On the origin of non-specific binders isolated in the selection of phage display peptide libraries

被引:2
作者
Bakhshinejad, Babak [1 ,2 ]
Kjaer, Andreas [1 ,2 ]
机构
[1] Univ Copenhagen, Dept Biomed Sci, Cluster Mol Imaging, Copenhagen, Denmark
[2] Copenhagen Univ Hosp Rigshospitalet, Dept Clin Physiol & Nucl Med, Copenhagen, Denmark
基金
欧盟地平线“2020”; 新加坡国家研究基金会;
关键词
amplification; biopanning output; compositional bias; next-generation sequencing; non-specific binder; peptide library; phage display; target-unrelated enrichment; MAJOR COAT PROTEIN; IN-VITRO; TARGETED DELIVERY; ESCHERICHIA-COLI; BINDING PEPTIDE; SIGNAL PEPTIDE; LUNG-CANCER; IDENTIFICATION; SEQUENCE; ANTIBODY;
D O I
10.3389/fmicb.2025.1571679
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Over the recent decades, phage display has been used successfully to identify a variety of peptides with diagnostic and therapeutic applications. Despite the significant role of this technology in the pharmaceutical industry, the affinity selection of phage display peptide libraries through biopanning suffers from some limitations. The most significant drawback of phage display is the undesirable enrichment and isolation of phages whose displayed peptides have no binding affinity toward the target. Phages with high amplification rates constitute the most important category of non-specific binders. Amplification, which aims to increase the copy number of phages displaying target-specific peptides, acts like a double-edged blade and can also make a major contribution to the target-unrelated enrichment of non-specific binders, leading to compositional bias in the sequence content of the biopanning output. The cutting-edge breakthroughs fueled by the integration of next-generation sequencing (NGS) into phage display have led researchers to gain a deeper understanding of the information content of the phage population recovered from biopanning and how its peptide content changes during further rounds of selection and amplification. This body of vastly increasing information has shed more light on the complications encountered during library selection and opened new perspectives to obtain in-depth insights into amplification-associated bias in the selected phage display libraries, analyze biopanning data more rigorously, and devise more optimal protocols for phage display selections. This knowledge can finally provide a solid foundation for discovering promising target-specific binders in the evolutionary selection of phage display libraries.
引用
收藏
页数:14
相关论文
共 99 条
[1]  
Ac't Hoen P., Jirka S.M., Ten Broeke B.R., Schultes E.A., Aguilera B., Pang K.H., Et al., Phage display screening without repetitious selection rounds, Anal. Biochem, 421, (2012)
[2]  
Adey N.B., Mataragnon A.H., Rider J.E., Carter J.M., Kay B.K., Characterization of phage that bind plastic from phage-displayed random peptide libraries, Gene, 156, pp. 27-31, (1995)
[3]  
Aghebati-Maleki L., Bakhshinejad B., Baradaran B., Motallebnezhad M., Aghebati-Maleki A., Nickho H., Et al., Phage display as a promising approach for vaccine development, J. Biomed. Sci, 23, pp. 1-18, (2016)
[4]  
Anni H., Nikolaeva O., Israel Y., Selection of phage-display library peptides recognizing ethanol targets on proteins, Alcohol, 25, pp. 201-209, (2001)
[5]  
Arap W., Kolonin M.G., Trepel M., Lahdenranta J., Cardo-Vila M., Giordano R.J., Et al., Steps toward mapping the human vasculature by phage display, Nat. Med, 8, pp. 121-127, (2002)
[6]  
Asar M.C., Franco A., Soendergaard M., Phage display selection, identification, and characterization of novel pancreatic cancer targeting peptides, Biomolecules, 10, (2020)
[7]  
Ashraf M., Frigotto L., Smith M.E., Patel S., Hughes M.D., Poole A.J., Et al., ProxiMAX randomization: a new technology for non-degenerate saturation mutagenesis of contiguous codons, Biochem. Soc. Trans, 41, pp. 1189-1194, (2013)
[8]  
Bakhshinejad B., Nasiri H., Identification of a novel tumor-binding peptide for lung Cancer through in-vitro panning, Iran. J. Pharm. Res. IJPR, 17, (2018)
[9]  
Bakhshinejad B., Sadeghizadeh M., Bacteriophages and development of nanomaterials for neural regeneration, Neu. Regen. Res, 9, pp. 1955-1958, (2014)
[10]  
Bakhshinejad B., Sadeghizadeh M., A polystyrene binding target-unrelated peptide isolated in the screening of phage display library, Anal. Biochem, 512, pp. 120-128, (2016)