从茄科植物茄属(Solanum erianthum)的树枝和树叶中提取的对映体选择性抗木质素酰胺的立体化学见解。

IF 3.2 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Phytochemistry Pub Date : 2024-05-28 DOI:10.1016/j.phytochem.2024.114163
Xi-Hong Liu , Yu-Nan Qian , Zhi-Xiang Xie , Peng-Hai Tian , Zheng-Hui Huang , Bin Zhou , Jian-Min Yue
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摘要

对 Solanum erianthum 的树枝和树叶进行的立体化学研究获得了五对木质素酰胺对映体和一种以前未曾描述过的酚酰胺(3)。特别是两对以前未曾描述过的木质素酰胺外消旋体(1a/1b-2a/2b),代表了第一例具有未曾报道过的 5/5 融合 N/O 双杂环核心的天然产物。通过光谱分析和电子圆二色性计算,明确确定了它们的结构,包括绝对构型。并提出了 1-3 的推测生物发生途径。有趣的是,这些木质素酰胺对药物敏感的恶性疟原虫 3D7 株和耐氯喹的恶性疟原虫 Dd2 株具有对映选择性抗疟活性,这表明手性在药物开发中发挥着重要作用。
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Stereochemical insights into enantioselective antiplasmodial lignanamides from the twigs and leaves of Solanum erianthum

Stereochemical investigations on the twigs and leaves of Solanum erianthum afforded five pairs of lignanamide enantiomers and a previously undescribed phenolic amide (3). Particularly, two pairs of previously undescribed lignanamide racemates (1a/1b2a/2b) represent the first case of natural products that feature an unreported 5/5-fused N/O-biheterocyclic core. Their structures, including the absolute configurations, were determined unambiguously by using spectroscopic analyses and electronic circular dichroism calculations. A speculative biogenetic pathway for 13 was proposed. Interestingly, these lignanamides exhibited enantioselective antiplasmodial activities against drug-sensitive Plasmodium falciparum 3D7 strain and chloroquine-resistant Plasmodium falciparum Dd2 strain, pointing out that chirality plays an important role in drug development.

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来源期刊
Phytochemistry
Phytochemistry 生物-植物科学
CiteScore
6.40
自引率
7.90%
发文量
443
审稿时长
39 days
期刊介绍: Phytochemistry is a leading international journal publishing studies of plant chemistry, biochemistry, molecular biology and genetics, structure and bioactivities of phytochemicals, including ''-omics'' and bioinformatics/computational biology approaches. Phytochemistry is a primary source for papers dealing with phytochemicals, especially reports concerning their biosynthesis, regulation, and biological properties both in planta and as bioactive principles. Articles are published online as soon as possible as Articles-in-Press and in 12 volumes per year. Occasional topic-focussed special issues are published composed of papers from invited authors.
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