Torigoe Hidetaka, Kondo Jiro, Arakawa Fumihiro
Department of Applied Chemistry, Faculty of Science, Tokyo University of Science, 1-3 Kagurazaka, Shinjuku-ku, Tokyo 162-8601, Japan.
Department of Materials and Life Sciences, Sophia University, 7-1 Kioi-cho, Chiyoda-ku, Tokyo 102-8554, Japan.
J Inorg Biochem. 2023 Apr;241:112125. doi: 10.1016/j.jinorgbio.2023.112125. Epub 2023 Jan 11.
Metal ion-nucleic acid interactions contribute significantly to nucleic acid structure and biological activity and have potential applications in nanotechnology. Hg specifically binds to the natural T-T mismatched base pair in duplex DNA to form a T-Hg-T base pair. Metal ions may enhance DNA damage induced by DNA-damaging agents, such as oxidative agents. The interactions between metal ions and damaged DNAs, such as mismatched oxidized bases, have not been well characterized. Here, we examined the possibility of Hg binding to an asymmetric mismatched base pair involving thymine and 5-hydroxyuracil (OHdU), an oxidized base produced by the oxidative deamination of cytosine. UV melting analyses showed that only the melting temperature of the single T-OHdU mismatched duplex DNA increased upon Hg addition. CD spectra indicated no significant change in the higher-order structure of the single T-OHdU mismatched duplex DNA upon Hg addition. X-ray crystallographic structure with two consecutive T-OHdU mismatched base pairs and isothermal titration calorimetric analyses with the single T-OHdU mismatched base pair showed that Hg specifically binds to the N3 positions of both T and OHdU in T-OHdU at 1:1 molar ratio, with a 5×10 M binding constant of to form the T-Hg-OHdU base pair. The Hg-bound structure and the Hg-binding affinity for T-OHdU was similar to those for T-T. This study on T-Hg-OHdU metal-mediated base pair could aid in studying the molecular mechanism of metal ion-mediated DNA damage and their potential applications in nanotechnology.
金属离子与核酸的相互作用对核酸结构和生物活性有重要影响,并在纳米技术中具有潜在应用。汞特异性结合双链DNA中的天然T-T错配碱基对,形成T-Hg-T碱基对。金属离子可能增强DNA损伤剂(如氧化剂)诱导的DNA损伤。金属离子与受损DNA(如错配的氧化碱基)之间的相互作用尚未得到充分表征。在这里,我们研究了汞与涉及胸腺嘧啶和5-羟基尿嘧啶(OHdU)的不对称错配碱基对结合的可能性,OHdU是胞嘧啶氧化脱氨产生的氧化碱基。紫外熔解分析表明,仅在添加汞后,单T-OHdU错配双链DNA的熔解温度升高。圆二色光谱表明,添加汞后,单T-OHdU错配双链DNA的高级结构没有显著变化。具有两个连续T-OHdU错配碱基对的X射线晶体结构以及单T-OHdU错配碱基对的等温滴定量热分析表明,汞以1:1的摩尔比特异性结合T-OHdU中T和OHdU的N3位,结合常数为5×10 M,形成T-Hg-OHdU碱基对。汞结合的结构和汞对T-OHdU的结合亲和力与T-T相似。对T-Hg-OHdU金属介导碱基对的这项研究有助于研究金属离子介导的DNA损伤的分子机制及其在纳米技术中的潜在应用。