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单轮 DNA 适体的毛细管电泳与下一代测序联合筛选:一种用于鉴定独特功能蛋白结合 DNA 适体的适体组学方法。

Single-Round DNA Aptamer Selection by Combined Use of Capillary Electrophoresis and Next Generation Sequencing: An Aptaomics Approach for Identifying Unique Functional Protein-Binding DNA Aptamers.

机构信息

Graduate School of Science and Engineering, Saitama University, 255 Shimo-Okubo, Sakura-ku, Saitama, 338-8570, Japan.

Chemistry and Biochemistry, Swarthmore College, Swarthmore, PA 19081, USA.

出版信息

Chemistry. 2021 Jul 12;27(39):10058-10067. doi: 10.1002/chem.202100177. Epub 2021 Jun 10.

Abstract

In DNA aptamer selection, existing methods do not discriminate aptamer sequences based on their binding affinity and function and the reproducibility of the selection is often poor, even for the selection of well-known aptamers like those that bind the commonly used model protein thrombin. In the present study, a novel single-round selection method (SR-CE selection) was developed by combining capillary electrophoresis (CE) with next generation sequencing. Using SR-CE selection, a successful semi-quantitative and semi-comprehensive aptamer selection for thrombin was demonstrated with high reproducibility for the first time. Selection rules based on dissociation equilibria and kinetics were devised to obtain families of analogous sequences. Selected sequences of the same family were shown to bind thrombin with high affinity. Furthermore, data acquired from SR-CE selection was mined by creating sub-libraries that were categorized by the functionality of the aptamers (e. g., pre-organized aptamers versus structure-induced aptamers). Using this approach, a novel fluorescent molecular recognition sensor for thrombin with nanomolar detection limits was discovered. Thus, in this proof-of-concept report, we have demonstrated the potential of a "DNA Aptaomics" approach to systematically design functional aptamers as well as to obtain high affinity aptamers.

摘要

在 DNA 适体筛选中,现有的方法不能基于结合亲和力和功能来区分适体序列,并且选择的重现性通常较差,即使是对像结合常用模型蛋白凝血酶的众所周知的适体的选择也是如此。在本研究中,通过将毛细管电泳(CE)与下一代测序相结合,开发了一种新的单轮选择方法(SR-CE 选择)。使用 SR-CE 选择,首次成功地对凝血酶进行了半定量和半全面的适体选择,具有很高的重现性。基于离解平衡和动力学的选择规则被设计用来获得类似序列的家族。同一家族的选定序列被证明与凝血酶具有高亲和力。此外,通过创建根据适体功能(例如,预先组织的适体与结构诱导的适体)进行分类的亚文库,对从 SR-CE 选择获得的数据进行了挖掘。使用这种方法,发现了一种用于凝血酶的具有纳摩尔检测限的新型荧光分子识别传感器。因此,在本概念验证报告中,我们已经证明了“DNA 适体组学”方法的潜力,该方法可以系统地设计功能适体并获得高亲和力的适体。

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