免疫原性
抗体
生物
血管内皮生长因子
融合蛋白
免疫球蛋白Fc片段
化学
分子生物学
计算生物学
免疫球蛋白G
生物化学
重组DNA
免疫学
血管内皮生长因子受体
癌症研究
基因
作者
Keisuke Aoki,Katsuaki Higashi,Sakiho Oda,A. Manabe,Kayuu Maeda,Jyoji Morise,Shogo Oka,Shinsuke Inuki,Hiroaki Ohno,Shinya Oishi,Motohiro Nonaka
标识
DOI:10.1021/acschembio.4c00197
摘要
Immunogenicity is a major caveat of protein therapeutics. In particular, the long-term administration of protein therapeutic agents leads to the generation of antidrug antibodies (ADAs), which reduce drug efficacy while eliciting adverse events. One promising solution to this issue is the use of mirror-image proteins consisting of d-amino acids, which are resistant to proteolytic degradation in immune cells. We have recently reported the chemical synthesis of the enantiomeric form of the variable domain of the antibody heavy chain (d-VHH). However, identifying mirror-image antibodies capable of binding to natural ligands remains challenging. In this study, we developed a novel screening platform to identify a d-VHH specific for vascular endothelial growth factor A (VEGF-A). We performed mirror-image screening of two newly constructed synthetic VHH libraries displayed on T7 phage and identified VHH sequences that effectively bound to the mirror-image VEGF-A target (d-VEGF-A). We subsequently synthesized a d-VHH candidate that preferentially bound the native VEGF-A (l-VEGF-A) with submicromolar affinity. Furthermore, immunization studies in mice demonstrated that this d-VHH elicited no ADAs, unlike its corresponding l-VHH. Our findings highlight the utility of this novel d-VHH screening platform in the development of protein therapeutics exhibiting both reduced immunogenicity and improved efficacy.
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