首页> 外文期刊>Journal of Molecular Structure >Investigation of Binding behaviour of a water-soluble gallium (III) phthalocyanine with double-stranded and G-quadruplex DNA via experimental and computational methods
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Investigation of Binding behaviour of a water-soluble gallium (III) phthalocyanine with double-stranded and G-quadruplex DNA via experimental and computational methods

机译:通过实验和计算方法研究水溶性镓(III)酞菁(III)酞菁用双链和G - Quadflex DNA的结合行为

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摘要

DNA is an important target for the development of chemotherapeutic drug design due to increased and uncontrolled cell proliferation of cancer cells. In the present study, the affinity of water-soluble gallium(III) phthalocyanine chloride (GaPc) non-peripherally substituted with 2-mercapto-N-methylpyridinium groups to different types of DNA (double-stranded ctDNA and G-quadruplex DNA) was investigated. The interaction mechanisms were evaluated by UV-Vis, fluorescence and circular dichroism spectroscopic techniques, competitive dialysis assay, and capillary gel electrophoresis (CGE) system integrated with a high sensitivity LED-induced fluorescence (LIF) detector. Binding mode studies were carried out by molecular docking and molecular dynamic simulations. The experimental binding constants were determined as 1.9 x 10(6) M-1 , 1.1 x 10(6) M-1 , 8.5 x 10(5) M-1 , 2.9 x 10(4) M-1 for c-MYC, AS1411, Tel21, and ctDNA, respectively. Competitive binding assay confirmed the higher affinity towards G-quadruplex structure rather than ctDNA. The GaPc-G-quadruplex DNA conjugates showed higher K-b constants and a strong absorption band closer to NIR window which is a desired feature for the photodynamic therapy applications. Besides, experimental data show that the formation of GaPc-G-quadruplex DNA conjugates reduced the aggregation of GaPc. Reduction of aggregation of phthalocyanine is important. Because aggregation decreases the photoactivity of most photosensitizers. The experimental results suggested that both intercalative and non-intercalative binding contributions occurred in the case of double-stranded ctDNA. Confirming experiments, molecular docking studies showed that the GaPc can bind from two different major groove regions in double-stranded DNA while only one binding mode was observed in the G-quadruplex DNA. Both experimental and computational studies suggested that the conformational change and unfolding mechanism in G-quadruplex DNA structure were determined upon interaction with GaPc. (C) 2021 Elsevier B.V. All rights reserved.
机译:由于癌细胞增殖增加且不受控制,DNA是开发化疗药物的重要靶点。在本研究中,研究了2-巯基-N-甲基吡啶非外周取代的水溶性氯化镓(III)酞菁(GaPc)对不同类型DNA(双链ctDNA和G-四链DNA)的亲和力。通过紫外可见光谱、荧光光谱和圆二色谱光谱技术、竞争性透析分析、毛细管凝胶电泳(CGE)系统和高灵敏度LED诱导荧光(LIF)检测器对相互作用机制进行了评估。结合模式的研究是通过分子对接和分子动力学模拟进行的。c-MYC、AS1411、Tel21和ctDNA的实验结合常数分别为1.9 x 10(6)M-1、1.1 x 10(6)M-1、8.5 x 10(5)M-1、2.9 x 10(4)M-1。竞争结合实验证实,G-四链体结构比ctDNA具有更高的亲和力。GaPc-G-四链DNA结合物显示出更高的K-b常数和靠近NIR窗口的强吸收带,这是光动力疗法应用的理想特征。此外,实验数据表明,GaPc-G-四链DNA结合物的形成减少了GaPc的聚集。减少酞菁的聚集是很重要的。因为聚集会降低大多数光敏剂的光活性。实验结果表明,在双链ctDNA的情况下,插入和非插入的结合作用都发生。分子对接研究证实,GaPc可以从双链DNA的两个不同主沟区域结合,而在G-四链DNA中只观察到一种结合模式。实验和计算研究都表明,G-四链体DNA结构中的构象变化和去折叠机制是通过与GaPc相互作用确定的。(c)2021爱思唯尔B.V.保留所有权利。

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