Bag Sagar, Chand Karam, Burman Mangal Deep, Vertueux Steven, Chorell Erik, Bhowmik Sudipta
Department of Biophysics, Molecular Biology and Bioinformatics, University of Calcutta, 92 APC Road, Kolkata 700009 India.
Department of Chemistry, Umeå University SE-901 87 Umeå, Sweden.
Bioorg Chem. 2025 Mar;156:108227. doi: 10.1016/j.bioorg.2025.108227. Epub 2025 Jan 29.
I-motif (iM) DNA structures are dynamic cytosine-rich secondary structures that are increasingly recognized for their roles in transcriptional regulation, genomic stability, and for their potential as therapeutic targets in cancer. Despite their significance, the development of selective small-molecule probes for iM DNA remains a challenge. In this study, a series of iminocoumarin-benzothaizole derivatives were designed, synthesized, and subjected to extensive screening to explore their interactions with various iM DNA constructs, including H-Telo, HRAS1, HRAS2, VEGF, and BCL2, as well as duplex DNA. This revealed compounds that display specific and strong interactions with H-Telo, HRAS1, or HRAS2 iM DNA structures depending on their substitution pattern. Detailed spectroscopic investigations revealed the details of how these compounds interact with the iM DNAs, resulting in hypochromic and bathochromic effects, fluorescence enhancements, and increased lifetimes. Furthermore, compounds with unique light-up properties in the presence of HRAS1, VEGF, and BCL2 iM DNA was identified, which has potential as a light-up probes for iM DNA studies in cellular environments. Additionally, circular dichroism (CD) and thermal melting studies confirmed that the compounds stabilized iM DNA without altering its topology, while FT-IR spectroscopy identified structural modifications in iM DNA upon binding. The synthesis of structurally diverse substituents, coupled with extensive spectroscopic, fluorescence, and thermodynamic screening, provided critical insights into structure-activity relationships. Overall, these findings highlight the potential of this compound class to be further developed as selective iM DNA-binding agents and light-up probes, paving the way for innovative diagnostic tools and therapeutic approaches targeting iM DNA in cancer and other diseases.
I-基序(iM)DNA结构是富含胞嘧啶的动态二级结构,其在转录调控、基因组稳定性中的作用以及作为癌症治疗靶点的潜力越来越受到认可。尽管它们具有重要意义,但开发用于iM DNA的选择性小分子探针仍然是一项挑战。在本研究中,设计、合成了一系列亚氨基香豆素-苯并噻唑衍生物,并进行了广泛筛选,以探索它们与各种iM DNA构建体的相互作用,包括H-Telo、HRAS1、HRAS2、VEGF和BCL2,以及双链DNA。这揭示了根据其取代模式与H-Telo、HRAS1或HRAS2 iM DNA结构表现出特异性和强相互作用的化合物。详细的光谱研究揭示了这些化合物与iM DNA相互作用的细节,导致了减色和红移效应、荧光增强以及寿命增加。此外,还鉴定了在HRAS1、VEGF和BCL2 iM DNA存在下具有独特发光特性的化合物,其有潜力作为细胞环境中iM DNA研究的发光探针。此外,圆二色性(CD)和热变性研究证实,这些化合物稳定了iM DNA而不改变其拓扑结构,而傅里叶变换红外光谱(FT-IR)确定了结合后iM DNA的结构修饰。结构多样的取代基的合成,加上广泛的光谱、荧光和热力学筛选,为构效关系提供了关键见解。总体而言,这些发现突出了这类化合物作为选择性iM DNA结合剂和发光探针进一步开发的潜力,为针对癌症和其他疾病中iM DNA的创新诊断工具和治疗方法铺平了道路。