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通过合成类似物阐明柱孢藻毒素的毒性:一种体外方法。

Elucidating cylindrospermopsin toxicity via synthetic analogues: An in vitro approach.

机构信息

School of Natural Sciences, Bangor University, Bangor, Gwynedd, LL57 2UW, United Kingdom.

School of Natural Sciences, Bangor University, Bangor, Gwynedd, LL57 2UW, United Kingdom.

出版信息

Chemosphere. 2019 Nov;234:139-147. doi: 10.1016/j.chemosphere.2019.06.021. Epub 2019 Jun 10.

Abstract

Cylindrospermopsin (CYN) is an alkaloid biosynthesized by selected cyanobacteria, the cyto- and genotoxic properties of which have been studied extensively by in vitro and in vivo experimental models. Various studies have separately established the role of uracil, guanidine and hydroxyl groups in CYN-induced toxicity. In the present study, we have prepared five synthetic analogues that all possess a uracil group but had variations in the other functionality found in CYN. We compared the in vitro toxicity of these analogues in common carp hepatocytes by assessing oxidative stress markers, DNA fragmentation and apoptosis. All the analogues tested induced generation of reactive oxygen species, lipid peroxidation (LPO) and DNA fragmentation. However, the greatest increase in LPO and increase in caspase-3 activity, an apoptosis marker, was demonstrated by an analogue containing guanidine, hydroxyl and uracil functionalities similar to those found in CYN but lacking the complex tricyclic structure of CYN. We also report a crystal structure of an analogue lacking the hydroxyl group found in CYN which does not show intramolecular H-bonding interactions between the guanidine and the uracil functionalities. The observations made in this work supports the hypothesis that CYN toxicity is a result of an interplay between both of the uracil, hydroxyl and guanidine functional groups.

摘要

柱孢藻毒素(CYN)是由特定蓝藻生物合成的生物碱,其细胞毒性和遗传毒性特性已通过体外和体内实验模型进行了广泛研究。多项研究分别确定了尿嘧啶、胍基和羟基在 CYN 诱导毒性中的作用。在本研究中,我们制备了五个具有尿嘧啶基团但在 CYN 中发现的其他功能基团上存在差异的合成类似物。我们通过评估氧化应激标志物、DNA 片段化和细胞凋亡,比较了这些类似物在鲤鱼肝细胞中的体外毒性。所有测试的类似物均诱导活性氧的产生、脂质过氧化 (LPO) 和 DNA 片段化。然而,含有与 CYN 中发现的类似的胍基、羟基和尿嘧啶功能基团但缺乏 CYN 复杂三环结构的类似物,显示出 LPO 最大增加和 caspase-3 活性(细胞凋亡标志物)的最大增加。我们还报告了一种缺乏 CYN 中发现的羟基的类似物的晶体结构,该结构不显示胍基和尿嘧啶功能基团之间的分子内氢键相互作用。这项工作中的观察结果支持了这样的假设,即 CYN 毒性是尿嘧啶、羟基和胍基这三个功能基团相互作用的结果。

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