Shukla Girja S, Krag David N
Department of Surgery and Vermont Cancer Center, University of Vermont College of Medicine, Burlington, 05405, USA.
Comb Chem High Throughput Screen. 2010 Jan;13(1):75-87. doi: 10.2174/138620710790218258.
Phage-display selection of combinatorial libraries is a powerful technique for identifying binding ligands against desired targets. Evaluation of target binding capacity of multiple clones recovered from phage display selection to a specific target is laborious, time-consuming, and a rate-limiting step. We constructed phage-display combinatorial peptide libraries in fusion with a beta-lactamase enzyme, which acts as a reporter. Linear dodecapeptide and cysteine-constrained decapeptide libraries were created at the amino-terminus of the Enterobacter cloacae P99 cephalosporinase molecule (P99 beta-lactamase). The overall and positional diversity of amino acids in both libraries was similar to other phage-display systems. The libraries were selected against the extracellular domain of ErbB2 receptor (ErbB2(ECD)). The target-selected clones were already conjugated to an enzyme reporter, therefore, did not require subcloning or any other post-panning modifications. We used beta-lactamase enzyme activity-based assays for sample normalizations and clone binding evaluation. Clones were identified that bound to purified ErbB2(ECD) and ErbB2-overexpressing cell-lines. The peptide sequences of the selected binding clones shared significant motifs with several rationally designed peptide mimetics and phage-display derived peptides that have been reported to bind ErbB2(ECD). beta-Lactamase fusion to peptides saved time and resources otherwise required by the phage-ELISA of a typical phage display screening protocol. The beta-lactamase enzyme assay protocols is a one-step process that does not require secondary proteins, several steps of lengthy incubations, or washings and can be finished in a few minutes instead of hours. The clone screening protocol can be adopted for a high throughput platform. Target-specific beta-lactamase-linked affinity reagents selected by this procedure can be produced in bulk, purified, and used, without any modification, for a variety of downstream applications, including targeted prodrug therapy.
噬菌体展示组合文库的筛选是一种用于鉴定针对特定靶标的结合配体的强大技术。评估从噬菌体展示筛选中回收的多个克隆对特定靶标的靶标结合能力既费力又耗时,是一个限速步骤。我们构建了与β-内酰胺酶融合的噬菌体展示组合肽文库,β-内酰胺酶作为报告基因。在阴沟肠杆菌P99头孢菌素酶分子(P99β-内酰胺酶)的氨基末端创建了线性十二肽和半胱氨酸限制的十肽文库。两个文库中氨基酸的总体和位置多样性与其他噬菌体展示系统相似。针对ErbB2受体的细胞外结构域(ErbB2(ECD))筛选文库。因此,靶标选择的克隆已经与酶报告基因偶联,不需要亚克隆或任何其他淘选后修饰。我们使用基于β-内酰胺酶活性的测定法进行样品归一化和克隆结合评估。鉴定出与纯化的ErbB2(ECD)和过表达ErbB2的细胞系结合的克隆。所选结合克隆的肽序列与几种合理设计的肽模拟物和已报道与ErbB2(ECD)结合的噬菌体展示衍生肽具有显著基序。肽与β-内酰胺酶的融合节省了典型噬菌体展示筛选方案中噬菌体酶联免疫吸附测定所需的时间和资源。β-内酰胺酶测定方案是一个一步过程,不需要二级蛋白、几个冗长的孵育步骤或洗涤,几分钟内即可完成,而不是数小时。该克隆筛选方案可用于高通量平台。通过该程序选择的靶标特异性β-内酰胺酶连接的亲和试剂可以大量生产、纯化并使用,无需任何修饰,可用于多种下游应用,包括靶向前药治疗。