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首页> 外文期刊>The American journal of Chinese medicine >Inhibition of Na +/K +-ATPase by antcins, unique steroid-like compounds in Antrodia camphorate
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Inhibition of Na +/K +-ATPase by antcins, unique steroid-like compounds in Antrodia camphorate

机译:樟脑樟脑中独特的类固醇类化合物antcins对Na + / K + -ATPase的抑制作用

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The inhibition of Na +/K +-ATPase by versatile steroid-like compounds contributes to the putative therapeutic effects of many Chinese medicinal cardiac products via the same molecular mechanism triggered by cardiac glycosides. Five major steroid-like compounds, antcin A, B, C, H, and K were isolated from Niuchangchih (Antrodia camphorata), a unique Taiwan mushroom, and all inhibited Na +/K +-ATPase. Antcin A exhibited significantly higher inhibitory potency than the other four antcins, though weaker than ginsenoside Rh2. In contrast, cortisone (an analogous steroid with anti-inflammatory effects stronger than antcin A) showed no detectable inhibitory potency. Molecular modeling has shown that antcins bind to Na +/K +-ATPase with the steroidal skeleton structurally upside-down in comparison with ginsenoside Rh2. The inhibitory potency of antcin A is attributed to steroidal hydrophobic interaction within the binding pocket and the formation of three hydrogen bonds between its carboxyl group and two cationic residues around the cavity entrance of Na +/K +-ATPase. The presence of an additional carbonyl or hydroxyl group at C7 of the other four antcins leads to severe repulsion in the hydrophobic pocket, and thus significantly reduces inhibitory potency. It is proposed that antcin A is a bi-functional compound that exerts anti-inflammatory effects and that enhances blood circulation via two different molecular mechanisms.
机译:多种类固醇类化合物对Na + / K + -ATPase的抑制作用,是通过强心苷触发的相同分子机制,促成许多中药心脏产品的推定治疗作用。从独特的台湾蘑菇牛樟芝(Antrodia camphorata)中分离出五种主要的类固醇类化合物antcin A,B,C,H和K,它们均抑制Na + / K + -ATPase。尽管比人参皂苷Rh2弱,但Antcin A的抑制能力明显高于其他四种Antcin。相反,可的松(抗炎作用强于antcin A的类似类固醇)未显示出可检测的抑制作用。分子模型研究表明,与人参皂苷Rh2相比,抗氧化剂与Na + / K + -ATPase的甾体骨架结构颠倒结合。 antcin A的抑制力归因于结合口袋中的甾体疏水相互作用,以及其羧基与Na + / K + -ATPase腔入口周围的两个阳离子残基之间形成三个氢键。在其他四个抗霉素的C7处存在额外的羰基或羟基会导致疏水口袋中的强烈排斥,从而显着降低抑制能力。有人提出,antcin A是一种双功能化合物,具有抗炎作用,并通过两种不同的分子机制增强血液循环。

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