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从噬菌体展示肽库中对与增殖相关的肿瘤上调蛋白进行有偏选择。

Biased selection of propagation-related TUPs from phage display peptide libraries.

作者信息

Zade Hesam Motaleb, Keshavarz Reihaneh, Shekarabi Hosna Sadat Zahed, Bakhshinejad Babak

机构信息

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

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

出版信息

Amino Acids. 2017 Aug;49(8):1293-1308. doi: 10.1007/s00726-017-2452-z. Epub 2017 Jun 29.

Abstract

Phage display is rapidly advancing as a screening strategy in drug discovery and drug delivery. Phage-encoded combinatorial peptide libraries can be screened through the affinity selection procedure of biopanning to find pharmaceutically relevant cell-specific ligands. However, the unwanted enrichment of target-unrelated peptides (TUPs) with no true affinity for the target presents an important barrier to the successful screening of phage display libraries. Propagation-related TUPs (Pr-TUPs) are an emerging but less-studied category of phage display-derived false-positive hits that are displayed on the surface of clones with faster propagation rates. Despite long regarded as an unbiased selection system, accumulating evidence suggests that biopanning may create biological bias toward selection of phage clones with certain displayed peptides. This bias can be dependent on or independent of the displayed sequence and may act as a major driving force for the isolation of fast-growing clones. Sequence-dependent bias is reflected by censorship or over-representation of some amino acids in the displayed peptide and sequence-independent bias is derived from either point mutations or rare recombination events occurring in the phage genome. It is of utmost interest to clean biopanning data by identifying and removing Pr-TUPs. Experimental and bioinformatic approaches can be exploited for Pr-TUP discovery. With no doubt, obtaining deeper insight into how Pr-TUPs emerge during biopanning and how they could be detected provides a basis for using cell-targeting peptides isolated from phage display screening in the development of disease-specific diagnostic and therapeutic platforms.

摘要

噬菌体展示作为一种药物发现和药物递送的筛选策略正在迅速发展。通过生物淘选的亲和选择程序,可以筛选噬菌体编码的组合肽库,以找到与药学相关的细胞特异性配体。然而,对靶标没有真正亲和力的非靶标相关肽(TUPs)的不必要富集,是成功筛选噬菌体展示文库的一个重要障碍。与增殖相关的TUPs(Pr-TUPs)是一类新出现但研究较少的噬菌体展示衍生的假阳性命中物,它们显示在增殖速度较快的克隆表面。尽管长期以来被视为一种无偏选择系统,但越来越多的证据表明,生物淘选可能会对具有某些展示肽的噬菌体克隆的选择产生生物学偏差。这种偏差可能依赖于或独立于展示序列,并可能成为分离快速生长克隆的主要驱动力。序列依赖性偏差表现为展示肽中某些氨基酸的审查或过度代表,而序列独立性偏差则源于噬菌体基因组中发生的点突变或罕见重组事件。通过识别和去除Pr-TUPs来清理生物淘选数据至关重要。可以利用实验和生物信息学方法来发现Pr-TUPs。毫无疑问,更深入地了解Pr-TUPs在生物淘选过程中是如何出现的以及如何检测它们,为在疾病特异性诊断和治疗平台的开发中使用从噬菌体展示筛选中分离出的细胞靶向肽提供了基础。

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