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Identifying high-affinity aptamer ligands with defined cross-reactivity using high-throughput guided systematic evolution of ligands by exponential enrichment

机译:使用高通量引导配体通过指数富集的系统进化确定具有确定的交叉反应性的高亲和力适体配体

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摘要

Oligonucleotide aptamers represent a novel platform for creating ligands with desired specificity, and they offer many potentially significant advantages over monoclonal antibodies in terms of feasibility, cost, and clinical applicability. However, the isolation of high-affinity aptamer ligands from random oligonucleotide pools has been challenging. Although high-throughput sequencing (HTS) promises to significantly facilitate systematic evolution of ligands by exponential enrichment (SELEX) analysis, the enormous datasets generated in the process pose new challenges for identifying those rare, high-affinity aptamers present in a given pool. We show that emulsion PCR preserves library diversity, preventing the loss of rare high-affinity aptamers that are difficult to amplify. We also demonstrate the importance of using reference targets to eliminate binding candidates with reduced specificity. Using a combination of bioinformatics and functional analyses, we show that the rate of amplification is more predictive than prevalence with respect to binding affinity and that the mutational landscape within a cluster of related aptamers can guide the identification of high-affinity aptamer ligands. Finally, we demonstrate the power of this selection process for identifying cross-species aptamers that can bind human receptors and cross-react with their murine orthologs.
机译:寡核苷酸适体代表了用于创建具有所需特异性的配体的新型平台,就可行性,成本和临床适用性而言,它们比单克隆抗体具有许多潜在的显着优势。然而,从随机寡核苷酸池中分离高亲和力适体配体一直是具有挑战性的。尽管高通量测序(HTS)有望通过指数富集(SELEX)分析显着促进配体的系统进化,但在此过程中产生的巨大数据集对鉴定给定池中存在的稀有,高亲和力适体提出了新挑战。我们显示乳液PCR保留文库多样性,防止难于扩增的稀有高亲和力适体的丢失。我们还证明了使用参考目标消除特异性降低的结合候选物的重要性。使用生物信息学和功能分析的组合,我们显示,结合亲和力方面,扩增速率比普遍性更具预测性,并且在相关适体簇中的突变态势可以指导高亲和力适体配体的鉴定。最后,我们证明了此选择过程对识别可以结合人类受体并与其鼠直系同源物发生交叉反应的跨物种适体的能力。

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