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Recognition of Membrane Sterols by Polyene Antifungals Amphotericin B and Natamycin A 13C MAS NMR Study

机译:多烯抗真菌剂两性霉素B和纳他霉素对膜甾醇的识别13 C MAS NMR研究

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摘要

The molecular action of polyene macrolides with antifungal activity, amphotericin B and natamycin, involves recognition of sterols in membranes. Physicochemical and functional studies have contributed details to understanding the interactions between amphotericin B and ergosterol and, to a lesser extent, with cholesterol. Fewer molecular details are available on interactions between natamycin with sterols. We use solid state 13C MAS NMR to characterize the impact of amphotericin B and natamycin on mixed lipid membranes of DOPC/cholesterol or DOPC/ergosterol. In cholesterol-containing membranes, amphotericin B addition resulted in marked increase in both DOPC and cholesterol 13C MAS NMR linewidth, reflecting membrane insertion and cooperative perturbation of the bilayer. By contrast, natamycin affects little either DOPC or cholesterol linewidth but attenuates cholesterol resonance intensity preferentially for sterol core with lesser impact on the chain. Ergosterol resonances, attenuated by amphotericin B, reveal specific interactions in the sterol core and chain base. Natamycin addition selectively augmented ergosterol resonances from sterol core ring one and, at the same time, from the end of the chain. This puts forward an interaction model similar to the head-to-tail model for amphotericin B/ergosterol pairing but with docking on opposite sterol faces. Low toxicity of natamycin is attributed to selective, non-cooperative sterol engagement compared to cooperative membrane perturbation by amphotericin B.
机译:具有抗真菌活性的多烯大环内酯类,两性霉素B和那他霉素的分子作用涉及膜中固醇的识别。物理化学和功能研究为理解两性霉素B与麦角固醇之间的相互作用以及在较小程度上与胆固醇之间的相互作用做出了贡献。关于纳他霉素与固醇之间相互作用的分子细节较少。我们使用固态 13 MAS NMR来表征两性霉素B和那他霉素对DOPC /胆固醇或DOPC /麦角固醇的混合脂质膜的影响。在含胆固醇的膜中,添加两性霉素B导致DOPC和胆固醇 13 C MAS NMR线宽均显着增加,反映了膜的插入和双层的协同扰动。相比之下,纳他霉素对DOPC或胆固醇线宽的影响均很小,但对甾醇核心的胆固醇共振强度优先减弱,对链的影响较小。两性霉素B减弱的麦角固醇共振揭示了固醇核心和链基中的特定相互作用。纳他霉素的添加选择性地增强了来自固醇核心环1的麦角固醇的共振,并同时增强了链末端的麦角固醇的共振。提出了一种类似于两性霉素B /麦角固醇配对的头对尾模型的相互作用模型,但是在对立的固醇表面上对接。那他霉素的低毒性归因于与两性霉素B产生的协同膜扰动相比,选择性的非协同固醇参与。

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