Hamburg School of Food Science, Institute of Food Chemistry, University of Hamburg, Grindelallee 117, 20146 Hamburg, Germany.
Center for Hybrid Nanostructures (CHyN), Department of Physics, University of Hamburg, Luruper Chaussee 149, 22761 Hamburg, Germany.
Int J Mol Sci. 2021 Aug 25;22(17):9202. doi: 10.3390/ijms22179202.
Aptamers feature a number of advantages, compared to antibodies. However, their application has been limited so far, mainly because of the complex selection process. 'High-throughput sequencing fluorescent ligand interaction profiling' (HiTS-FLIP) significantly increases the selection efficiency and is consequently a very powerful and versatile technology for the selection of high-performance aptamers. It is the first experiment to allow the direct and quantitative measurement of the affinity and specificity of millions of aptamers simultaneously by harnessing the potential of optical next-generation sequencing platforms to perform fluorescence-based binding assays on the clusters displayed on the flow cells and determining their sequence and position in regular high-throughput sequencing. Many variants of the experiment have been developed that allow automation and in situ conversion of DNA clusters into base-modified DNA, RNA, peptides, and even proteins. In addition, the information from mutational assays, performed with HiTS-FLIP, provides deep insights into the relationship between the sequence, structure, and function of aptamers. This enables a detailed understanding of the sequence-specific rules that determine affinity, and thus, supports the evolution of aptamers. Current variants of the HiTS-FLIP experiment and its application in the field of aptamer selection, characterisation, and optimisation are presented in this review.
适体相对于抗体具有许多优势。然而,到目前为止,它们的应用一直受到限制,主要是因为选择过程复杂。“高通量测序荧光配体相互作用分析”(HiTS-FLIP)大大提高了选择效率,因此是一种非常强大和通用的技术,可用于选择高性能的适体。这是第一个实验,通过利用光学下一代测序平台的潜力,在流动池上展示的簇上进行基于荧光的结合分析,并确定其在常规高通量测序中的序列和位置,从而直接和定量测量数百万适体的亲和力和特异性。已经开发出许多实验变体,允许自动化和原位将 DNA 簇转化为碱基修饰的 DNA、RNA、肽,甚至蛋白质。此外,通过 HiTS-FLIP 进行的突变测定的信息提供了对适体序列、结构和功能之间关系的深入了解。这使我们能够详细了解决定亲和力的序列特异性规则,从而支持适体的进化。本文介绍了 HiTS-FLIP 实验的当前变体及其在适体选择、表征和优化领域的应用。