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新型固有荧光神经甾体的立体特异性性质及细胞内转运

Stereospecific Properties and Intracellular Transport of Novel Intrinsically Fluorescent Neurosteroids.

作者信息

Akkerman Vibeke, Reinholdt Peter, Schnoor-Madsen Rasmus, Lauritsen Line, Bader Jad, Qian Minxing, Xu Yuanjiang, Akk Gustav, Scheidt Holger A, Müller Peter, Covey Douglas F, Evers Alex S, Kongsted Jacob, Wüstner Daniel

机构信息

Department of Biochemistry and Molecular Biology, University of Southern Denmark, Campusvej 55, DK-5230 Odense M, Denmark.

Department of Physics, Chemistry and Pharmacy, University of Southern Denmark, Campusvej 55, DK-5230 Odense M, Denmark.

出版信息

ACS Chem Neurosci. 2024 Dec 4;15(23):4322-4336. doi: 10.1021/acschemneuro.4c00571. Epub 2024 Nov 22.

Abstract

Allopregnanolone (AlloP) is an example of neuroactive steroids (NAS), which is a potent allosteric activator of the γ-aminobutyric acid A (GABA) receptor. The mechanisms underlying the biological activity of AlloP and other NAS are only partially understood. Here, we present intrinsically fluorescent analogs of AlloP (MQ-323) and its 3β-epimer, epi-allopregnanolone (E-AlloP) (YX-11), and show, by a combination of spectroscopic and computational studies, that these analogs mimic the membrane properties of AlloP and E-AlloP very well. We found stereospecific differences in the orientation and dynamics of the NAS as well as in their impact on membrane permeability. However, all NAS are unable to condense the lipid bilayer, in stark contrast to cholesterol. Using Förster resonance energy transfer (FRET) and electrophysiological measurements, we show that MQ-323 but not YX-11 binds at the intersubunit site of the ELICαGABA receptor and potentiates GABA-induced receptor currents. In aqueous solvents, YX-11 forms aggregates at much lower concentrations than MQ-323, and loading both analogs onto cyclodextrin allows for their uptake by human astrocytes, where they become enriched in lipid droplets (LDs), as shown by quantitative fluorescence microscopy. Trafficking of the NAS analogs is stereospecific, as uptake and lipid droplet targeting is more pronounced for YX-11 compared to MQ-323. In summary, we present novel minimally modified analogs of AlloP and E-AlloP, which enable us to reveal stereospecific membrane properties, allosteric receptor activation, and intracellular transport of these neurosteroids. Our fluorescence design strategy will be very useful for the analysis of other NAS in the future.

摘要

别孕烯醇酮(AlloP)是神经活性甾体(NAS)的一个例子,它是γ-氨基丁酸A(GABA)受体的一种强效变构激活剂。AlloP和其他NAS的生物活性背后的机制仅得到部分理解。在这里,我们展示了别孕烯醇酮(MQ-323)及其3β-差向异构体表别孕烯醇酮(E-AlloP,YX-11)的内在荧光类似物,并通过光谱学和计算研究相结合的方法表明,这些类似物能很好地模拟AlloP和E-AlloP的膜特性。我们发现NAS在取向和动力学以及它们对膜通透性的影响方面存在立体特异性差异。然而,与胆固醇形成鲜明对比的是,所有NAS都无法使脂质双层凝聚。使用Förster共振能量转移(FRET)和电生理测量,我们表明MQ-323而非YX-11在ELICαGABA受体的亚基间位点结合并增强GABA诱导的受体电流。在水性溶剂中,YX-11比MQ-323在低得多的浓度下形成聚集体,将这两种类似物都加载到环糊精上可使其被人星形胶质细胞摄取,如定量荧光显微镜所示,它们在脂滴(LDs)中富集。NAS类似物的转运具有立体特异性,因为与MQ-323相比,YX-11的摄取和脂滴靶向更明显。总之,我们展示了别孕烯醇酮和表别孕烯醇酮的新型最小修饰类似物,这使我们能够揭示这些神经甾体的立体特异性膜特性、变构受体激活和细胞内转运。我们的荧光设计策略在未来对其他NAS的分析将非常有用。

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