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Comparison of Bacterial and Phage Display Peptide Libraries in Search of Target-Binding Motif

机译:细菌和噬菌体展示肽库在寻找目标结合母题中的比较

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Genetic engineering allows modification of bacterial and bacteriophage genes,which code for surface proteins,enabling display of random peptides on the surface of these microbial vectors.Biologic peptide libraries thus formed are used for high-throughput screening of clones bearing pep-tides with high affinity for target proteins.There are reports of many successful affinity selections performed with phage display libraries and substantially fewer cases describing the use of bacterial display systems.In theory,bacterial display has some advantages over phage display,but the two systems have never been experimentally compared.We tested both techniques in selecting streptavidin-binding peptides from two commercially available libraries.Under similar conditions,selection of phage-displayed peptides to model protein streptavidin proved convincingly better.
机译:基因工程可以修饰编码表面蛋白的细菌和噬菌体基因,从而在这些微生物载体表面上显示随机肽。由此形成的生物肽库可用于高通量筛选带有肽的克隆,并具有高亲和力有报道称使用噬菌体展示文库成功完成了许多亲和力选择,并且描述了细菌展示系统使用的案例也大大减少。理论上,细菌展示比噬菌体展示具有一些优势,但从未对这两种系统进行实验比较我们测试了从两种市售文库中选择链霉亲和素结合肽的两种技术。在相似的条件下,选择噬菌体展示的肽来模拟链霉亲和素是令人信服的。

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