重组DNA
连接器
抗体
化学
体外
肽
环肽
生物测定
分子生物学
抗原
生物化学
生物
免疫学
操作系统
基因
遗传学
计算机科学
作者
Sena Kamesawa,Mizuki Ogawa,Yoshiki Funakoshi,Masaya Kato,S. Kai,Mana Namikawa,Kyo Okazaki,Takashi Sato,Yoshihiro Kobashigawa,Hiroshi Morioka
摘要
Abstract Single-chain Fv (scFv) is a recombinant small antibody in which a polypeptide linker connects the variable regions of the light chain (VL) and the heavy chain (VH). The practical use of scFv, however, has been prevented by its tendency to aggregate due to interchain VL–VH interactions. We recently developed a cyclic scFv whose N-terminus and C-terminus were connected by protein ligation techniques. Biophysical comparisons between cyclic and linear scFv have been conducted, but cell biological evaluations remain unexplored. Here we studied the properties of cyclic and linear scFv derived from nivolumab. Biophysical studies revealed that the thermal stability was not changed but that the antigen-binding activity was approximately 3-fold higher as a result of circularization. A cell-based PD-1/PD-L1 interaction inhibitory assay revealed that the biological activity of scFv was markedly higher in the circularized form. In addition, biophysical analysis of scFv proteins incubated in the presence of serum revealed that circularization suppressed the decrease in antigen-binding activity. It could be assumed that circularization of scFv improved stability in the presence of serum, which in turn would suggest the applicability of cyclic scFv as a biopharmaceutical format.
科研通智能强力驱动
Strongly Powered by AbleSci AI