Facultad de Farmacia, Universidad Autónoma del Estado de Morelos, Cuernavaca 62209, Mexico.
Laboratorio de Biología Celular, Centro de Investigación Biomédica de Oriente, Instituto Mexicano del Seguro Social, Metepec 74360, Mexico.
Molecules. 2021 Oct 12;26(20):6155. doi: 10.3390/molecules26206155.
Podophyllotoxins are natural lignans with known cytotoxic activity on several cell lines. The structural basis for their actions is mainly by the aryltetralin-lignan skeleton. Authors have proposed a cytotoxic mechanism of podophyllotoxins through the topoisomerase-II inhibition activity; however, several studies have also suggested that podophyllotoxins can inhibit the microtubules polymerization. In this work, the two possible mechanisms of action of two previously isolated compounds from the stem bark of var. fagaroides: acetylpodophyllotoxin (1) and 5'-desmethoxydeoxypodophyllotoxin (2), was analyzed. An in vitro anti-tubulin epifluorescence on the MCF10A cell line and enzymatic topoisomerase II assays were performed. The binding affinities of compounds 1 and 2 in the colchicine binding site of tubulin by using rigid- and semiflexible-residues were calculated and compared using in silico docking methods. The two lignans were active by the in vitro anti-tubulin assay but could not inhibit TOP2 activity. In the in silico analysis, the binding modes of compounds into both rigid- and semiflexible-residues of tubulin were predicted, and only for the semiflexible docking method, a linear correlation between the dissociation constant and IC previously reported was found. Our results suggest that a simple semiflexible-residues modification in docking methods could provide an in vitro correlation when analyzing very structurally similar compounds.
鬼臼毒素是具有已知细胞毒性的天然木脂素,对多种细胞系均有活性。其作用的结构基础主要是芳基四氢萘木脂素骨架。作者提出了鬼臼毒素通过拓扑异构酶 II 抑制活性的细胞毒性机制;然而,几项研究还表明,鬼臼毒素可以抑制微管聚合。在这项工作中,分析了从 var. fagaroides 的茎皮中分离得到的两种先前分离得到的化合物(1)和 5'-去甲氧基去氧鬼臼毒素(2)的两种可能作用机制。在 MCF10A 细胞系上进行了体外抗微管蛋白荧光分析和酶拓扑异构酶 II 测定。使用刚性和半刚性残基计算了化合物 1 和 2 在微管蛋白秋水仙碱结合位点的结合亲和力,并通过计算对接方法进行了比较。两种木脂素在体外抗微管蛋白测定中均具有活性,但不能抑制 TOP2 活性。在计算机分析中,预测了化合物在微管蛋白刚性和半刚性残基中的结合模式,仅对于半刚性对接方法,发现解离常数和之前报道的 IC 之间存在线性相关性。我们的结果表明,在分析非常结构相似的化合物时,对接方法中简单的半刚性残基修饰可以提供体外相关性。