SSPC, the Science Foundation Ireland Research Centre for Pharmaceuticals, School of Chemical Sciences, Dublin City University Glasnevin, Dublin 9, Ireland.
Centro Singular de Investigación en Química Biolóxica e Materiais Moleculares (CiQUS) and Departamento de Química Inorgánica. Universidade de Santiago de Compostela., Rúa Jenaro de la Fuente s/n, 15782 Santiago de Compostela, Spain.
Methods. 2023 Nov;219:30-38. doi: 10.1016/j.ymeth.2023.09.002. Epub 2023 Sep 9.
The development of compounds that can selectively bind with non-canonical DNA structures has expanded in recent years. Junction DNA, including three-way junctions (3WJs) and four-way Holliday junctions (HJs), offer an intriguing target for developmental therapeutics as both 3WJs and HJs are involved in DNA replication and repair processes. However, there are a limited number of assays available for the analysis of junction DNA binding. Here, we describe the design and execution of multiplex fluorescent polyacrylamide gel electrophoresis (PAGE) and microscale thermophoresis (MST) assays that enable evaluation of junction-binding compounds. Two well characterised junction-binding compounds-a C6 linked bis-acridine ligand and an iron(II)-bound peptide helicate, which recognise HJs and 3WJs, respectively-were employed as probes for both MST and PAGE experiments. The multiplex PAGE assay expands beyond previously reported fluorescent PAGE as it uses four individual fluorophores that can be combined to visualise single-strands, pseudo-duplexes, and junction DNA present during 3WJ and HJ formation. The use of MST to identify the binding affinity of junction binding agents is, to our knowledge, first reported example of this technique. The combined use of PAGE and MST provides complementary results for the visualisation of 3WJ and HJ formation and the direct binding affinity (K and EC) of these agents. These assays can be used to aid the discovery and design of new therapeutics targeting non-canonical nucleic acid structures.
近年来,能够选择性结合非规范 DNA 结构的化合物的发展已经取得了进展。连接 DNA,包括三链结(3WJ)和四链 Holliday 结(HJ),为开发治疗方法提供了一个有趣的目标,因为 3WJ 和 HJ 都参与 DNA 复制和修复过程。然而,用于分析连接 DNA 结合的测定方法数量有限。在这里,我们描述了多重荧光聚丙烯酰胺凝胶电泳(PAGE)和微尺度热泳(MST)测定法的设计和执行,这些方法可以评估连接结合化合物。两种经过充分表征的连接结合化合物——一种 C6 连接的双吖啶配体和一种铁(II)结合的肽螺旋体,分别识别 HJ 和 3WJ——被用作 MST 和 PAGE 实验的探针。多重 PAGE 测定法扩展了以前报道的荧光 PAGE,因为它使用了四种可以组合以可视化单链、伪双链和 3WJ 和 HJ 形成过程中存在的连接 DNA 的荧光团。使用 MST 来鉴定连接结合剂的结合亲和力在我们的知识范围内是首次报道这种技术的例子。PAGE 和 MST 的联合使用为 3WJ 和 HJ 形成的可视化以及这些试剂的直接结合亲和力(K 和 EC)提供了互补的结果。这些测定法可用于辅助针对非规范核酸结构的新型治疗剂的发现和设计。