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全面研究单链双特异性抗体的结构域重排,以确定最佳的构象组合和微生物宿主细胞。

Comprehensive study of domain rearrangements of single-chain bispecific antibodies to determine the best combination of configurations and microbial host cells.

机构信息

a Department of Biotechnology and Life Science, Graduate School of Engineering , Tokyo University of Agriculture and Technology , Tokyo , Japan.

b R&D Department of ProteinExpress Co., Ltd ., Chiba , Japan.

出版信息

MAbs. 2018 Aug/Sep;10(6):854-863. doi: 10.1080/19420862.2018.1476815. Epub 2018 Jul 9.

Abstract

Small bispecific antibodies (bsAbs) are important therapeutic molecules and represent the first bsAb format approved by the United States Food and Drug Administration. Diabody (Db), a small bsAb format, has four possible domain orders; we previously reported the differences in the expression levels and cancer growth inhibition effects upon rearranging the domain order of this format. However, there have been no comprehensive reports on domain rearrangements of bispecific single-chain Db (scDb) and tandem single-chain Fv (taFv), which are widely used bsAb formats. In this study, we designed all possible domain orders for scDb and taFv (each with eight variants) with identical Fv pairs and individually expressed all 16 variants using Escherichia coli, Pichia pastoris, and Brevibacillus choshinensis. Comprehensive investigations showed that the intrinsic functions of the variants were similar to each other, regardless of the expression host system, but expression levels varied depending on the format as well as on the host cell. Among the 16 variants, we found a promising candidate that exhibited high activity and productivity. Furthermore, we determined that B. choshinensis is an attractive expression host because of its secretory production of recombinant proteins.

摘要

小型双特异性抗体(bsAbs)是重要的治疗性分子,代表了首个获得美国食品和药物管理局批准的 bsAb 形式。二联体(Db)是一种小型 bsAb 形式,具有四种可能的结构域顺序;我们之前曾报道过通过重新排列这种形式的结构域顺序,表达水平和对癌症生长抑制效果的差异。然而,对于广泛应用的 bsAb 形式,双特异性单链 Db(scDb)和串联单链 Fv(taFv)的结构域重排,尚未有全面的报道。在这项研究中,我们设计了具有相同 Fv 对的 scDb 和 taFv 的所有可能的结构域顺序(每个都有 8 种变体),并使用大肠杆菌、毕赤酵母和地衣芽孢杆菌分别单独表达了所有 16 种变体。全面的研究表明,无论表达宿主系统如何,变体的内在功能都彼此相似,但表达水平取决于形式和宿主细胞。在这 16 种变体中,我们发现了一种有前途的候选物,它表现出高活性和高生产力。此外,我们确定地衣芽孢杆菌是一种有吸引力的表达宿主,因为它可以分泌生产重组蛋白。

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