Christianson Dawn R, Ozawa Michael G, Pasqualini Renata, Arap Wadih
Department of Genitourinary Medical Oncology, The University of Texas M.D. Anderson Cancer Center, Houston, TX, USA.
Methods Mol Biol. 2007;357:385-406. doi: 10.1385/1-59745-214-9:385.
Combinatorial phage display technology may be applied to decipher the molecular diversity of peptide binding specificity to isolated proteins, purified antibodies, cell surfaces, intracellular/cyto-domains, and blood vessels in vivo. The application of such a strategy ranges from identifying receptor-ligand pairs and antigen binding sites to understanding the progression of diseases by their differential expression patterns and developing therapeutic targeting strategies. Different strategies can be used to isolate peptides from diverse libraries displayed on the surface of bacteriophage by exposing the library to a target molecule or organ, washing away nonbinding phage, eluting and amplifying the bound phage for multiple round use, and then analyzing the peptide sequences of the enriched phage. The following methods first outline the construction of a phage library and then delineate various in vitro and in vivo biopanning applications to probe isolated integrins, purified antibodies, cell surface molecules, and vascular endothelial cells.
组合噬菌体展示技术可用于解析肽与分离蛋白、纯化抗体、细胞表面、细胞内/细胞结构域以及体内血管的结合特异性的分子多样性。这种策略的应用范围从识别受体-配体对和抗原结合位点,到通过差异表达模式理解疾病进展以及制定治疗靶向策略。通过将文库暴露于靶分子或器官,洗去未结合的噬菌体,洗脱并扩增结合的噬菌体以进行多轮使用,然后分析富集噬菌体的肽序列,可以使用不同的策略从展示在噬菌体表面的各种文库中分离肽。以下方法首先概述噬菌体文库的构建,然后描述各种体外和体内生物淘选应用,以探测分离的整合素、纯化抗体、细胞表面分子和血管内皮细胞。