Controlled Fab-arm exchange for the generation of stable bispecific IgG1

化学 色谱法 组合化学 计算生物学 生物
作者
Aran F. Labrijn,Joyce Meesters,Patrick Priem,Rob N. de Jong,Ewald T.J. van den Bremer,Muriel D. van Kampen,Arnout F. Gerritsen,Janine Schuurman,Paul W.H.I. Parren
出处
期刊:Nature Protocols [Nature Portfolio]
卷期号:9 (10): 2450-2463 被引量:113
标识
DOI:10.1038/nprot.2014.169
摘要

Labrijn et al. describe the generation of bispecific antibodies through controlled Fab-arm exchange, involving separate expression of two parental IgG1s containing single matching point mutations, followed by recombination of the 'half molecules'. The generation of bispecific antibodies (bsAbs) with natural IgG architecture in a practical and efficient manner has been a longstanding challenge. Here we describe controlled Fab-arm exchange (cFAE), which is an easy-to-use method to generate bispecific IgG1 (bsIgG1). The protocol involves the following: (i) separate expression of two parental IgG1s containing single matching point mutations in the CH3 domain; (ii) mixing of parental IgG1s under permissive redox conditions in vitro to enable recombination of half-molecules; (iii) removal of the reductant to allow reoxidation of interchain disulfide bonds; and (iv) analysis of exchange efficiency and final product using chromatography-based or mass spectrometry (MS)–based methods. The protocol generates bsAbs with regular IgG architecture, characteristics and quality attributes both at bench scale (micrograms to milligrams) and at a mini-bioreactor scale (milligrams to grams) that is designed to model large-scale manufacturing (kilograms). Starting from good-quality purified proteins, exchange efficiencies of ≥95% can routinely be obtained within 2–3 d (including quality control).
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