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Identification of target-binding peptide motifs by high-throughput sequencing of phage-selected peptides

机译:通过噬菌体所选肽的高通量测序鉴定靶结合肽基序

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High-throughput sequencing was previously applied to phage-selected peptides in order to gain insight into the abundance and diversity of isolated peptides. Herein we developed a procedure to efficiently compare the sequences of large numbers of phage-selected peptides for the purpose of identifying target-binding peptide motifs. We applied the procedure to analyze bicyclic peptides isolated against five different protein targets: sortase A, urokinase-type plasminogen activator, coagulation factor XII, plasma kallikrein and streptavidin. We optimized sequence data filters to reduce biases originating from the sequencing method and developed sequence correction algorithms to prevent identification of false consensus motifs. With our strategy, we were able to identify rare target-binding peptide motifs, as well as to define more precisely consensus sequences and sub-groups of consensus sequences. This information is valuable to choose peptide leads for drug development and it facilitates identification of epitopes. We furthermore show that binding motifs can be identified after a single round of phage selection. Such a selection regimen reduces propagation-related bias and may facilitate application of phage display in non-specialized laboratories, as procedures such as bacterial infection, phage propagation and purification are not required.
机译:预先施加高通量测序对噬菌体选择的肽,以便深入了解分离肽的丰度和多样性。在此,我们开发了一种有效地比较大量噬菌体所选肽的序列以鉴定靶结合肽基序。我们应用了分析与五种不同蛋白靶标分离的双环肽的程序:分子酶A,尿激酶型纤溶酶原激活剂,凝血因子XII,血浆Kallikrein和链霉抗生物素蛋白。我们优化了序列数据滤波器,以减少源自测序方法的偏差,并开发出序列校正算法,以防止识别错误共识基序。通过我们的策略,我们能够鉴定罕见的靶结合肽基质,以及定义更精确的共有序列和分组序列。这些信息有助于选择药物发育的肽铅,并有助于鉴定表位。此外,我们表明,在一轮噬菌体选择之后可以识别结合基序。这种选择方案减少了与传播相关的偏压,并且可以促进在非专业实验室中施用噬菌体展示,因为不需要诸如细菌感染,噬菌体繁殖和纯化等程序。

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