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作为作用于P2X7受体的正变构调节剂的糖苷构效关系研究

Insights into the Structure-Activity Relationship of Glycosides as Positive Allosteric Modulators Acting on P2X7 Receptors.

作者信息

Piyasirananda Waraporn, Beekman Andrew, Ganesan A, Bidula Stefan, Stokes Leanne

机构信息

School of Pharmacy, University of East Anglia, Norwich Research Park, Norwich, United Kingdom.

School of Pharmacy, University of East Anglia, Norwich Research Park, Norwich, United Kingdom

出版信息

Mol Pharmacol. 2021 Feb;99(2):163-174. doi: 10.1124/molpharm.120.000129. Epub 2020 Dec 17.

Abstract

P2X7 is an important ligand-gated ion channel expressed in multiple immune cell populations. This study aimed to investigate the chemical requirements of triterpenoid glycosides within a new binding pocket to characterize the structure-activity relationship. A set of glycosides were screened for positive modulator activity at human P2X7 using a YO-PRO-1 dye uptake assay in HEK-293 cells stably expressing the wild-type human P2X7 variant (HEK-hP2X7 cells). The highest positive modulator activity was with ginsenoside-compound K (CK), containing a monosaccharide (glucose) attached at carbon-20. Ginsenoside-20()-Rg3, containing a disaccharide group (glucose-glucose) at carbon-3, displayed positive modulator activity with a reduced EC for ATP and increased maximal response at human P2X7. The epimer 20()-Rg3 was inactive. A similar stereo-specific pattern was observed for 20()-Rh2. Ginsenoside-F1, highly similar to ginsenoside-CK but containing a single additional hydroxyl group, was also inactive at P2X7. Computational docking suggests hydrophobic residues in the pocket are involved in steric discrimination between triterpenoids, whereas the position and identity of the carbohydrate group are important for positive modulator activity at human P2X7. Ginsenosides containing monosaccharide attachments perform better than di- or trisaccharide glycosides. Additional modifications to the triterpenoid scaffold at carbon-6 are not tolerated. Gypenosides from plant sources other than (gypenoside XVII, gypenoside XLIX, stevenleaf) can also act as positive allosteric modulators of P2X7. We also investigated the effect of positive allosteric modulators on endogenous P2X7 in THP-1 monocytes and confirmed our findings in a calcium response assay. A cell viability assay showed potentiation of ATP-induced cell death with ginsenoside-CK in THP-1 and HEK-hP2X7 cells. SIGNIFICANCE STATEMENT: Ginsenosides are active as positive allosteric modulators at P2X7, and this study determines the chemical features important for mediating this effect. The position and identity of the sugar group is important for activity, as is the position of a number of hydroxyl groups on the triterpenoid scaffold. Diastereomers of ginsenoside-Rg3 and ginsenoside-Rh2 demonstrate the importance of the location of hydroxyl groups relative to the hydrophobic face of the predicted binding pocket.

摘要

P2X7是一种在多种免疫细胞群体中表达的重要配体门控离子通道。本研究旨在探究新结合口袋内三萜糖苷的化学需求,以表征构效关系。使用YO-PRO-1染料摄取试验,在稳定表达野生型人P2X7变体的HEK-293细胞(HEK-hP2X7细胞)中筛选一组糖苷对人P2X7的正向调节剂活性。最高的正向调节剂活性来自人参皂苷Compound K(CK),其在C-20位连接有一个单糖(葡萄糖)。人参皂苷20(S)-Rg3在C-3位含有一个二糖基团(葡萄糖-葡萄糖),对人P2X7显示出正向调节剂活性,其ATP的EC50降低,最大反应增加。其差向异构体20(R)-Rg3无活性。20(S)-Rh2也观察到类似的立体特异性模式。人参皂苷-F1与人参皂苷-CK高度相似,但多了一个羟基,在P2X7上也无活性。计算对接表明,口袋中的疏水残基参与三萜类化合物之间的空间识别,而碳水化合物基团的位置和性质对人P2X7的正向调节剂活性很重要。含有单糖连接的人参皂苷比二糖或三糖糖苷表现更好。在C-6位对三萜骨架的额外修饰是不被允许的。除绞股蓝(绞股蓝皂苷XVII、绞股蓝皂苷XLIX、甜叶)外,其他植物来源的绞股蓝皂苷也可作为P2X7的正向变构调节剂。我们还研究了正向变构调节剂对THP-1单核细胞内源性P2X7的影响,并在钙反应试验中证实了我们的发现。细胞活力试验表明,人参皂苷-CK在THP-1和HEK-hP2X7细胞中增强了ATP诱导的细胞死亡。意义声明:人参皂苷作为P2X7的正向变构调节剂具有活性,本研究确定了介导这种效应的重要化学特征。糖基的位置和性质对活性很重要,三萜骨架上多个羟基的位置也很重要。人参皂苷-Rg3和人参皂苷-Rh2的非对映异构体证明了羟基相对于预测结合口袋疏水表面位置的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c557/7816042/b8412baa74c8/molpharm.120.000129f1.jpg

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