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首页> 外文期刊>Journal of biochemical and molecular toxicology >Mechanistic and structural insights into the in vitro in vitro inhibitory action of hypericin on glutathione reductase purified from baker's yeast
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Mechanistic and structural insights into the in vitro in vitro inhibitory action of hypericin on glutathione reductase purified from baker's yeast

机译:机械与结构见解对贝克酵母谷物纯化谷胱甘肽还原酶体外抑制作用

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Abstract This work aims at studying the interaction between glutathione reductase (GR) and hypericin. The type of inhibition was determined by measuring changes in GR activity at increasing concentrations of hypericin as well as at varying concentrations of glutathione disulfide (GSSG) and nicotinamide adenine dinucleotide phosphate (NADPH), and the binding pose of hypericin was predicted by molecular docking. Accordingly, hypericin emerges as an effective inhibitor of GR. When the variable substrate is GSSG, the type of inhibition is competitive. When the variable substrate is NADPH, however, the type of inhibition appears to be linear mixed‐type competitive. Our computational analyses suggest that hypericin binds in the large intermonomer cavity of GR, and that it may interfere with the normal positioning/functioning of the redox‐active disulfide center at the enzyme's active site. Overall, besides its contributory role in promoting oxidative stress via the formation of reactive oxygen species in photodynamic therapy, hypericin can also weaken cancer cells through inhibiting GR.
机译:摘要这项工作旨在研究谷胱甘肽还原酶(GR)和丙晶簇之间的相互作用。通过在增加浓度的高蛋白浓度下的GR活性以及不同浓度的谷胱甘肽(GSSG)和烟酰胺腺嘌呤二核苷酸二核苷酸(NADPH)的谷物浓度下测定抑制类型,并且通过分子对接预测高霉素的结合姿势。因此,HyperIcIN出现为GR的有效抑制剂。当可变基板为GSSG时,抑制类型是竞争力的。然而,当可变衬底是NADPH时,抑制类型似乎是线性混合型竞争。我们的计算分析表明,高蛋白在GR的大型晶间腔内结合,并且它可能干扰酶的活性位点的氧化还原活性二硫化物中心的正常定位/运作。总体而言,除了通过在光动力治疗中形成反应性氧物种在促进氧化应激方面的贡献作用之外,丙晶酰基也可以通过抑制GR减弱癌细胞。

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