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(-)-牛蒡子苷元作为人类免疫缺陷病毒1型整合酶抑制剂的先导结构。

(-)-Arctigenin as a lead structure for inhibitors of human immunodeficiency virus type-1 integrase.

作者信息

Eich E, Pertz H, Kaloga M, Schulz J, Fesen M R, Mazumder A, Pommier Y

机构信息

Institut für Pharmazeutische Biologie, Freie Universität Berlin, Germany.

出版信息

J Med Chem. 1996 Jan 5;39(1):86-95. doi: 10.1021/jm950387u.

Abstract

The natural dibenzylbutyrolactone type lignanolide (-)-arctigenin (2), an inhibitor of human immunodeficiency virus type-1 (HIV-1) replication in infected human cell systems, was found to suppress the integration of proviral DNA into the cellular DNA genome. In the present study 2 was tested with purified HIV-1 integrase and found to be inactive in the cleavage (3'-processing) and integration (strand transfer) assays. However, the semisynthetic 3-O-demethylated congener 9 characterized by a catechol substructure exhibited remarkable activities in both assays. Structure-activity relationship studies with 30 natural (1-6), semisynthetic (7-21), and synthetic (37-43, 45, 46) lignans revealed that (1) the lactone moiety is crucial since compounds with a butane-1,4-diol or tetrahydrofuran substructure and also lignanamide analogues lacked activity and (2) the number and arrangement of phenolic hydroxyl groups is important for the activity of lignanolides. The congener with two catechol substructures (7) was found to be the most active compound in this study. 7 was also a potent inhibitor of the "disintegration" reaction which models the reversal of the strand transfer reaction. The inhibitory activity of 7 with the core enzyme fragment consisting of amino acids 50-212 suggests that the binding site of 7 resides in the catalytic domain.

摘要

天然二苄基丁内酯型木脂素(-)-牛蒡子苷元(2)是一种在受感染的人类细胞系统中抑制人类免疫缺陷病毒1型(HIV-1)复制的物质,被发现可抑制前病毒DNA整合到细胞DNA基因组中。在本研究中,用纯化的HIV-1整合酶对2进行了测试,发现其在切割(3'-加工)和整合(链转移)试验中无活性。然而,具有儿茶酚亚结构特征的半合成3-O-去甲基类似物9在这两种试验中均表现出显著活性。对30种天然(1-6)、半合成(7-21)和合成(37-43、45、46)木脂素进行的构效关系研究表明:(1)内酯部分至关重要,因为具有丁烷-1,4-二醇或四氢呋喃亚结构的化合物以及木脂素酰胺类似物均无活性;(2)酚羟基的数量和排列对木脂素的活性很重要。在本研究中,发现具有两个儿茶酚亚结构的类似物(7)是活性最高的化合物。7也是“解离”反应的有效抑制剂,该反应模拟链转移反应的逆转。7对由氨基酸50-212组成的核心酶片段的抑制活性表明,7的结合位点位于催化结构域。

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