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天然分裂内含肽 Npu DnaE 介导的双特异性 IgG 抗体的快速产生。

Naturally split intein Npu DnaE mediated rapid generation of bispecific IgG antibodies.

机构信息

Engineering Research Center of Cell & Therapeutic Antibody, Ministry of Education, China, School of Pharmacy, Shanghai Jiao Tong University, China; Jecho Biopharmaceuticals Co., Ltd., China.

Engineering Research Center of Cell & Therapeutic Antibody, Ministry of Education, China, School of Pharmacy, Shanghai Jiao Tong University, China.

出版信息

Methods. 2019 Feb 1;154:32-37. doi: 10.1016/j.ymeth.2018.10.001. Epub 2018 Oct 9.

Abstract

High product purity, preserving natural IgG architecture, and excellent production efficiency are highly desirable in bispecific antibody manufacturing. We have reported a platform called Bispecific Antibody by Protein Trans-Splicing (BAPTS) to synthesize BsAbs with natural human IgG structure and no chain mispairing. In the method, two antibody fragments carrying different target-specificities are separately expressed in mammalian cells and subsequently fused to form BsAbs by utilizing the trans-splicing property of the split intein Npu DnaE. The hinge region of antibody, a region with less functional impact, is selected for conjugating the two fragments. The method involves the following steps: (i) constructing five plasmids coding antibody components; (ii) separately expressing and purifying two antibody fragments A and B. Fragment A contains one Fab, "Knobs-into-Holes" mutations in the CH3 domain and NPU DnaE. Fragment B contains another Fab and NPU DnaE; (iii) mixing of fragments A and B under permissive reducing conditions in vitro to enable trans-splicing reaction; (iv) removing the reductant to allow re-oxidation of disulfide bonds; (v) isolating BsAb product from unreacted precursors by affinity chromatography. The method allows correct assembly of two heavy and two light chains to form bispecific IgG antibodies in natural structure with no synthetic linkers. No chain mispairing was observed in the product by UPLC-MASS. In addition, the observed kinetics and low reaction activation energy confirmed that the trans-splicing is thermodynamically favored reaction. The BAPTS technology is feasible for industrial applications.

摘要

高产物纯度、保留天然 IgG 结构和出色的生产效率是双特异性抗体制造的理想要求。我们报道了一种称为蛋白转剪接双特异性抗体(Bispecific Antibody by Protein Trans-Splicing,BAPTS)的平台,用于合成具有天然人 IgG 结构且无链错配的双特异性抗体。在该方法中,两个具有不同靶特异性的抗体片段分别在哺乳动物细胞中表达,然后通过利用分裂内含肽 Npu DnaE 的转剪接特性融合形成双特异性抗体。抗体的铰链区(功能影响较小的区域)被选择用于连接两个片段。该方法包括以下步骤:(i)构建编码抗体成分的五个质粒;(ii)分别表达和纯化两个抗体片段 A 和 B。片段 A 包含一个 Fab、CH3 结构域中的“Knobs-into-Holes”突变和 Npu DnaE。片段 B 包含另一个 Fab 和 Npu DnaE;(iii)在体外允许还原条件下混合片段 A 和 B,以进行转剪接反应;(iv)去除还原剂,允许二硫键重新氧化;(v)通过亲和层析从未反应的前体中分离双特异性抗体产物。该方法允许正确组装两个重链和两个轻链,以天然结构形成双特异性 IgG 抗体,无合成接头。通过 UPLC-MASS 观察到产物中没有链错配。此外,观察到的动力学和低反应活化能证实转剪接是热力学有利的反应。BAPTS 技术适用于工业应用。

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