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Efficient Screening of Combinatorial Peptide Libraries by Spatially Ordered Beads Immobilized on Conventional Glass Slides

机译:通过固定在常规载玻片上的空间有序微珠对组合肽库进行高效筛选

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摘要

Screening of one-bead-one-compound (OBOC) libraries is a proven procedure for the identification of protein-binding ligands. The demand for binders with high affinity and specificity towards various targets has surged in the biomedical and pharmaceutical field in recent years. The traditional peptide screening involves tedious steps such as affinity selection, bead picking, sequencing, and characterization. Herein, we present a high-throughput “all-on-one chip” system to avoid slow and technically complex bead picking steps. On a traditional glass slide provided with an electrically conductive tape, beads of a combinatorial peptide library are aligned and immobilized by application of a precision sieve. Subsequently, the chip is incubated with a fluorophore-labeled target protein. In a fluorescence scan followed by matrix-assisted laser desorption/ionization (MALDI)-time of flight (TOF) mass spectrometry, high-affinity binders are directly and unambiguously sequenced with high accuracy without picking of the positive beads. The use of an optimized ladder sequencing approach improved the accuracy of the de-novo sequencing step to nearly 100%. The new technique was validated by employing a FLAG-based model system, identifying new peptide binders for the monoclonal M2 anti-FLAG antibody, and was finally utilized to search for IgG-binding peptides. In the present format, more than 30,000 beads can be screened on one slide.
机译:单珠一化合物(OBOC)文库的筛选是鉴定蛋白结合配体的可靠方法。近年来,在生物医学和制药领域,对各种目标具有高亲和力和特异性的结合剂的需求激增。传统的肽筛选涉及繁琐的步骤,例如亲和力选择,珠子挑选,测序和表征。本文中,我们提出了一种高通量“全芯片芯片”系统,以避免缓慢且技术复杂的磁珠拾取步骤。在配备有导电胶带的传统载玻片上,通过应用精密筛将组合肽库的珠粒对齐并固定。随后,将芯片与荧光团标记的靶蛋白孵育。在进行荧光扫描,然后进行基质辅助的激光解吸/电离(MALDI)飞行时间(TOF)质谱分析时,可以高准确度直接,明确地对高亲和力的粘合剂进行测序,而无需拾取阳性珠子。优化梯形图测序方法的使用将de-novo测序步骤的准确性提高了近100%。通过使用基于FLAG的模型系统验证了这项新技术,为单克隆M2抗FLAG抗体鉴定了新的肽结合剂,并最终用于搜索IgG结合肽。在目前的格式中,可以在一张幻灯片上筛选超过30,000个珠子。

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