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通过点击 SELEX 鉴定和表征碱基修饰的适体。

Identification and characterization of nucleobase-modified aptamers by click-SELEX.

机构信息

Life and Medical Sciences Institute, University of Bonn, Bonn, Germany.

Center of Aptamer Research and Development, University of Bonn, Bonn, Germany.

出版信息

Nat Protoc. 2018 May;13(5):1153-1180. doi: 10.1038/nprot.2018.023. Epub 2018 Apr 26.

Abstract

Aptamers are single-stranded oligonucleotides that are in vitro-selected to recognize their target molecule with high affinity and specificity. As they consist of the four canonical nucleobases, their chemical diversity is limited, which in turn limits the addressable target spectrum. Introducing chemical modifications into nucleic acid libraries increases the interaction capabilities of the DNA and thereby the target spectrum. Here, we describe a protocol to select nucleobase-modified aptamers by using click chemistry (CuAAC) to introduce the preferred chemical modification. The use of click chemistry to modify the DNA library enables the introduction of a wide range of possible functionalities, which can be customized to the requirements of the target molecule and the desired application. This protocol yields modified DNA aptamers with extended interaction properties that are not accessible with the canonical set of nucleotides. After synthesis of the starting library containing a commercially available, alkyne-modified uridine (5-ethynyl-deoxyuridine (EdU)) instead of thymidine, the library is functionalized with the modification of choice by CuAAC. The thus-modified DNA is incubated with the target molecule and the best binding sequences are recovered. The chemical modification is removed during the amplification process. Therefore, this protocol is compatible with conventional amplification procedures and avoids enzymatic incompatibility problems associated with more extensive nucleobase modifications. After single-strand generation, the modification is reintroduced into the enriched library, which can then be subjected to the subsequent selection cycle. The duration of each selection cycle as outlined in the protocol is ∼1 d.

摘要

适体是经过体外筛选的单链寡核苷酸,能够高亲和力和特异性地识别其靶分子。由于它们由四个经典核碱基组成,其化学多样性有限,这反过来又限制了可寻址的靶标谱。在核酸文库中引入化学修饰可以增加 DNA 的相互作用能力,从而增加靶标谱。在这里,我们描述了一种通过点击化学(CuAAC)引入首选化学修饰来选择碱基修饰适体的方案。使用点击化学修饰 DNA 文库可以引入广泛的可能功能,这些功能可以根据靶分子和所需应用的要求进行定制。该方案生成了具有扩展相互作用特性的修饰 DNA 适体,这些特性是经典核苷酸组无法获得的。在合成包含商业上可用的炔基修饰尿嘧啶(5-乙炔基-脱氧尿嘧啶(EdU))而不是胸苷的起始文库后,通过 CuAAC 对文库进行所需修饰的功能化。然后将如此修饰的 DNA 与靶分子孵育,并回收最佳结合序列。在扩增过程中去除化学修饰。因此,该方案与常规扩增程序兼容,并避免了与更广泛的核碱基修饰相关的酶不相容问题。在单链生成后,将修饰重新引入富集文库中,然后可以对其进行下一个选择循环。方案中概述的每个选择循环的持续时间约为 1 天。

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