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芳香二烯酰四酰胺酸。对厌氧菌和葡萄球菌有活性的新型抗菌剂。

Aromatic dienoyl tetramic acids. Novel antibacterial agents with activity against anaerobes and staphylococci.

作者信息

Rosen T, Fernandes P B, Marovich M A, Shen L, Mao J, Pernet A G

机构信息

Abbott Laboratories, Abbott Park, Illinois 60064.

出版信息

J Med Chem. 1989 May;32(5):1062-9. doi: 10.1021/jm00125a022.

Abstract

Streptolydigin (1) and tirandamycin A (2) are typical members of the naturally occurring class of 3-dienoyl tetramic acids. These compounds, which possess potent antibacterial activity particularly against anaerobes, have been shown to inhibit bacterial RNA polymerase. In contrast, tenuazonic acid (5), which lacks a complex dioxabicyclononane moiety and diene chromophore present in 1 and 2, exhibits essentially no antimicrobial activity and has no effect on bacterial RNA polymerase, suggesting that one or both of these structural features may be critical for antibacterial activity. In this paper, we report on a novel series of synthetic dienoyl tetramic acids that lack a complex dioxabicyclononane unit. Several of these compounds, particularly 8T-W, exhibit potent antimicrobial activity against Gram-positive and Gram-negative anaerobes as well as staphylococci. We will discuss the structure-activity relationship for this series of compounds which, in contrast to their natural counterparts, do not inhibit significantly RNA polymerase. We will also discuss preliminary results on the biochemical and microbiological properties of this series of compounds, several of which moderately inhibit supercoiling by DNA gyrase isolated from E. coli H560, although this enzyme has not been established as their target in whole cells. Compound 8W, which is not cross-resistant with DNA gyrase subunit A or B inhibitors or tirandamycin, has also been demonstrated to be rapidly bactericidal.

摘要

链霉溶菌素(1)和替兰霉素A(2)是天然存在的3-二烯酰基四酰胺酸类的典型成员。这些化合物具有强大的抗菌活性,尤其对厌氧菌有效,已被证明能抑制细菌RNA聚合酶。相比之下,细交链孢菌酮酸(5)缺乏1和2中存在的复杂二氧杂双环壬烷部分和二烯发色团,基本没有抗菌活性,对细菌RNA聚合酶也没有影响,这表明这些结构特征中的一个或两个可能对抗菌活性至关重要。在本文中,我们报道了一系列新型的合成二烯酰基四酰胺酸,它们缺乏复杂的二氧杂双环壬烷单元。其中几种化合物,特别是8T-W,对革兰氏阳性和革兰氏阴性厌氧菌以及葡萄球菌表现出强大的抗菌活性。我们将讨论这一系列化合物的构效关系,与它们的天然同类物不同,这些化合物不会显著抑制RNA聚合酶。我们还将讨论这一系列化合物的生化和微生物学性质的初步结果,其中几种化合物能适度抑制从大肠杆菌H560分离的DNA促旋酶的超螺旋,尽管尚未确定该酶在全细胞中的作用靶点。化合物8W与DNA促旋酶亚基A或B抑制剂或替兰霉素没有交叉耐药性,也已被证明具有快速杀菌作用。

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