因
语言学
作者
James K. Forder,Veerabhadraiah Palakollu,Sudeep Adhikari,Marco A. Blanco,M.G. Derebe,Heidi M. Ferguson,Suman Luthra,Erik V. Munsell,Christopher J. Roberts
标识
DOI:10.1021/acs.molpharmaceut.3c01009
摘要
Attractive self-interactions and reversible self-association are implicated in many problematic solution behaviors for therapeutic proteins, such as irreversible aggregation, elevated viscosity, phase separation, and opalescence. Protein self-interactions and reversible oligomerization of two Fc-fusion proteins (monovalent and bivalent) and the corresponding fusion partner protein were characterized experimentally with static and dynamic light scattering as a function of pH (5 and 6.5) and ionic strength (10 mM to at least 300 mM). The fusion partner protein and monovalent Fc-fusion each displayed net attractive electrostatic self-interactions at pH 6.5 and net repulsive electrostatic self-interactions at pH 5. Solutions of the bivalent Fc-fusion contained higher molecular weight species that prevented quantification of typical interaction parameters (B22 and kD). All three of the proteins displayed reversible self-association at pH 6.5, where oligomers dissociated with increased ionic strength. Coarse-grained molecular simulations were used to model the self-interactions measured experimentally, assess net self-interactions for the bivalent Fc-fusion, and probe the specific electrostatic interactions between charged amino acids that were involved in attractive electrostatic self-interactions. Mayer-weighted pairwise electrostatic energies from the simulations suggested that attractive electrostatic self-interactions at pH 6.5 for the two Fc-fusion proteins were due to cross-domain interactions between the fusion partner domain(s) and the Fc domain.
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