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基因型与表型之间的光可裂解连接,用于快速高效地回收编码亲和选择蛋白的核酸。

Photocleavable linkage between genotype and phenotype for rapid and efficient recovery of nucleic acids encoding affinity-selected proteins.

作者信息

Doi Nobuhide, Takashima Hideaki, Wada Aiko, Oishi Yuko, Nagano Tetsuya, Yanagawa Hiroshi

机构信息

Department of Biosciences and Informatics, Keio University, 3-14-1 Hiyoshi, Kohoku-ku, Yokohama 223-8522, Japan.

出版信息

J Biotechnol. 2007 Sep 15;131(3):231-9. doi: 10.1016/j.jbiotec.2007.07.947. Epub 2007 Aug 2.

Abstract

In vitro display technologies, such as mRNA display and DNA display are powerful tools to screen peptides and proteins with desired functions from combinatorial libraries in the fields of directed protein evolution and proteomics. When screening combinatorial libraries of polypeptides (phenotype), each of which is displayed on its gene (genotype), the problem remains, how best to recover the genotype moiety whose phenotype moiety has bound to the desired target. Here, we describe the use of a photocleavable 2-nitrobenzyl linker between genotype (DNA or mRNA) and phenotype (protein) in our DNA and mRNA display systems. This technique allows rapid and efficient recovery of selected nucleic acids by simple UV irradiation at 4 degrees C for 15 min. Further, we confirmed that the photocleavable DNA display and mRNA display systems are useful for in vitro selection of epitope peptides, recombinant antibodies, and drug-receptor interactions. Thus, these improved methods should be useful in therapeutics and diagnostics, e.g., for screening high-affinity binders, such as enzyme inhibitors and recombinant antibodies from random peptide and antibody libraries, as well as for screening drug-protein interactions from cDNA libraries.

摘要

体外展示技术,如mRNA展示和DNA展示,是在定向蛋白质进化和蛋白质组学领域从组合文库中筛选具有所需功能的肽和蛋白质的强大工具。当筛选多肽组合文库(表型)时,每个多肽都展示在其基因(基因型)上,问题仍然存在,即如何最好地回收其表型部分已与所需靶标结合的基因型部分。在这里,我们描述了在我们的DNA和mRNA展示系统中,在基因型(DNA或mRNA)和表型(蛋白质)之间使用可光裂解的2-硝基苄基接头。该技术允许通过在4℃下简单紫外线照射15分钟快速有效地回收选定的核酸。此外,我们证实可光裂解的DNA展示和mRNA展示系统可用于体外选择表位肽、重组抗体和药物-受体相互作用。因此,这些改进的方法在治疗和诊断中应该是有用的,例如,用于从随机肽和抗体文库中筛选高亲和力结合物,如酶抑制剂和重组抗体,以及用于从cDNA文库中筛选药物-蛋白质相互作用。

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