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Differential effects of quercetin glycosides on GABA(C) receptor channel activity

机译:槲皮素糖苷对GABA(C)受体沟道活性的差异影响

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Quercetin, a representative flavonoid, is a compound of low molecular weight found in various colored plants and vegetables. Quercetin shows a wide range of neuropharmacological activities. In fact, quercetin naturally exists as monomer-(quercetin-3-O-rhamnoside) (Rham1), dimer-(Rutin), or trimer-glycosides [quercetin-3-(2(G)-rhamnosylrutinoside)] (Rham2) at carbon-3 in fruits and vegetables. The carbohydrate components are removed after ingestion into gastrointestinal systems. The role of the glycosides attached to quercetin in the regulation of gamma-aminobutyric acid class C (GABA(C)) receptor channel activity has not been determined. In the present study, we examined the effects of quercetin glycosides on GABA(C) receptor channel activity by expressing human GABA(C) alone in Xenopus oocytes using a two-electrode voltage clamp technique and also compared the effects of quercetin glycosides with quercetin. We found that GABA-induced inward current (I (GABA) ) was inhibited by quercetin or quercetin glycosides. The inhibitory effects of quercetin and its glycosides on I (GABA) were concentration-dependent and reversible in the order of Rutin a parts per thousand quercetin a parts per thousand Rham 1 > Rham 2. The inhibitory effects of quercetin and its glycosides on I (GABA) were noncompetitive and membrane voltage-insensitive. These results indicate that quercetin and its glycosides regulate GABA(C) receptor channel activity through interaction with a different site from that of GABA, and that the number of carbohydrate attached to quercetin might play an important role in the regulation of GABA(C) receptor channel activity.
机译:槲皮素是一种代表性的黄酮类化合物,是在各种颜色的植物和蔬菜中发现的低分子量的化合物。槲皮素显示出广泛的神经医学活动。实际上,槲皮素天然存在作为单体(槲皮素-3-O-菱形)(rhAM1),二聚体 - (芦丁),或三聚糖苷[槲皮素-3-(2(g)-Rhamnysylyside)](rham2)水果和蔬菜中的碳-3。在摄入到胃肠系统后,将碳水化合物组分除去。尚未确定附着在槲皮素的槲皮素中的糖苷的作用尚未确定γ-氨基丁酸类C(GABA(C))受体通道活性。在本研究中,我们通过使用双电极电压钳位技术表达单独的人GABA(C),检查了槲皮素糖苷对GABA(C)受体通道活性的影响,并使用双电极电压钳位技术表达蛋白质卵母细胞,并将槲皮素糖苷与槲皮素的影响进行了比较。我们发现,槲皮素或槲皮素糖苷抑制了GABA诱导的向内电流(I(GABA))。槲皮素及其糖苷对I(GABA)的抑制作用是浓度依赖性的,并按纽约毒素的份数左右的份数依赖性和可逆蛋白质零rhAM1> rhAM 2.乳蛋白的抑制作用及其糖苷对I( GABA)是非竞争性和膜电压不敏感的。这些结果表明槲皮素及其糖苷通过与加巴的不同部位的相互作用来调节GABA(C)受体通道活性,并且附着在槲皮素上的碳水化合物的数量可能在GABA(C)受体的调节中起重要作用频道活动。

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