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芳偶氮砜类化合物对 DNA 的作用:结合、切割、光切割、分子对接研究以及与 A375 黑色素瘤和非癌细胞的相互作用。

Effect of Arylazo Sulfones on DNA: Binding, Cleavage, Photocleavage, Molecular Docking Studies and Interaction with A375 Melanoma and Non-Cancer Cells.

机构信息

Laboratory of Organic Chemistry, Faculty of Chemistry, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.

Laboratory of Cellular Biology and Cell Cycle, Molecular Biology and Genetics Department, Democritus University of Thrace, University Campus, Dragana, 68100 Alexandroupolis, Greece.

出版信息

Int J Mol Sci. 2023 Jan 17;24(3):1834. doi: 10.3390/ijms24031834.

Abstract

A set of arylazo sulfones, known to undergo N-S bond cleavage upon light exposure, has been synthesized, and their activity in the dark and upon irradiation towards DNA has been investigated. Their interaction with calf-thymus DNA has been examined, and the significant affinity observed (most probably due to DNA intercalation) was analyzed by means of molecular docking "in silico" calculations that pointed out polar contacts, mainly via the sulfonyl moiety. Incubation with plasmid pBluescript KS II revealed DNA cleavage that has been studied over time and concentration. UV-A irradiation considerably improved DNA damage for most of the compounds, whereas under visible light the effect was slightly lower. Moving to in vitro experiments, irradiation was found to slightly enhance the death of the cells in the majority of the compounds. Naphthylazosulfone showed photo-disruptive effect under UV-A irradiation (IC ~13 μΜ) followed by derivatives and (IC ~100 μΜ). Those compounds were irradiated in the presence of two non-cancer cell lines and were found equally toxic only upon irradiation and not in the dark. The temporal and spatial control of light, therefore, might provide a chance for these novel scaffolds to be useful for the development of phototoxic pharmaceuticals.

摘要

一套已知在光照下会发生 N-S 键断裂的芳基偶氮砜已被合成,并研究了它们在黑暗中和光照下对 DNA 的活性。它们与小牛胸腺 DNA 的相互作用已经过检查,观察到的显著亲和力(很可能是由于 DNA 嵌入)通过分子对接“在计算机上”计算进行了分析,该计算指出了极性接触,主要通过磺酰基部分。与质粒 pBluescript KS II 孵育显示出随时间和浓度变化的 DNA 断裂,已对此进行了研究。UV-A 照射大大提高了大多数化合物的 DNA 损伤,而可见光下的效果略低。在体外实验中,发现光照略微增加了大多数化合物中细胞的死亡。在 UV-A 照射下,萘基偶氮砜(Naphthylazosulfone)显示出光破坏效应(IC 50 约为 13 μΜ),随后是衍生物 和 (IC 50 约为 100 μΜ)。这些化合物在两种非癌细胞系中进行了照射,仅在光照下发现它们同样具有毒性,而在黑暗中则没有。因此,对光的时间和空间控制可能为这些新型支架在开发光毒性药物方面提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce1d/9915714/fcc445e159bd/ijms-24-01834-g001.jpg

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