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Increased Fab thermoresistance via VH-targeted directed evolution

机译:通过VH定向进化提高Fab热阻

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摘要

Antibody aggregation is frequently mediated by the complementarity determining regions within the variable domains and can significantly decrease purification yields, shorten shelf-life and increase the risk of anti-drug immune responses. Aggregation-resistant antibodies could offset these risks; accordingly, we have developed a directed evolution strategy to improve Fab stability. A Fab-phage display vector was constructed and the VH domain targeted for mutagenesis by error-prone PCR. To enrich for thermoresistant clones, the resulting phage library was transiently heated, followed by selection for binding to an anti-light chain constant domain antibody. Five unique variants were identified, each possessing one to three amino acid substitutions. Each engineered Fab possessed higher, Escherichia coli expression yield, a 2–3°C increase in apparent melting temperature and improved aggregation resistance upon heating at high concentration. Select mutations were combined and shown to confer additive improvements to these biophysical characteristics. Finally, the wild-type and most stable triple variant Fab variant were converted into a human IgG1 and expressed in mammalian cells. Both expression level and aggregation resistance were similarly improved in the engineered IgG1. Analysis of the wild-type Fab crystal structure provided a structural rationale for the selected residues changes. This approach can help guide future Fab stabilization efforts.
机译:抗体聚集通常由可变域内的互补决定区介导,可显着降低纯化产率,缩短保质期并增加抗药物免疫反应的风险。抗聚集抗体可以抵消这些风险。因此,我们已经开发了一种定向进化策略来提高Fab的稳定性。构建了Fab噬菌体展示载体,并通过易错PCR将VH结构域靶向诱变。为了富集耐热克隆,瞬时加热所得噬菌体文库,然后选择与抗轻链恒定域抗体的结合。确定了五个独特的变体,每个变体具有1-3个氨基酸取代。每个工程化的Fab均具有较高的大肠杆菌表达量,在高浓度下加热时,其表观熔解温度提高2–3°C,并提高了抗聚集性。组合选择的突变并显示出赋予这些生物物理特性加性的改善。最后,将野生型和最稳定的三重变体Fab变体转化为人IgG1并在哺乳动物细胞中表达。在工程化的IgG1中,表达水平和聚集抗性均得到了类似的改善。对野生型Fab晶体结构的分析为所选残基变化提供了结构原理。这种方法可以帮助指导未来的晶圆厂稳定工作。

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