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柘树中神经氨酸酶抑制性氧杂蒽酮的特性

Characteristic of neuraminidase inhibitory xanthones from Cudrania tricuspidata.

作者信息

Ryu Young Bae, Curtis-Long Marcus J, Lee Ji Won, Kim Jin Hyo, Kim Jun Young, Kang Kyu Young, Lee Woo Song, Park Ki Hun

机构信息

Division of Applied Life Science (BK21 program), EB-NCRC, Institute of Agriculture and Life Science, Graduate School of Gyeongsang National University, Jinju 660-701, Republic of Korea.

出版信息

Bioorg Med Chem. 2009 Apr 1;17(7):2744-50. doi: 10.1016/j.bmc.2009.02.042. Epub 2009 Feb 26.

Abstract

Natural polyphenolic compounds generally transpire to show relatively low inhibition against glycosidase including neuraminidase. In addition the inhibition modes of such compounds are rarely competitive. In this manuscript, a series of xanthone derivatives from Cudrania tricuspidata are shown to display nanomolar inhibitor activity against neuraminidase (EC 3.2.1.18) as well as competitive inhibition modes. Compound 8 bearing vicinal dihydroxy group on the A-ring displays nanomolar activity (IC(50)=0.08+/-0.01 microM), a 200-fold increase in activity relative to that of the first reported xanthone-derived neuraminidase inhibitor, mangiferin (IC(50)=16.2+/-4.2 microM). The 6,7-vicinal dihydroxy group plays a crucial role for inhibitory activity because compound 4, which has one of these hydroxyl groups prenylated was inactive (33% at 200 microM), whereas other compounds (1-3 and 6-8) showed nanomolar activity (0.08-0.27 microM) and competitive inhibition modes. Interestingly all inhibitors manifested enzyme isomerization inhibition against neuraminidase. The most potent inhibitor, compound 8 showed similar interaction with a transition-state analogue of neuraminic acid in active site.

摘要

天然多酚类化合物通常表现出对包括神经氨酸酶在内的糖苷酶的抑制作用相对较低。此外,这类化合物的抑制模式很少具有竞争性。在本论文中,一系列来自柘树的氧杂蒽酮衍生物显示出对神经氨酸酶(EC 3.2.1.18)具有纳摩尔级的抑制活性以及竞争性抑制模式。在A环上带有邻二羟基的化合物8表现出纳摩尔级活性(IC(50)=0.08±0.01 μM),相对于首次报道的氧杂蒽酮衍生的神经氨酸酶抑制剂芒果苷(IC(50)=16.2±4.2 μM),活性增加了200倍。6,7-邻二羟基对抑制活性起着关键作用,因为其中一个羟基被异戊烯基化的化合物4没有活性(在200 μM时为33%),而其他化合物(1 - 3和6 - 8)表现出纳摩尔级活性(0.08 - 0.27 μM)和竞争性抑制模式。有趣的是,所有抑制剂都表现出对神经氨酸酶的酶异构化抑制作用。最有效的抑制剂化合物8在活性位点与神经氨酸的过渡态类似物表现出相似的相互作用。

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