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首页> 外文期刊>Bioorganic and medicinal chemistry >Selective and slow-binding inhibition of shikonin derivatives isolated from Lithospermum erythrorhizon on glycosyl hydrolase 33 and 34 sialidases
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Selective and slow-binding inhibition of shikonin derivatives isolated from Lithospermum erythrorhizon on glycosyl hydrolase 33 and 34 sialidases

机译:从紫草紫薇提取的紫草素衍生物对糖基水解酶33和34唾液酸酶的选择性和慢结合抑制作用

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Sialidases are enzymes that catalyze the hydrolysis of sialic acid residues from various glycoconjugates, which are widely found in a number of viral and microbial pathogens. In this study, we investigated the biological evaluation of isolated six shikonins (1-6) and three shikonofurans (7-9) from Lithospermum erythrorhizon. The nine isolated compounds 1-9 showed strong and selective inhibition of glycosyl hydrolase (GH) 33 and -34 sialidases activities. In GH33 bacterial-sialidase inhibition assay, the inhibitory activities against GH33 siadliase of all shikonofuran derivatives (7-9) were greater than shikonin derivatives (1-6). Shikonofuran E (8) exhibited the most potent inhibitory activity toward GH33 sialidases (IC 50 = 0.24 μM). Moreover, our detailed kinetic analysis of these species unveiled that they are all competitive and simple reversible slow-binding inhibitors. Otherwise, they showed different inhibitory capacities and kinetic modes to GH34 viral-sialidase activity. All the naphthoquinone derivatives (1-6) were of almost equal efficiency with IC 50 value of 40 μM and shikonofurans (7-9) did not show the significant inhibitory effect to GH34 sialidase. Kinetic analyses indicated that naphthoquinones acted via a noncompetitive mechanism.
机译:唾液酸酶是催化来自各种糖缀合物的唾液酸残基水解的酶,其广泛存在于许多病毒和微生物病原体中。在这项研究中,我们调查了从紫草中分离出的六种紫草素(1-6)和三种紫草呋喃(7-9)的生物学评估。九种分离的化合物1-9对糖基水解酶(GH)33和-34唾液酸酶活性具有较强的选择性抑制作用。在GH33细菌唾液酸酶抑制试验中,所有紫草呋喃衍生物(7-9)的抗GH33唾液酸酶的活性均大于Shikonin衍生物(1-6)。 Shikonofuran E(8)对GH33唾液酸酶表现出最有效的抑制活性(IC 50 = 0.24μM)。此外,我们对这些物种的详细动力学分析表明,它们都是竞争性且简单的可逆缓慢结合抑制剂。否则,它们显示出对GH34病毒唾液酸酶活性的不同抑制能力和动力学模式。所有萘醌衍生物(1-6)的效率几乎相等,IC 50值为40μM,而呋喃呋喃(7-9)对GH34唾液酸酶没有明显的抑制作用。动力学分析表明萘醌通过非竞争性机制起作用。

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