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6-F-麦角甾醇的合成及其对两性霉素 B 和 Amphidinol 3 膜通透性的影响。

Synthesis of 6-F-ergosterol and its influence on membrane-permeabilization of amphotericin B and amphidinol 3.

机构信息

Department of Chemistry, Graduate School of Science, Osaka University, 1-1 Machikaneyama, Toyonaka, Osaka, 560-0043, Japan.

出版信息

Org Biomol Chem. 2011 Mar 7;9(5):1437-42. doi: 10.1039/c0ob00685h. Epub 2011 Jan 11.

Abstract

Two well-known antifungals, amphotericin B (AmB) and amphodinol 3 (AM3), are thought to exert antifungal activity by forming ion-permeable channels or pores together with sterol molecules. However, detailed molecular recognitions for AmB-sterol and AM3-sterol in lipid bilayers have yet to be determined. Toward (19)F NMR-based investigation of the molecular recognition underlying their potent antifungal activity, we synthesized 6-fluoro-ergosterol in five steps via ring opening of (5α,6α)-epoxide of ergosterol acetate with using novel combination of TiF(4) and n-Bu(4)N(+)Ph(3)SiF(2)(-). Then we evaluated its activity of promoting pore formation of AmB and AM3, and found that pore formation of AmB was barely promoted by 6-F-ergosterol in clear contrast to the dramatic promotion effect of unmodified ergosterol, whereas AM3 activity was markedly enhanced in the presence of 6-F-ergosterol, which was comparable to that of unmodified ergosterol. These results indicate that the introduction of an F atom at C6 position of ergosterol plays an inhibitory role in interacting with AmB, but it is not the case with AM3.

摘要

两种知名的抗真菌药物,两性霉素 B(AmB)和两性霉素 3(AM3),被认为通过与甾醇分子共同形成离子可渗透的通道或孔来发挥抗真菌活性。然而,AmB-甾醇和 AM3-甾醇在脂质双层中的详细分子识别尚未确定。为了基于 19F NMR 研究其强大抗真菌活性的分子识别,我们通过使用 TiF4 和 n-Bu4N+Ph3SiF2-的新型组合,通过(5α,6α)-氧化甾醇乙酸酯的环氧化开环,以五步合成了 6-氟麦角甾醇。然后,我们评估了它促进 AmB 和 AM3 形成孔的活性,发现 6-F-ergosterol 几乎不能促进 AmB 的孔形成,与未修饰的麦角甾醇的显著促进作用形成鲜明对比,而 AM3 活性在存在 6-F-ergosterol 时显著增强,与未修饰的ergosterol 相当。这些结果表明,麦角甾醇 C6 位引入氟原子在与 AmB 相互作用中起抑制作用,但与 AM3 情况并非如此。

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