International Tomography Center SB RAS, 630090 Novosibirsk, Russia.
Novosibirsk State University, Pirogova Str. 2, Novosibirsk 630090, Russia.
Phys Chem Chem Phys. 2023 Aug 23;25(33):22455-22466. doi: 10.1039/d3cp01775c.
The binding of G-quadruplex structures (G4s) with photosensitizers is of considerable importance in medicinal chemistry and drug discovery due to their promising potential in photodynamic therapy applications. G4s can experience structural changes as a result of ligand interactions and light exposure. Understanding these modifications is essential to uncover the fundamental biological roles of the complexes and optimize their therapeutic potential. The structural diversity of G4s makes it challenging to study their complexes with ligands, necessitating the use of various complementary methods to fully understand these interactions. In this study, we introduce, for the first time, the application of laser-induced dipolar EPR as a method to characterize G-quadruplex DNA complexes containing photosensitizers and to investigate light-induced structural modifications in these systems. To demonstrate the feasibility of this approach, we studied complexes of the human telomeric G-quadruplex (HTel-22) with cationic 5,10,15,20-tetrakis(1-methyl-4-pyridinio) porphyrin tetra(-toluenesulfonate) (TMPyP4). In addition to showcasing a new methodology, we also aimed to provide insights into the mechanisms underlying photoinduced HTel-22/TMPyP4 structural changes, thereby aiding in the advancement of approaches targeting G4s in photodynamic therapy. EPR revealed G-quadruplex unfolding and dimer formation upon light exposure. Our findings demonstrate the potential of EPR spectroscopy for examining G4 complexes with photosensitizers and contribute to a better understanding of G4s' interactions with ligands under light.
G-四链体结构(G4s)与光敏剂的结合在医学化学和药物发现中具有重要意义,因为它们在光动力治疗应用中具有很大的潜力。由于配体相互作用和光照,G4s 可能会发生结构变化。了解这些修饰对于揭示复合物的基本生物学作用和优化其治疗潜力至关重要。G4s 的结构多样性使得研究它们与配体的复合物具有挑战性,需要使用各种互补方法来充分理解这些相互作用。在这项研究中,我们首次引入了激光诱导偶极 EPR 作为一种方法来表征含有光敏剂的 G-四链体 DNA 复合物,并研究这些系统中光诱导的结构修饰。为了证明这种方法的可行性,我们研究了人类端粒 G-四链体(HTel-22)与阳离子 5,10,15,20-四(1-甲基-4-吡啶𬭩)卟啉四(对甲苯磺酸盐)(TMPyP4)的复合物。除了展示一种新的方法外,我们还旨在深入了解光诱导 HTel-22/TMPyP4 结构变化的机制,从而有助于推进光动力治疗中针对 G4s 的方法。EPR 揭示了光照下 G-四链体的展开和二聚体形成。我们的发现表明 EPR 光谱学在研究与光敏剂结合的 G4 复合物方面具有潜力,并有助于更好地理解 G4s 在光下与配体的相互作用。