Nakagawa Yasuo, Umegawa Yuichi, Nonomura Kenichi, Matsushita Naohiro, Takano Tetsuro, Tsuchikawa Hiroshi, Hanashima Shinya, Oishi Tohru, Matsumori Nobuaki, Murata Michio
Department of Chemistry, Graduate School of Science, Osaka University , 1-1 Machikaneyama, Toyonaka, Osaka 560-0043, Japan.
Biochemistry. 2015 Jan 20;54(2):303-12. doi: 10.1021/bi5012942. Epub 2015 Jan 5.
The interaction of amphotericin B (AmB) with fungal ergosterol (Erg) is stronger than its interaction with mammalian cholesterol (Cho), and this property of AmB as an antifungal drug is thought to be responsible for its selective toxicity toward fungi. However, the mechanism by which AmB recognizes the structural differences between sterols, particularly minor difference in the sterol alicyclic portion, is largely unknown. Thus, to investigate the mode of interaction between AmB and the sterol core, we assessed the affinity of AmB to various sterols with different alicyclic structures. Ion flux assays and UV spectral measurements clearly revealed the importance of the Δ7-double bond of the sterol B-ring for interaction with the drug. AmB showed lower affinity for triene sterols, which have double bonds at the Δ5, Δ7, and Δ9 positions. Intermolecular distance measurements by (13)C{(19)F} rotational echo double resonance (REDOR) revealed that the AmB macrolide ring is in closer contact with the steroid core of Erg than it is with the Cho core in the membrane. Conformational analysis suggested that an axial hydrogen atom at C7 of Δ5-sterol (2, 6) and the protruded A-ring of Δ5,7,9-sterol (4, 8) sterically hampered face-to-face contact between the van der Waals surface of the sterol core and the macrolide of AmB. These results further suggest that the α-face of sterol alicycle interacts with the flat macrolide structure of AmB.
两性霉素B(AmB)与真菌麦角固醇(Erg)的相互作用强于其与哺乳动物胆固醇(Cho)的相互作用,AmB作为一种抗真菌药物的这一特性被认为是其对真菌具有选择性毒性的原因。然而,AmB识别甾醇结构差异的机制,尤其是甾醇脂环部分的细微差异,在很大程度上尚不清楚。因此,为了研究AmB与甾醇核心的相互作用模式,我们评估了AmB对具有不同脂环结构的各种甾醇的亲和力。离子通量测定和紫外光谱测量清楚地揭示了甾醇B环的Δ7双键对于与药物相互作用的重要性。AmB对在Δ5、Δ7和Δ9位置具有双键的三烯甾醇表现出较低的亲和力。通过(13)C{(19)F}旋转回波双共振(REDOR)进行的分子间距离测量表明,在膜中,AmB大环内酯环与Erg的甾体核心比与Cho的核心接触更紧密。构象分析表明,Δ5-甾醇(2,6)C7处的轴向氢原子以及Δ5,7,9-甾醇(4,8)突出的A环在空间上阻碍了甾醇核心的范德华表面与AmB大环内酯之间的面对面接触。这些结果进一步表明,甾醇脂环的α面与AmB的扁平大环内酯结构相互作用。