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一种用于从非常大的肽库中鉴定配体的体外多核糖体展示系统。

An in vitro polysome display system for identifying ligands from very large peptide libraries.

作者信息

Mattheakis L C, Bhatt R R, Dower W J

机构信息

Affymax Research Institute, Palo Alto, CA 94304.

出版信息

Proc Natl Acad Sci U S A. 1994 Sep 13;91(19):9022-6. doi: 10.1073/pnas.91.19.9022.

Abstract

We have used an in vitro protein synthesis system to construct a very large library of peptides displayed on polysomes. A pool of DNA sequences encoding 10(12) random decapeptides was incubated in an Escherichia coli S30 coupled transcription/translation system. Polysomes were isolated and screened by affinity selection of the nascent peptides on an immobilized monoclonal antibody specific for the peptide dynorphin B. The mRNA from the enriched pool of polysomes was recovered, copied into cDNA, and amplified by the polymerase chain reaction (PCR) to produce template for the next round of in vitro synthesis and selection. A portion of the amplified template from each round was cloned into a filamentous phagemid vector to determine the specificity of peptide binding by phage ELISA and to sequence the DNA. After four rounds of affinity selection, the majority of clones encoded peptides that bound specifically to the antibody and contained a consensus sequence that is similar to the known epitope for the antibody. Synthetic peptides corresponding to several of these sequences have binding affinities ranging from 7 to 140 nM. The in vitro system described here has the potential to screen peptide libraries that are three to six orders of magnitude larger than current biological peptide display systems.

摘要

我们使用了一种体外蛋白质合成系统来构建一个展示在多核糖体上的非常大的肽库。将一组编码10¹²个随机十肽的DNA序列在大肠杆菌S30偶联转录/翻译系统中孵育。分离多核糖体,并通过对固定化的针对强啡肽B的单克隆抗体上的新生肽进行亲和选择来筛选。从富集的多核糖体池中回收mRNA,逆转录成cDNA,并通过聚合酶链反应(PCR)扩增以产生用于下一轮体外合成和选择的模板。将每一轮扩增的模板的一部分克隆到丝状噬菌粒载体中,以通过噬菌体ELISA确定肽结合的特异性并对DNA进行测序。经过四轮亲和选择后,大多数克隆编码的肽与抗体特异性结合,并包含一个与该抗体已知表位相似的共有序列。对应于其中几个序列的合成肽的结合亲和力范围为7至140 nM。这里描述的体外系统有可能筛选比当前生物肽展示系统大3至6个数量级的肽库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/700c/44739/f0f943486a1c/pnas01141-0304-a.jpg

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