Lauria Antonino, Bonsignore Riccardo, Terenzi Alessio, Spinello Angelo, Giannici Francesco, Longo Alessandro, Almerico Anna Maria, Barone Giampaolo
Dipartimento di Scienze e Tecnologie Biologiche, Chimiche e Farmaceutiche, Viale delle Scienze, Edificio 17, I-90128 Palermo, Italy.
Dalton Trans. 2014 Apr 28;43(16):6108-19. doi: 10.1039/c3dt53066c.
We present a thorough characterization of the interaction of novel nickel(II) (1), copper(II) (2) and zinc(II) (3) Schiff base complexes with native calf thymus DNA (ct-DNA), in buffered aqueous solution at pH 7.5. UV-vis absorption, circular dichroism (CD) and viscometry titrations provided clear evidence of the intercalative mechanism of the three square-planar metal complexes, allowing us to determine the intrinsic DNA-binding constants (K(b)), equal to 1.3 × 10(7), 2.9 × 10(6), and 6.2 × 10(5) M(-1) for 1, 2 and 3, respectively. Preferential affinity, of one order of magnitude, toward AT compared to GC base pair sequences was detected by UV-vis absorption titrations of 1 with [poly(dG-dC)]2 and [poly(dA-dT)]2. Structural details of the intercalation site of the three metal complexes within [dodeca(dA-dT)]2 were obtained by molecular dynamics (MD) simulations followed by density functional theory/molecular mechanics (DFT/MM) calculations. The calculations revealed that three major intermolecular interactions contribute to the strong affinity between DNA and the three metal complexes: (1) the electrostatic attraction between the two positively charged triethylammoniummethyl groups of the metal complexes and the negatively charged phosphate groups of the DNA backbone; (2) the intercalation of the naphthalene moiety within the four nitrogen bases of the intercalation site; (3) the metal coordination by exocyclic donor atoms of the bases, specifically the carbonyl oxygen and amine nitrogen atoms. Remarkably, the Gibbs formation free energy calculated for the intercalation complexes of 1, 2 and 3 with [dodeca(dA-dT)]2 in the implicit water solution is in agreement with the experimental Gibbs free energy values obtained from the DNA-binding constants as ΔG° = -RT ln(K(b)). In particular, the DNA-binding affinity trend, 1 > 2 > 3, is reproduced. Finally, the first shell coordination distances calculated for the intercalation complex 3/[dodeca(dA-dT)]2 are in excellent agreement with the experimental distances extracted from the extended X-ray absorption fine structure (EXAFS) spectrum of the corresponding 3/ct-DNA solutions. The latter results provided the first evidence of metal ion coordination by native DNA in aqueous solution.
我们展示了新型镍(II)(1)、铜(II)(2)和锌(II)(3)席夫碱配合物在pH 7.5的缓冲水溶液中与天然小牛胸腺DNA(ct-DNA)相互作用的全面表征。紫外可见吸收光谱、圆二色性(CD)光谱和粘度滴定法提供了明确的证据,证明这三种平面正方形金属配合物的嵌入机制,使我们能够确定内在DNA结合常数(K(b)),对于1、2和3分别为1.3×10(7)、2.9×10(6)和6.2×10(5) M(-1)。通过用[聚(dG-dC)]2和[聚(dA-dT)]2对1进行紫外可见吸收滴定,检测到与GC碱基对序列相比,对AT碱基对序列具有一个数量级的优先亲和力。通过分子动力学(MD)模拟,随后进行密度泛函理论/分子力学(DFT/MM)计算,获得了三种金属配合物在[十二聚体(dA-dT)]2内嵌入位点的结构细节。计算结果表明,三种主要的分子间相互作用有助于DNA与三种金属配合物之间的强亲和力:(1)金属配合物的两个带正电荷的三乙铵甲基基团与DNA主链带负电荷的磷酸基团之间的静电吸引;(2)萘部分在嵌入位点的四个氮碱基内的嵌入;(3)碱基的环外供体原子,特别是羰基氧和胺氮原子的金属配位。值得注意的是,在隐式水溶液中计算得到的1、2和3与[十二聚体(dA-dT)]2的嵌入配合物的吉布斯形成自由能与从DNA结合常数获得的实验吉布斯自由能值一致,即ΔG° = -RT ln(K(b))。特别是,再现了DNA结合亲和力趋势1 > 2 > 3。最后,计算得到的嵌入配合物3/[十二聚体(dA-dT)]2的第一壳层配位距离与从相应的3/ct-DNA溶液的扩展X射线吸收精细结构(EXAFS)光谱中提取的实验距离非常吻合。后者的结果提供了天然DNA在水溶液中进行金属离子配位的首个证据。