Institute of Pathogenic Biology, Medical College, University of South China, Hunan Provincial Key Laboratory for Special Pathogens Prevention and Control, Hunan Province Cooperative Innovation Center for Molecular Target New Drug Study, Hengyang, Hunan 421001, P.R. China.
Mol Med Rep. 2018 Jan;17(1):714-720. doi: 10.3892/mmr.2017.7994. Epub 2017 Nov 7.
The present review describes the advantages and updated applications of the T7 phage display system in bioscience and medical science. Current phage display systems are based on various bacteriophage vectors, including M13, T7, T4 and f1. Of these, the M13 phage display is the most frequently used, however, the present review highlights the advantages of the T7 system. As a phage display platform, M13 contains single‑stranded DNA, while the T7 phage consists of double‑stranded DNA, which exhibits increased stability and is less prone to mutation during replication. Additional characteristics of the T7 phage include the following: The T7 phage does not depend on a protein secretion pathway in the lytic cycle; expressed peptides and proteins are usually located on the C‑terminal region of capsid protein gp10B, which avoids problems associated with steric hindrance; and T7 phage particles exhibit high stability under various extreme conditions, including high temperature and low pH, which facilitates effective high‑throughput affinity elutriation. Recent applications of the T7 phage display system have been instrumental in uncovering mechanisms of molecular interaction, particularly in the fields of antigen discovery, vaccine development, protein interaction, and cancer diagnosis and treatment.
本文综述了 T7 噬菌体展示系统在生物科学和医学中的优势和最新应用。目前的噬菌体展示系统基于各种噬菌体载体,包括 M13、T7、T4 和 f1。其中,M13 噬菌体展示系统应用最为广泛,但本文重点介绍了 T7 系统的优势。作为噬菌体展示平台,M13 含有单链 DNA,而 T7 噬菌体由双链 DNA 组成,在复制过程中表现出更高的稳定性和更低的突变率。T7 噬菌体的其他特点包括:T7 噬菌体在裂解周期中不依赖于蛋白分泌途径;表达的肽和蛋白通常位于衣壳蛋白 gp10B 的 C 末端区域,从而避免了空间位阻相关问题;T7 噬菌体颗粒在高温、低 pH 等各种极端条件下表现出很高的稳定性,有利于有效高通量亲和洗脱。T7 噬菌体展示系统的最新应用有助于揭示分子相互作用的机制,特别是在抗原发现、疫苗开发、蛋白相互作用以及癌症诊断和治疗等领域。