首页> 外文期刊>Molecules >Different Inhibitory Potencies of Oseltamivir Carboxylate, Zanamivir, and Several Tannins on Bacterial and Viral Neuraminidases as Assessed in a Cell-Free Fluorescence-Based Enzyme Inhibition Assay
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Different Inhibitory Potencies of Oseltamivir Carboxylate, Zanamivir, and Several Tannins on Bacterial and Viral Neuraminidases as Assessed in a Cell-Free Fluorescence-Based Enzyme Inhibition Assay

机译:在无细胞荧光基酶抑制测定中评估

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Neuraminidase is a key enzyme in the life cycle of influenza viruses and is present in some bacterial pathogens. We here assess the inhibitory potency of plant tannins versus clinically used inhibitors on both a viral and a bacterial model neuraminidase by applying the 2-(4-methylumbelliferyl)--d-N-acetylneuraminic acid (MUNANA)-based activity assay. A range of flavan-3-ols, ellagitannins and chemically defined proanthocyanidin fractions was evaluated in comparison to oseltamivir carboxylate and zanamivir for their inhibitory activities against viral influenza A (H1N1) and bacterial Vibrio cholerae neuraminidase (VCNA). Compared to the positive controls, all tested polyphenols displayed a weak inhibition of the viral enzyme but similar or even higher potency on the bacterial neuraminidase. Structure-activity relationship analyses revealed the presence of galloyl groups and the hydroxylation pattern of the flavan skeleton to be crucial for inhibitory activity. The combination of zanamivir and EPs((R)) 7630 (root extract of Pelargonium sidoides) showed synergistic inhibitory effects on the bacterial neuraminidase. Co-crystal structures of VCNA with oseltamivir carboxylate and zanamivir provided insight into bacterial versus viral enzyme-inhibitor interactions. The current data clearly indicate that inhibitor potency strongly depends on the biological origin of the enzyme and that results are not readily transferable. The therapeutic relevance of our findings is briefly discussed.
机译:神经氨酸酶是流感病毒生命周期中的关键酶,存在于一些细菌病原体中。我们通过应用2-(4-甲基晶晶体)-D-N-乙酰氨氨酸酸(基于MUNANA)的活性测定,我们在病毒和细菌模型神经氨酸酶对植物单宁和临床使用抑制剂的抑制性效力。与Oseltamivir羧酸盐和Zanamivir用于对病毒流感A(H1N1)和细菌振动霍乱神经氨酸(VCNA)的抑制活性进行评价一系列黄烷-3-醇,埃柳氨酰胺和化学定义的原花青素级分。与阳性对照相比,所有测试的多酚都显示出对病毒酶的弱抑制,但在细菌神经氨氨酸酶上具有相似或甚至更高的效力。结构 - 活性关系分析显示,黄烷骨架的核酰基和羟基化图案对抑制活性至关重要。 Zanamivir和EPS((r))7630(天竺葵的根提取物)的组合对细菌神经氨酸酶显示出协同抑制作用。 VCNA与Oseltamivir羧酸盐和Zanamivir的共晶结构提供了对细菌与病毒酶抑制剂相互作用的洞察力。目前数据清楚地表明抑制剂效力强烈取决于酶的生物来源,并且结果不易转移。简要讨论了我们的研究结果的治疗相关性。

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