Albumin-binding domain from Streptococcus zooepidemicus protein Zag as a novel strategy to improve the half-life of therapeutic proteins

单域抗体 融合蛋白 抗体 人血清白蛋白 重组DNA 药代动力学 牛血清白蛋白 体内 化学 生物 计算生物学 生物化学 药理学 免疫学 生物技术 基因
作者
Cátia Cantante,Sara Lourenço,Maurício Morais,João Leandro,Lurdes Gano,Nuno Silva,Paula Leandro,Mónica Serrano,Adriano O. Henriques,A André,Catarina Cunha-Santos,C.M.G.A. Fontes,João D. G. Correia,Frederico Aires‐da‐Silva,João Gonçalves
出处
期刊:Journal of Biotechnology [Elsevier]
卷期号:253: 23-33 被引量:14
标识
DOI:10.1016/j.jbiotec.2017.05.017
摘要

Recombinant antibody fragments belong to the promising class of biopharmaceuticals with high potential for future therapeutic applications. However, due to their small size they are rapidly cleared from circulation. Binding to serum proteins can be an effective approach to improve pharmacokinetic properties of short half-life molecules. Herein, we have investigated the Zag albumin-binding domain (ABD) derived from Streptococcus zooepidemicus as a novel strategy to improve the pharmacokinetic properties of therapeutic molecules. To validate our approach, the Zag ABD was fused with an anti-TNFα single-domain antibody (sdAb). Our results demonstrated that the sdAb-Zag fusion protein was highly expressed and specifically recognizes human, rat and mouse serum albumins with affinities in the nanomolar range. Moreover, data also demonstrated that the sdAb activity against the therapeutic target (TNFα) was not affected when fused with Zag ABD. Importantly, the Zag ABD increased the sdAb half-life ∼39-fold (47min for sdAb versus 31h for sdAb-Zag). These findings demonstrate that the Zag ABD fusion is a promising approach to increase the half-life of small recombinant antibodies molecules without affecting their therapeutic efficacy. Moreover, the present study strongly suggests that the Zag ABD fusion strategy can be potentially used as a universal method to improve the pharmokinetics properties of many others therapeutics proteins and peptides in order to improve their dosing schedule and clinical effects.
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