Fraunhofer Institute for Cell Therapy and Immunology, Branch Bioanalysis and Bioprocesses (IZI-BB), Potsdam, Germany.
Institute of Chemistry and Biochemistry - Biochemistry, Freie Universität Berlin, Berlin, Germany.
Methods Mol Biol. 2023;2570:129-140. doi: 10.1007/978-1-0716-2695-5_10.
The quantitative characterization of aptamer-ligand interactions is an important step in the aptamer development process. However, certain pitfalls impede K determination, especially when working with small molecule ligands. These include altered binding behavior caused by ligand immobilization. Further, the compulsory requirement for major differences in size between the bound and unbound state makes small molecule ligands ineligible for separation-based methods. MicroScale Thermophoresis circumvents such limitations as binding is accurately quantified with both binding partners free in solution and independent of ligand size. In this chapter, we present a protocol for the characterization of a DNA aptamer binding to its small molecule ligand daunorubicin.
适配体-配体相互作用的定量描述是适配体开发过程中的重要步骤。然而,某些陷阱会阻碍 Kd 值的确定,尤其是在与小分子配体一起工作时。这些陷阱包括配体固定化引起的结合行为改变。此外,由于结合态和游离态之间必须存在显著的大小差异,这使得基于分离的方法不适用于小分子配体。微量热泳动(MicroScale Thermophoresis)规避了这些限制,因为它可以准确地定量测量结合物在溶液中游离的两个结合物,而与配体的大小无关。在本章中,我们提供了一种使用 DNA 适配体与其小分子配体柔红霉素(daunorubicin)相互作用的实验方案。