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首页> 外文期刊>Marine Drugs >HSQC-TOCSY Fingerprinting-Directed Discovery of Antiplasmodial Polyketides from the Marine Ascidian-Derived Streptomyces sp. (USC-16018)
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HSQC-TOCSY Fingerprinting-Directed Discovery of Antiplasmodial Polyketides from the Marine Ascidian-Derived Streptomyces sp. (USC-16018)

机译:HSQC-TOCSY指纹识别法从海洋海鞘衍生的链霉菌属物种中发现抗血浆聚酮化合物。 (USC-16018)

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Chemical investigations on the fermentation extract obtained from an ascidian-derived Streptomyces sp. (USC-16018) yielded a new ansamycin polyketide, herbimycin G ( 1 ), as well as a known macrocyclic polyketide, elaiophylin ( 2 ), and four known diketopiperazines ( 3 – 6 ). The structures of the compounds were elucidated based on 1D/2D NMR and MS data. The absolute configuration of 1 was established by comparison of experimental and predicted electronic circular dichroism (ECD) data. Antiplasmodial activities were tested for the natural products against chloroquine sensitive (3D7) and chloroquine resistant (Dd2) Plasmodium falciparum strains; the two polyketides ( 1 – 2 ) demonstrated an inhibition of 75% against both parasite strains and while 2 was highly cytotoxic, herbimycin G ( 1 ) showed no cytotoxicity and good predicted water solubility.
机译:从海鞘来源的链霉菌属物种获得的发酵提取物的化学研究。 (USC-16018)产生了一种新的安沙霉素聚酮化合物除草素G(1),以及一种已知的大环聚酮化合物弹性蛋白(2)和四种已知的二酮哌嗪(3-6)。根据1D / 2D NMR和MS数据阐明了化合物的结构。通过比较实验和预测的电子圆二色性(ECD)数据,确定1的绝对构型。测试了天然产物对氯喹敏感(3D7)和耐氯喹(Dd2)恶性疟原虫菌株的抗血浆活性。两种聚酮化合物(1-2)对两种寄生虫菌株均显示出> 75%的抑制作用,而2种具有高度的细胞毒性,而除草霉素G(1)则无细胞毒性,且预测的水溶性良好。

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