State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences, Peking University, 38 Xueyuan Road, Beijing 100191, China.
Eur J Med Chem. 2013 Jun;64:160-8. doi: 10.1016/j.ejmech.2013.03.041. Epub 2013 Apr 3.
To elucidate the pharmacophore of echinocystic acid (EA), an oleanane-type triterpene displaying substantial inhibitory activity on HCV entry, two microbial strains, Rhizopus chinensis CICC 3043 and Alternaria alternata AS 3.4578, were utilized to modify the chemical structure of EA. Eight new metabolites with regio- and stereo-selective introduction of hydroxyl and lactone groups at various inert carbon positions were obtained. The anti-HCV entry activity of the metabolites 2-13, along with their parental compound EA and other analogs 14-15, were evaluated. Most of the metabolites showed no improvement but detrimental effect on potency except compound 5 and 6, which showed similar and even a litter higher anti-HCV entry activity than that of EA. The results demonstrated that ring A, B, C and the left side of ring E of EA are highly conserved, while ring D and the right side of ring E of EA are flexible. Introduction of a hydroxyl group at C-16 enhanced the triterpene potency. Further analysis indicated that the hemolytic effect of EA disappeared upon such modifications.
为了阐明具有显著 HCV 进入抑制活性的齐墩果酸(EA)的药效团,利用两株微生物菌株——中国根霉 CICC 3043 和交替单端孢霉 AS 3.4578,对 EA 的化学结构进行了修饰。在各种惰性碳原子位置上引入了羟基和内酯基团,得到了 8 个具有区域和立体选择性的新代谢产物。对代谢产物 2-13 及其母体化合物 EA 和其他类似物 14-15 的抗 HCV 进入活性进行了评价。除化合物 5 和 6 外,大多数代谢产物的活性没有改善,反而降低,而化合物 5 和 6 的活性与 EA 相似,甚至略高。结果表明,EA 的 A、B、C 环和 E 环的左侧高度保守,而 D 环和 E 环的右侧具有较大的灵活性。在 C-16 位引入羟基可增强三萜的效力。进一步分析表明,EA 的溶血作用在这些修饰后消失。