Antiplasmodial Activity, Cytotoxicity and Structure-Activity Relationship Study of Cyclopeptide Alkaloids

E. Tuenter, Karen Segers, K. Kang, Johan Viaene, S. Sung, P. Cos, L. Maes, Y. Vander Heyden, L. Pieters
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引用次数: 19

Abstract

Cyclopeptide alkaloids are polyamidic, macrocyclic compounds, containing a 13-, 14-, or 15-membered ring. The ring system consists of a hydroxystyrylamine moiety, an amino acid, and a β-hydroxy amino acid; attached to the ring is a side chain, comprised of one or two more amino acid moieties. In vitro antiplasmodial activity was shown before for several compounds belonging to this class, and in this paper the antiplasmodial and cytotoxic activities of ten more cyclopeptide alkaloids are reported. Combining these results and the IC50 values that were reported by our group previously, a library consisting of 19 cyclopeptide alkaloids was created. A qualitative SAR (structure-activity relationship) study indicated that a 13-membered macrocyclic ring is preferable over a 14-membered one. Furthermore, the presence of a β-hydroxy proline moiety could correlate with higher antiplasmodial activity, and methoxylation (or, to a lesser extent, hydroxylation) of the styrylamine moiety could be important for displaying antiplasmodial activity. In addition, QSAR (quantitative structure-activity relationship) models were developed, using PLS (partial least squares regression) and MLR (multiple linear regression). On the one hand, these models allow for the indication of the most important descriptors (molecular properties) responsible for the antiplasmodial activity. Additionally, predictions made for interesting structures did not contradict the expectations raised in the qualitative SAR study.
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环肽生物碱的抗疟原虫活性、细胞毒性及构效关系研究
环肽生物碱是聚酰胺类大环化合物,含有13、14或15元环。该环系由羟基苯胺部分、氨基酸和β-羟基氨基酸组成;附在环上的是一个侧链,由一个或两个以上的氨基酸部分组成。这类化合物的体外抗疟原虫活性已被证实,本文报道了十余种环肽生物碱的体外抗疟原虫活性和细胞毒活性。结合本课题组先前报道的IC50值,建立了19个环肽生物碱文库。定性的构效关系研究表明,13元的大环优于14元的大环。此外,β-羟基脯氨酸片段的存在可能与较高的抗疟原虫活性相关,而苯胺片段的甲氧基化(或较小程度的羟基化)可能对显示抗疟原虫活性很重要。此外,利用偏最小二乘回归(PLS)和多元线性回归(MLR)建立了定量构效关系(QSAR)模型。一方面,这些模型允许指示最重要的描述符(分子性质)负责抗疟原虫活性。此外,对有趣结构的预测与定性SAR研究中提出的期望并不矛盾。
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