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噬菌体展示生物淘选及与靶标无关肽段的分离:探寻隐藏于组合文库中的非特异性结合物。

Phage display biopanning and isolation of target-unrelated peptides: in search of nonspecific binders hidden in a combinatorial library.

作者信息

Bakhshinejad Babak, Zade Hesam Motaleb, Shekarabi Hosna Sadat Zahed, Neman Sara

机构信息

Department of Genetics, Faculty of Biological Sciences, Tarbiat Modares University, P.O. Box: 14115-154, Tehran, Iran.

Department of Genetics, Faculty of Basic Sciences, Science and Research Branch, Islamic Azad University, Tehran, Iran.

出版信息

Amino Acids. 2016 Dec;48(12):2699-2716. doi: 10.1007/s00726-016-2329-6. Epub 2016 Sep 20.

Abstract

Phage display is known as a powerful methodology for the identification of targeting ligands that specifically bind to a variety of targets. The high-throughput screening of phage display combinatorial peptide libraries is performed through the affinity selection method of biopanning. Although phage display selection has proven very successful in the discovery of numerous high-affinity target-binding peptides with potential application in drug discovery and delivery, the enrichment of false-positive target-unrelated peptides (TUPs) without any actual affinity towards the target remains a major problem of library screening. Selection-related TUPs may emerge because of binding to the components of the screening system rather than the target. Propagation-related TUPs may arise as a result of faster growth rate of some phage clones enabling them to outcompete slow-propagating clones. Amplification of the library between rounds of biopanning makes a significant contribution to the selection of phage clones with propagation advantage. Distinguishing nonspecific TUPs from true target binders is of particular importance for the translation of biopanning findings from basic research to clinical applications. Different experimental and in silico approaches are applied to assess the specificity of phage display-derived peptides towards the target. Bioinformatic tools are playing a rapidly growing role in the analysis of biopanning data and identification of target-irrelevant TUPs. Recent progress in the introduction of efficient strategies for TUP detection holds enormous promise for the discovery of clinically relevant cell- and tissue-homing peptides and paves the way for the development of novel targeted diagnostic and therapeutic platforms in pharmaceutical areas.

摘要

噬菌体展示是一种强大的方法,用于鉴定能特异性结合各种靶标的靶向配体。通过生物淘选的亲和选择方法对噬菌体展示组合肽库进行高通量筛选。尽管噬菌体展示筛选在发现众多具有药物发现和递送潜在应用的高亲和力靶标结合肽方面已被证明非常成功,但富集对靶标没有任何实际亲和力的假阳性靶标无关肽(TUP)仍然是文库筛选的一个主要问题。与筛选相关的TUP可能由于与筛选系统的成分结合而非靶标结合而出现。与增殖相关的TUP可能是由于一些噬菌体克隆的生长速度更快,使其能够胜过生长缓慢的克隆而产生的。在生物淘选轮次之间对文库进行扩增对具有增殖优势的噬菌体克隆的选择有重大贡献。区分非特异性TUP与真正的靶标结合物对于将生物淘选结果从基础研究转化为临床应用尤为重要。应用不同的实验和计算机方法来评估噬菌体展示衍生肽对靶标的特异性。生物信息学工具在生物淘选数据分析和靶标无关TUP的鉴定中发挥着越来越重要的作用。引入高效TUP检测策略的最新进展为发现临床相关的细胞和组织归巢肽带来了巨大希望,并为制药领域新型靶向诊断和治疗平台的开发铺平了道路。

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