Malina Jaroslav, Kostrhunova Hana, Brabec Viktor
Czech Academy of Sciences, Institute of Biophysics, Brno, CZ-61200, Czech Republic.
Palacky University, Department of Biophysics, Faculty of Science, Olomouc, CZ-78371, Czech Republic.
Small. 2024 Dec;20(52):e2406814. doi: 10.1002/smll.202406814. Epub 2024 Oct 20.
DNA three-way junctions are critical in various biological processes and hold significant potential for disease treatment and therapeutic applications. In this study, it is demonstrated that triple-stranded dinuclear [NiL] cylinders (L = CHN) exhibit a preferential binding affinity for Y-shaped DNA three-way junctions (3WJs), even in the presence of an excess of competing DNA structures, including G-quadruplexes. Notably, the investigated Ni(II) cylinders are capable of halting DNA synthesis catalyzed by DNA polymerase by stabilizing the 3WJ on the template strand. Using an extended 1D nanoarchitecture model, it is further established the high affinity and selectivity of the cylinders for DNA 3WJs and explored their potential application in stabilizing short-armed 3WJs for constructing DNA nanomaterials. The combined use of Ni(II) cylinders and DNA damage response inhibitors also revealed that the cylinders promote DNA damage, leading to the formation of double-strand breaks. This effect is likely associated with i) the binding of cylinders to 3WJs and ii) the cytotoxic activity of the cylinders in cancer cells.
DNA三向连接在各种生物过程中至关重要,在疾病治疗和治疗应用方面具有巨大潜力。在本研究中,已证明三链双核[NiL]圆柱体(L = CHN)对Y形DNA三向连接(3WJ)表现出优先结合亲和力,即使在存在过量竞争性DNA结构(包括G-四链体)的情况下也是如此。值得注意的是,所研究的Ni(II)圆柱体能够通过稳定模板链上的3WJ来阻止DNA聚合酶催化的DNA合成。使用扩展的一维纳米结构模型,进一步确定了圆柱体对DNA 3WJ的高亲和力和选择性,并探索了它们在稳定短臂3WJ以构建DNA纳米材料方面的潜在应用。Ni(II)圆柱体与DNA损伤反应抑制剂的联合使用还表明,圆柱体促进DNA损伤,导致双链断裂的形成。这种效应可能与以下两点有关:i)圆柱体与3WJ的结合;ii)圆柱体在癌细胞中的细胞毒性活性。