Department of Food Chemistry and Toxicology, University of Vienna , Waehringerstrasse 38, A-1090 Vienna, Austria.
J Agric Food Chem. 2014 Jan 22;62(3):780-8. doi: 10.1021/jf4046182. Epub 2014 Jan 10.
Grapevine-shoot extracts (GSE), containing trans-resveratrol and resveratrol oligomers, are commercially available as food supplements. Considering the topoisomerase-targeting properties of trans-resveratrol, the question of whether GSE affect these enzymes, thereby potentially causing DNA damage, was addressed. In a decatenation assay, GSE potently suppressed the catalytic activity of topoisomerase IIα (≥5 μg/mL). The resveratrol oligomers ε-viniferin, r2-viniferin, and hopeaphenol, isolated from GSE, were also identified as topoisomerase IIα inhibitors. In the in vivo complexes of enzyme to DNA (ICE) bioassay, neither GSE, r2-viniferin, nor hopeaphenol affected the level of enzyme-DNA intermediates in A431 cells, thus representing catalytic inhibitors rather than topoisomerase poisons. GSE caused moderate DNA strand breaks (≥25 μg/mL) in the comet assay. Taken together, GSE presumably acts as a catalytic inhibitor of topoisomerase II with r2-viniferin and hopeaphenol as potentially contributing constituents. However, the increase of FPG-sensitive sites points to an additional mechanism that may contribute to the DNA-damaging properties of GSE constituents.
葡萄藤提取物(GSE),包含反式白藜芦醇和白藜芦醇低聚物,作为膳食补充剂在商业上是可获得的。考虑到反式白藜芦醇的拓扑异构酶靶向特性,提出了 GSE 是否会影响这些酶,从而潜在地导致 DNA 损伤的问题。在去连环化试验中,GSE 强烈抑制拓扑异构酶 IIα 的催化活性(≥5μg/ml)。从 GSE 中分离出的白藜芦醇低聚物 ε-viniferin、r2-viniferin 和 hopeaphenol 也被鉴定为拓扑异构酶 IIα 抑制剂。在酶-DNA 复合物(ICE)生物测定中,GSE、r2-viniferin 和 hopeaphenol 均未影响 A431 细胞中酶-DNA 中间体的水平,因此它们是催化抑制剂而不是拓扑异构酶毒物。GSE 在彗星试验中引起中等程度的 DNA 链断裂(≥25μg/ml)。总的来说,GSE 可能作为拓扑异构酶 II 的催化抑制剂,而 r2-viniferin 和 hopeaphenol 可能是其潜在的组成成分。然而,FPG 敏感位点的增加表明,可能还有其他机制有助于 GSE 成分的 DNA 损伤特性。