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通过原生离子淌度-质谱法研究适体-配体识别

Aptamer-ligand recognition studied by native ion mobility-mass spectrometry.

作者信息

Daems Elise, Dewaele Debbie, Barylyuk Konstantin, De Wael Karolien, Sobott Frank

机构信息

BAMS Research Group, University of Antwerp, Groenenborgerlaan 171, 2020, Antwerp, Belgium; AXES Research Group, University of Antwerp, Groenenborgerlaan 171, 2020, Antwerp, Belgium.

BAMS Research Group, University of Antwerp, Groenenborgerlaan 171, 2020, Antwerp, Belgium.

出版信息

Talanta. 2021 Mar 1;224:121917. doi: 10.1016/j.talanta.2020.121917. Epub 2020 Dec 2.

Abstract

The range of applications for aptamers, small oligonucleotide-based receptors binding to their targets with high specificity and affinity, has been steadily expanding. Our understanding of the mechanisms governing aptamer-ligand recognition and binding is however lagging, stymieing the progress in the rational design of new aptamers and optimization of the known ones. Here we demonstrate the capabilities and limitations of native ion mobility-mass spectrometry for the analysis of their higher-order structure and non-covalent interactions. A set of related cocaine-binding aptamers, displaying a range of folding properties and ligand binding affinities, was used as a case study in both positive and negative electrospray ionization modes. Using carefully controlled experimental conditions, we probed their conformational behavior and interactions with the high-affinity ligand quinine as a surrogate for cocaine. The ratios of bound and unbound aptamers in the mass spectra were used to rank them according to their apparent quinine-binding affinity, qualitatively matching the published ranking order. The arrival time differences between the free aptamer and aptamer-quinine complexes were consistent with a small ligand-induced conformational change, and found to inversely correlate with the affinity of binding. This mass spectrometry-based approach provides a fast and convenient way to study the molecular basis of aptamer-ligand recognition.

摘要

适体是基于小寡核苷酸的受体,能以高特异性和亲和力与其靶标结合,其应用范围一直在稳步扩大。然而,我们对适体 - 配体识别和结合机制的理解却滞后了,这阻碍了新型适体合理设计以及已知适体优化方面的进展。在此,我们展示了原生离子淌度 - 质谱法在分析适体高阶结构和非共价相互作用方面的能力与局限性。一组具有一系列折叠特性和配体结合亲和力的相关可卡因结合适体,在正电喷雾电离模式和负电喷雾电离模式下均被用作案例研究。通过精心控制实验条件,我们探究了它们的构象行为以及与作为可卡因替代物的高亲和力配体奎宁的相互作用。质谱图中结合和未结合适体的比例被用于根据它们的表观奎宁结合亲和力对其进行排序,定性地匹配已发表的排序顺序。游离适体与适体 - 奎宁复合物之间的到达时间差异与小的配体诱导构象变化一致,并且发现与结合亲和力呈负相关。这种基于质谱的方法为研究适体 - 配体识别的分子基础提供了一种快速且便捷的方式。

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