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Multiplexed Microcolumn-Based Process for Efficient Selection of RNA Aptamers

机译:基于多微柱的RNA适体的高效选择过程。

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We describe a reusable microcolumn and process for the efficient discovery of nucleic acid aptamers for multiple target molecules. The design of our device requires only microliter volumes of affinity chromatography resin--a condition that maximizes the enrichment of target-binding sequences over non-target-binding (i.e., background) sequences. Furthermore, the modular design of the device accommodates a multiplex aptamer selection protocol. We optimized the selection process performance using microcolumns filled with green fluorescent protein (GFP)-immobilized resin and monitoring, over a wide range of experimental conditions, the enrichment of a known GFP-binding RNA aptamer (GFPapt) against a random RNA aptamer library. We validated the multiplex approach by monitoring the enrichment of GFPapt in de novo selection experiments with GFP and other protein preparations. After only three rounds of selection, the cumulative GFPapt enrichment on the GFP-loaded resin was greater than 10~8 with no enrichment for the other nonspecific targets. We used this optimized protocol to perform a multiplex selection to two human heat shock factor (hHSF) proteins, hHSF1 and hHSF2. High-throughput sequencing was used to identify aptamers for each protein that were preferentially enriched in just three selection rounds, which were confirmed and isolated after five rounds. Gel-shift and fluorescence polarization assays showed that each aptamer binds with high-affinity (K_D < 20 nM) to the respective targets. The combination of our microcolumns with a multiplex approach and high-throughput sequencing enables the selection of aptamers to multiple targets in a high-throughput and efficient manner.
机译:我们描述了可重复使用的微列和过程的有效发现多个目标分子的核酸适体。我们设备的设计只需要微升体积的亲和色谱树脂-这种条件可以使目标结合序列相对于非目标结合(即背景)序列的富集最大化。此外,该设备的模块化设计适应了多种适体选择协议。我们使用充满绿色荧光蛋白(GFP)固定树脂的微柱并在广泛的实验条件下监控已知的GFP结合RNA适体(GFPapt)对随机RNA适体文库的富集来优化选择过程的性能。我们通过监测从头开始使用GFP和其他蛋白质制剂进行选择实验中GFPapt的富集,验证了多重方法。仅三轮选择后,在装有GFP的树脂上累积的GFPapt富集度大于10〜8,而对其他非特异性靶标则没有富集。我们使用此优化的协议对两个人类热休克因子(hHSF)蛋白hHSF1和hHSF2进行多重选择。高通量测序用于鉴定每种蛋白质的适体,这些适体仅在三个选择轮中优先富集,并在五轮选择后确认并分离。凝胶位移和荧光偏振分析表明,每个适体均以高亲和力(K_D <20 nM)与各自的靶标结合。我们的微柱与多重方法和高通量测序相结合,能够以高通量和高效的方式选择针对多个靶标的适体。

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