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通过无细胞表达锚定DNA实现蛋白质的微珠展示

Microbead display of proteins by cell-free expression of anchored DNA.

作者信息

Nord Olof, Uhlén Mathias, Nygren Per-Ake

机构信息

Department of Biotechnology, Royal Institute of Technology (KTH), AlbaNova University Center, SE-106 91 Stockholm, Sweden.

出版信息

J Biotechnol. 2003 Dec 5;106(1):1-13. doi: 10.1016/j.jbiotec.2003.09.002.

Abstract

Gene expression technologies where nucleic acid sequences remain physically linked to their corresponding gene products are important tools for selection and identification of rare variants in large protein libraries. Here, we describe a gene expression system, which combines the potential of bead-based suspension array technology (SAT) with gene expression and clonal identification. Using streptavidin-coated polystyrene micrometer-sized beads as solid supports for anchored PCR products, we have investigated conditions for cell-free expression and bioaffinity technology to provide clonal co-anchoring of corresponding gene products. Experiments showed that coupled transcription and translation of PCR product expression cassettes resulted in display of affinity-anchored proteins whose binding characteristics could be analyzed via direct and selective interaction with a fluorescently labeled target protein. Interestingly, experiments performed with differently biotinylated PCR products showed that the efficiency of display was dependent on the directionality of the expression cassette relative to the bead surface. In spiked systems, using small immunoglobulin binding proteins as models, we demonstrate efficient flow cytometric sorting of beads corresponding to the target interacting clones, verified by post-sorting analysis and clonal identification at DNA level. The use of this technology, including alternative formats, for different proteomics applications is discussed.

摘要

核酸序列与其相应基因产物保持物理连接的基因表达技术,是在大型蛋白质文库中筛选和鉴定稀有变体的重要工具。在此,我们描述了一种基因表达系统,该系统将基于微珠的悬浮阵列技术(SAT)的潜力与基因表达和克隆鉴定相结合。使用链霉亲和素包被的聚苯乙烯微米级微珠作为固定PCR产物的固体支持物,我们研究了无细胞表达和生物亲和技术的条件,以实现相应基因产物的克隆共固定。实验表明,PCR产物表达盒的转录和翻译偶联导致了亲和固定蛋白的展示,其结合特性可通过与荧光标记靶蛋白的直接和选择性相互作用来分析。有趣的是,用不同生物素化的PCR产物进行的实验表明,展示效率取决于表达盒相对于微珠表面的方向性。在加标系统中,以小免疫球蛋白结合蛋白为模型,我们展示了对应于靶相互作用克隆的微珠的高效流式细胞术分选,通过分选后分析和DNA水平的克隆鉴定得到验证。本文还讨论了该技术(包括替代形式)在不同蛋白质组学应用中的使用。

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