天然氨基甾醇抑制NMDA受体具有低纳摩尔效价。

Giulia Fani, Elisabetta Coppi, Silvia Errico, Federica Cherchi, Martina Gennari, Denise Barbut, Michele Vendruscolo, Michael Zasloff, Anna Maria Pugliese, Fabrizio Chiti
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引用次数: 0

摘要

n -甲基- d -天冬氨酸受体(NMDARs)功能异常与许多脑部疾病有关,使其成为药物开发的主要靶点。我们发现天然氨基甾醇抑制nmda介导的细胞内钙离子在培养的原代神经元和神经母细胞瘤细胞中的增加。与已知的nmdar阴性变构调节剂(如孕烷醇酮-硫酸盐-2 (PAS))的结构比较,提出了氨基甾醇具有相同作用机制的假设。荧光共振能量转移(FRET)测量使用标记的NMDAR和标记的氨基甾醇trodusquemine (TRO)表明紧密的空间接近,可能是由结合引起的。排除了TRO抑制NMDAR的其他间接但合理的机制。电生理膜片钳对初级神经元的测量表明,预孵育的TRO抑制nmda诱导的离子电流,IC50为5 nm。只有在细胞膜预吸附后才观察到抑制作用,这表明NMDAR可以从细胞膜上进入,并与跨膜结构域(TMDs)和tmd配体结合结构域(LBD)连接体结合,类似于PAS。TRO IC50比PAS高5000倍,比其他结合TMD/TMD- lbd区域的抑制剂高20- 16000倍,这表明氨基甾醇是有前途和有效的NMDAR调节剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Natural aminosterols inhibit NMDA receptors with low nanomolar potency.

Abnormal functions of N-methyl-D-aspartate receptors (NMDARs) are associated with many brain disorders, making them primary targets for drug discovery. We show that natural aminosterols inhibit the NMDAR-mediated increase of intracellular calcium ions in cultured primary neurons and neuroblastoma cells. Structural comparison with known NMDAR-negative allosteric modulators, such as pregnanolone-sulfate-2 (PAS), raises the hypothesis that aminosterols have the same mechanism of action. Fluorescence resonance energy transfer (FRET) measurements using labeled NMDAR and the labeled aminosterol trodusquemine (TRO) indicate close spatial proximity, likely arising from binding. Other indirect yet plausible mechanisms for NMDAR inhibition by TRO were excluded. Electrophysiological patch clamp measurements on primary neurons indicate that pre-incubated TRO inhibits NMDA-induced ion currents with a IC50 of 5 nm. Inhibition is observed only after cell membrane pre-adsorption, indicating accessibility to NMDAR from the cell membrane and binding to the transmembrane domains (TMDs) and TMD-ligand-binding domain (LBD) linkers, similarly to PAS. The TRO IC50 is 5000-fold higher than that of PAS and 20-16 000 times higher than those of other inhibitors binding to TMD/TMD-LBD regions, identifying aminosterols as promising and potent NMDAR modulators.

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