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铜(II)l/d-缬氨酸-(1,10-菲咯啉)配合物靶向人端粒 G-四链体基序并促进位点特异性 DNA 切割和细胞毒性。

Copper(ii) l/d-valine-(1,10-phen) complexes target human telomeric G-quadruplex motifs and promote site-specific DNA cleavage and cellular cytotoxicity.

机构信息

Department of Chemistry, Aligarh Muslim University, Aligarh 202002, India.

Institut de Physique de sRennes, UMR 625, Université de Rennes 1, Campus de Beaulieu Bat. 11 A, 263 av. Général Leclerc, 35042 Rennes Cedex, France.

出版信息

Dalton Trans. 2020 Jul 21;49(28):9888-9899. doi: 10.1039/d0dt01527j.

Abstract

Chiral l-/d-valine-(1,10-phen)-Cu(ii) complexes that target G-quadruplex DNA were synthesized and thoroughly characterized by UV-vis, IR, EPR, ESI-MS, elemental analysis and single crystal X-ray spectroscopy. Complexes 1a and 1b crystallized in the monoclinic P21/c and C2 space groups, respectively. On the basis of Wolfe-Shimer analyses, the binding affinities of 1a and 1b with G-quadruplex telomeric DNA were determined, and 1a exhibited significantly higher binding as compared to 1b. Site selective cleavage of G4-DNA was demonstrated by employing the time-dependent PAGE assay, with 1a exhibiting a significantly higher cleavage rate from A1 to G22 (4.32 (±0.13) μM h-1) than 1b (4.29 (±0.11) μM h-1). The DNA cleavage profile demonstrated that both complexes perform non-random double-strand cleavage by following first-order kinetics (kobs = 0.9432 min-1 for 1a and kobs = 0.6574 min-1 for 1b). Molecular docking simulations were performed with both parallel and anti-parallel topologies of the quadruplex to provide a clear insight on G-quadruplex-complex interactions. Complexes 1a and 1b were found to interact strongly at the minor groove cavity of the quadruplex with preferential selectivity for the parallel vs. anti-parallel quadruplex. The cytotoxic activities of complexes 1a and 1b were evaluated on a few notably important human cancer cell lines, viz, breast (MCF-7), pancreatic strains (BxPC3, AsPC1) and liver (Huh7) by an MTT assay. Both 1a and 1b exhibited pronounced cytotoxic activity with remarkably low IC50 values (1-3 μM) for all tested cancer strains.

摘要

合成了手性 l-/d-缬氨酸-(1,10-菲)-Cu(ii) 配合物,并用 UV-vis、IR、EPR、ESI-MS、元素分析和单晶 X 射线光谱法对其进行了彻底表征。配合物 1a 和 1b 分别结晶在单斜 P21/c 和 C2 空间群中。基于 Wolfe-Shimer 分析,确定了 1a 和 1b 与端粒 G-四链体 DNA 的结合亲和力,结果表明 1a 的结合亲和力明显高于 1b。通过时间依赖性 PAGE 测定法证明了 G4-DNA 的位点选择性切割,其中 1a 从 A1 到 G22 的切割速率明显高于 1b(4.32 (±0.13) μM h-1 比 4.29 (±0.11) μM h-1)。DNA 切割图谱表明,两种配合物均通过遵循一级动力学(1a 的 kobs = 0.9432 min-1,1b 的 kobs = 0.6574 min-1)进行非随机双链切割。进行了分子对接模拟,其中包括四链体的平行和反平行拓扑结构,以提供对 G-四链体-配合物相互作用的清晰了解。发现配合物 1a 和 1b 与四链体的小沟腔强烈相互作用,对平行与反平行四链体具有优先选择性。通过 MTT 测定法在一些重要的人类癌细胞系(即乳腺癌(MCF-7)、胰腺株(BxPC3、AsPC1)和肝(Huh7))上评估了配合物 1a 和 1b 的细胞毒性活性。1a 和 1b 对所有测试的癌细胞系均表现出明显的细胞毒性活性,IC50 值(1-3 μM)非常低。

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