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首页> 外文期刊>MedChemComm >Bioguided discovery and pharmacophore modeling of the mycotoxic indole diterpene alkaloids penitrems as breast cancer proliferation, migration, and invasion inhibitors
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Bioguided discovery and pharmacophore modeling of the mycotoxic indole diterpene alkaloids penitrems as breast cancer proliferation, migration, and invasion inhibitors

机译:真菌毒性吲哚二萜生物碱青霉作为乳腺癌增殖,迁移和侵袭抑制剂的生物引导发现和药效团建模

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摘要

Marine-derived fungi have proven to be important sources of bioactive natural organohalides. The genus Penicillium is recognized as a rich source of chemically diverse bioactive secondary metabolites. This study reports the fermentation, isolation and identification of a marine-derived Penicillium species. Bioassay-guided fractionation afforded the indole diterpene alkaloids penitrems A, B, D, E and F as well as paspaline and emnidole SB (1-7). Supplementing the fermentation broth of the growing fungus with KBr afforded the new 6-bromopenitrem B (8) and the known 6-bromopenitrem E (9). These compounds showed good antiproliferative, antimigratory and anti-invasive properties against human breast cancer cells. Penitrem B also showed a good activity profile in the NCI-60 DTP human tumor cell line screen. The nematode Caenorhabditis elegans was used to assess the BK channel inhibitory activity and toxicity of select compounds. A pharmacophore model was generated to explain the structural relationships of 1-9 with respect to their antiproliferative activity against the breast cancer MCF-7 cells. The structurally less complex biosynthetic precursors, paspaline (6) and emindole SB (7), were identified as potential hits suitable for future studies.
机译:事实证明,海洋来源的真菌是生物活性天然有机卤化物的重要来源。青霉属被认为是化学上多样化的生物活性次级代谢产物的丰富来源。这项研究报告了一种海洋来源的青霉菌的发酵,分离和鉴定。生物测定指导的分离提供了吲哚二萜生物碱青霉烯A,B,D,E和F以及Paspaline和Emnidole SB(1-7)。用溴化钾(KBr)补充生长真菌的发酵液,得到了新的6-溴清蛋白B(8)和已知的6-溴清蛋白E(9)。这些化合物对人乳腺癌细胞显示出良好的抗增殖,抗迁移和抗侵袭性能。 Penitrem B在NCI-60 DTP人肿瘤细胞系筛选中也显示出良好的活性。线虫秀丽隐杆线虫用于评估BK通道抑制活性和某些化合物的毒性。产生了药效团模型,以解释1-9关于其对乳腺癌MCF-7细胞的抗增殖活性的结构关系。结构上不太复杂的生物合成前体,paspaline(6)和emindole SB(7)被确定为适合未来研究的潜在产品。

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