[骆驼源天然噬菌体纳米体展示文库构建及抗cd22纳米体筛选]。

细胞与分子免疫学杂志 Pub Date : 2025-03-01
Wanjun He, Kai Cui, Xiqian Zhang, Dan Jiang, Guangxian Xu
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引用次数: 0

摘要

目的筛选抗cd22特异性纳米体,为开发免疫治疗药物提供依据。方法构建噬菌体纳米体文库,分析其多样性。以生物素化CD22抗原为靶点进行三轮生物素化链亲和素液相筛选,并通过ELISA和基因测序鉴定抗CD22的纳米体序列。结果构建的噬菌体纳米体文库容量为3.89×109 CFU/mL,有效片段的插入率高于85%。在此文库的基础上,筛选出7个抗人CD22纳米体,氨基酸序列比较结果表明,它们的总体相似性为70.34%,且均为亲水性蛋白。蛋白-蛋白复合物对接预测结果表明,5个纳米体序列的模拟蛋白均可与CD22配对并连接,主要作用力为疏水相互作用和氢键作用。结论本研究为靶向CD22的嵌合抗原受体T细胞的研究提供了基础,成功构建了天然噬菌体纳米体文库,获得了5个抗CD22特异性纳米体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Construction of a camel-derived natural phage nanobody display library and screening of anti-CD22 nanobodies].

Objective To screen the anti-CD22-specific nanobodies to provide a basis for immunotherapy agents. Methods The naive phage nanobody library was constructed and its diversity was analyzed. Three rounds of biotinylated streptavidin liquid phase screening were performed by using biotinylated CD22 antigen as the target, and the sequence of nanobodies against CD22 were identified by ELISA and gene sequencing. Results The capacity of the constructed naive phage nanobody library was 3.89×109 CFU/mL, and the insertion of effective fragments was higher than 85%. Based on this library, seven anti-human CD22 nanobodies were screened, and the amino acid sequence comparison results showed that the overall similarity was 70.34%, and all of them were hydrophilic proteins. The results of protein-protein complex docking prediction showed that the mimetic proteins of the five nanobody sequences could be paired and linked to CD22, and the main forces were hydrophobic interaction and hydrogen bonding. Conclusion This study provided a basis for the study of chimeric antigen receptor T cells targeting CD22, successfully constructed the natural phage nanobody library and obtaining five anti-CD22-specific nanobodies.

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