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首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >The macrolide antibiotic azithromycin interacts with lipids and affects membrane organization and fluidity: Studies on Langmuir-Blodgett monolayers, liposomes and J774 macrophages
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The macrolide antibiotic azithromycin interacts with lipids and affects membrane organization and fluidity: Studies on Langmuir-Blodgett monolayers, liposomes and J774 macrophages

机译:大环内酯类抗生素阿奇霉素与脂质相互作用并影响膜组织和流动性:Langmuir-Blodgett单层,脂质体和J774巨噬细胞的研究

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The macrolide antibiotic azithromycin was shown to I markedly inhibit endocytosis. Here we investigate the interaction of azithromycin with biomembranes and its effects on membrane biophysics in relation to endocytosis. Equilibrium dialysis and P-31 NMR revealed that azithromycin binds to lipidic model membranes and decreases the mobility of phospholipid phosphate heads. In contrast, azithromycin had no effect deeper in the bilayer, based on fluorescence polarization of TMA-DPH and DPH, compounds that, respectively, explore the interfacial and hydrophobic domains of bilayers, and it did not induce membrane fusion, a key event of vesicular trafficking. Atomic force microscopy showed that azithromycin perturbed lateral phase separation in Langmuir-Blodgett monolayers, indicating a perturbation of membrane organization in lateral domains. The consequence of azithromycin/phospholipid interaction on membrane endocytosis was next evaluated in J774 macrophages by using three tracers with different insertion preferences inside the biological membranes and intracellular trafficking: C-6-NBD-SM, TMA-DPH and N-Rh-PE. Azithromycin differentially altered their insertion into the plasma membrane, slowed down membrane trafficking towards lysosomes, as evaluated by the rate of N-Rh-PE self-quenching relief, but did not affect bulk membrane internalization of C-6-NBDSM and TMA-DPH. Azithromycin also decreased plasma membrane fluidity, as shown by TMA-DPH fluorescence polarization and confocal microscopy after labeling by fluorescent concanavalin A. We conclude that azithromycin directly interacts with phospholipids, modifies biophysical properties of membrane and affects membrane dynamics in living cells. This antibiotic may therefore help to elucidate the physico-chemical properties underlying endocytosis. [References: 60]
机译:大环内酯类抗生素阿奇霉素显示出明显抑制内吞作用。在这里,我们研究了阿奇霉素与生物膜的相互作用及其与内吞作用有关的膜生物物理学的影响。平衡透析和P-31 NMR显示,阿奇霉素与脂质模型膜结合并降低磷脂磷酸酯头的迁移率。相反,基于TMA-DPH和DPH的荧光偏振,阿奇霉素在双层中没有更深的作用,这些化合物分别探索双层的界面和疏水结构域,并且不诱导膜融合,这是水泡的关键事件。贩运原子力显微镜显示,阿奇霉素扰乱了Langmuir-Blodgett单层的横向相分离,表明在横向域中膜组织的扰动。接下来,在J774巨噬细胞中,通过使用在生物膜内和细胞内运输中具有不同插入偏好的三种示踪剂,评估阿奇霉素/磷脂相互作用对膜内吞的影响:C-6-NBD-SM,TMA-DPH和N-Rh-PE。根据N-Rh-PE自抑制的速率,阿奇霉素差异性地改变了其向质膜的插入,减慢了向溶酶体的膜运输,但并未影响C-6-NBDSM和TMA-DPH的大体积膜内在化。如用荧光伴刀豆球蛋白A标记后的TMA-DPH荧光偏振和共聚焦显微镜观察,阿奇霉素还降低了质膜的流动性。我们得出的结论是,阿奇霉素直接与磷脂相互作用,修饰膜的生物物理特性,并影响活细胞的膜动力学。因此,这种抗生素可能有助于阐明内吞作用的理化性质。 [参考:60]

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