Isolation of Chemically Cyclized Peptide Binders Using Yeast Surface Display

IF 3.784 3区 化学 Q1 Chemistry
Kaitlyn Bacon, Abigail Blain, Matthew Burroughs, Nikki McArthrur, Balaji M. Rao*, Stefano Menegatti*
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引用次数: 6

Abstract

Cyclic peptides with engineered protein-binding activity have gained increasing attention for use in therapeutic and biotechnology applications. We describe the efficient isolation and characterization of cyclic peptide binders from genetically encoded combinatorial libraries using yeast surface display. Here, peptide cyclization is achieved by disuccinimidyl glutarate-mediated cross-linking of amine groups within a linear peptide sequence that is expressed as a yeast cell surface fusion. Using this approach, we first screened a library of cyclic heptapeptides using magnetic selection, followed by fluorescence activated cell sorting (FACS) to isolate binders for a model target (lysozyme) with low micromolar binding affinity (KD ~ 1.2–3.7 μM). The isolated peptides bind lysozyme selectively and only when cyclized. Importantly, we showed that yeast surface displayed cyclic peptides can be used to efficiently obtain quantitative estimates of binding affinity, circumventing the need for chemical synthesis of the selected peptides. Subsequently, to demonstrate broader applicability of our approach, we isolated cyclic heptapeptides that bind human interleukin-17 (IL-17) using yeast-displayed IL-17 as a target for magnetic selection, followed by FACS using recombinant IL-17. Molecular docking simulations and follow-up experimental analyses identified a candidate cyclic peptide that likely binds IL-17 in its receptor binding region with moderate apparent affinity (KD ~ 300 nM). Taken together, our results show that yeast surface display can be used to efficiently isolate and characterize cyclic peptides generated by chemical modification from combinatorial libraries.

Abstract Image

酵母表面显示法分离化学环化肽结合物
具有工程蛋白结合活性的环肽在治疗和生物技术方面的应用越来越受到关注。我们描述了利用酵母表面展示从遗传编码组合文库中有效分离和表征环肽结合物。在这里,肽环化是通过二琥珀酰戊二酸介导的胺基在线性肽序列内的交联来实现的,该序列表达为酵母细胞表面融合。利用该方法,我们首先使用磁选择筛选环状七肽文库,然后使用荧光激活细胞分选(FACS)分离具有低微摩尔结合亲和力(KD ~ 1.2-3.7 μM)的模型靶标(溶菌酶)的结合物。分离的多肽选择性地结合溶菌酶,并且仅在环化时结合。重要的是,我们发现酵母表面显示的环状肽可以有效地获得结合亲和力的定量估计,避免了化学合成所选肽的需要。随后,为了证明我们的方法更广泛的适用性,我们分离了结合人白细胞介素-17 (IL-17)的环七肽,使用酵母显示的IL-17作为磁选择的靶标,然后使用重组IL-17进行FACS。分子对接模拟和后续实验分析确定了一个候选环肽,该环肽可能在IL-17受体结合区与IL-17结合,具有中等的表观亲和力(KD ~ 300 nM)。综上所述,我们的研究结果表明,酵母表面显示可以有效地分离和表征由化学修饰的组合文库生成的环肽。
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来源期刊
ACS Combinatorial Science
ACS Combinatorial Science CHEMISTRY, APPLIED-CHEMISTRY, MEDICINAL
自引率
0.00%
发文量
0
审稿时长
1 months
期刊介绍: The Journal of Combinatorial Chemistry has been relaunched as ACS Combinatorial Science under the leadership of new Editor-in-Chief M.G. Finn of The Scripps Research Institute. The journal features an expanded scope and will build upon the legacy of the Journal of Combinatorial Chemistry, a highly cited leader in the field.
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