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天然含氧二萜的自由基清除和 DNA 修复活性:理论见解。

On The Radical Scavenging and DNA Repairing Activities by Natural Oxygenated Diterpenoids: Theoretical Insights.

机构信息

Institute of Research and Development, Duy Tan University, Da Nang 550000, Vietnam.

Faculty of Natural Sciences, Duy Tan University, Da Nang 550000, Vietnam.

出版信息

J Chem Inf Model. 2022 May 23;62(10):2365-2377. doi: 10.1021/acs.jcim.1c01428. Epub 2022 May 6.

Abstract

Diterpenoids are abundant and important compounds in Euphorbia species owing to their structural diversity; therefore, in this study, we investigate the modern-concept antioxidant activities, including free-radical scavenging and oxidative DNA damage repairing, of highly oxygenated diterpenoids originating from the aerial part of . Four compounds with structural types of -abietane, containing a fused furan ring in their structures, including euphelionolide A (), euphelionolide D (), euphelionolide I (), and euphelionolide L () are selected. First, the radical-scavenging activity of these compounds was evaluated with two typical radicals HOO and HO in water and pentyl ethanoate (PEA, to mimic lipid environment) via three main mechanisms, namely, hydrogen atom transfer (HAT), radical adduct formation (RAF), and single electron transfer. It is found that the studied compounds are able to scavenge free radicals at multiple reactive sites favorably via HAT and RAF mechanisms, in which the former dominates in the case with HOO while both mechanisms are competitive in the reaction with HO. Second, chemical repairing of DNA damage is modeled with the H-atom and single electron being transferred from the studied molecules to damaged 2'-deoxyguanosine (2dG) (i.e., 2dG radicals and 2dG radical cation). Among the four compounds, euphelionolide A is shown as the most effective radical scavenger and also the highest potential species for chemical repairing of radical-damaged DNA in both water and PEA.

摘要

二萜类化合物在大戟属植物中含量丰富,结构多样,具有重要的意义。因此,本研究采用现代概念抗氧化活性评价方法,包括自由基清除和氧化 DNA 损伤修复活性,对来源于大戟属植物地上部分的高度氧化二萜类化合物进行了研究。选择了具有 -abietane 结构类型的 4 种化合物,其结构中均含有一个融合的呋喃环,包括 euphelionolide A ()、euphelionolide D ()、euphelionolide I () 和 euphelionolide L ()。首先,通过三种主要机制,即氢原子转移(HAT)、自由基加合物形成(RAF)和单电子转移,在水和戊基乙酸酯(PEA 中模拟脂质环境)中评估了这些化合物对两种典型自由基 HOO 和 HO 的清除活性。研究发现,这些研究的化合物能够通过 HAT 和 RAF 机制在多个反应位点上有利地清除自由基,其中前者在与 HOO 的反应中占主导地位,而在后一种反应中两种机制是竞争的。其次,用从研究分子向受损的 2'-脱氧鸟苷(2dG)转移 H 原子和单电子的方式模拟 DNA 损伤的化学修复(即 2dG 自由基和 2dG 自由基阳离子)。在这 4 种化合物中,euphelionolide A 表现出最强的自由基清除活性,也是水和 PEA 中自由基损伤 DNA 化学修复的最高潜在物质。

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