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生物相关介质中 Affitin 蛋白的酶解特性分析及通过蛋白质工程提高其稳定性。

Characterization of Affitin proteolytic digestion in biorelevant media and improvement of their stabilities via protein engineering.

机构信息

CRCINA, INSERM, CNRS, Université d'Angers, Université de Nantes, Nantes, France.

NUN, INRA, CHU Nantes, UMR 1280, PhAN, IMAD, CRNH-O, 44000, Nantes, France.

出版信息

Sci Rep. 2020 Nov 12;10(1):19703. doi: 10.1038/s41598-020-76855-z.

Abstract

Affitins are a novel class of small 7 kDa artificial proteins which can be used as antibody substitutes in therapeutic, diagnostic and biotechnological applications. One challenge for this type of protein agent is their behaviour in the context of oral administration. The digestive system is central, and biorelevant media have fast emerged as relevant and reliable tools for evaluating the bioavailability of drugs. This study describes, for the first time, the stability of Affitins under simulated gastric and intestinal digestion conditions. Affitins appear to be degraded into stable fragments in in vitro gastric medium. We identified cleavage sites generated by pepsin that were silenced by site-directed mutagenesis. This protein engineering allowed us to enhance Affitin properties. We showed that a mutant M1 containing a double mutation of amino acid residues 6 and 7 in H4 and C3 Affitins acquired a resistance against proteolytic digestion. In addition, these mutations were beneficial for target affinity, as well as for production yield. Finally, we found that the mutated residues kept or increased the important pH and temperature stabilities of Affitins. These improvements are particularly sought after in the development of engineered binding proteins for research tools, preclinical studies and clinical applications.

摘要

亲和素是一类新型的 7 kDa 小人工蛋白,可以在治疗、诊断和生物技术应用中替代抗体。对于这类蛋白药物,一个挑战是它们在口服给药时的行为。消化系统是关键,生物相关介质作为评估药物生物利用度的相关和可靠工具已经迅速出现。本研究首次描述了亲和素在模拟胃和肠道消化条件下的稳定性。亲和素在体外胃介质中似乎会降解成稳定的片段。我们鉴定了由胃蛋白酶产生的切割位点,并通过定点突变使其沉默。通过这种蛋白质工程,我们增强了亲和素的特性。我们表明,包含 H4 和 C3 亲和素中氨基酸残基 6 和 7 双突变的突变体 M1 对蛋白水解消化具有抗性。此外,这些突变有利于靶亲和力以及生产产量。最后,我们发现突变残基保持或提高了亲和素的重要 pH 和温度稳定性。这些改进在用于研究工具、临床前研究和临床应用的工程结合蛋白的开发中尤为重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebbe/7661517/3d182d9863eb/41598_2020_76855_Fig1_HTML.jpg

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