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The orthosteric agonist 2-chloro-5-hydroxyphenylglycine activates mGluR5 and mGluR1 with similar efficacy and potency

机译:正构激动剂2-氯-5-羟苯基甘氨酸激活mGluR5和mGluR1具有相似的功效和功效

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Background The efficacy, potency, and selectivity of the compound 2-Chloro-5-hydroxyphenylglycine (CHPG), a nominally selective agonist for metabotropic glutamate receptor 5 (mGluR5), were examined with select mGluRs by examining their ability to induce modulation of the native voltage dependent ion channels in isolated sympathetic neurons from the rat superior cervical ganglion (SCG). SCG neurons offer a null mGluR-background in which specific mGluR subtypes can be made to express via intranuclear cDNA injection. Results Consistent with previous reports, CHPG strongly activated mGluR5b expressed in SCG neurons with an apparent EC50 around 60?μM. Surprisingly, CHPG also activated two mGluR1 splice variants with a similar potency as at mGluR5 when calcium current inhibition was used as an assay for receptor function. No effect of 1?mM CHPG was seen in cells expressing mGluR2 or mGluR4, suggesting that CHPG only activates group I mGluRs (mGluR1 and 5). CHPG was also able to induce modulation of M-type potassium current through mGluR1, but not as consistently as glutamate. Since this channel is modulated through a Gq-dependent pathway, these data indicate that CHPG may exhibit some biased agonist properties on mGluR1. Closer examination of the voltage-independent, Gq-mediated component of mGluR-induced calcium current modulation data confirmed that some biased agonism was evident, but the effect was weak and inconsistent. Conclusions These data contrast with the established literature which suggests that CHPG is a selective mGluR5 agonist. Instead, CHPG appears to act equally well as an agonist at mGluR1. While some weak biased agonism was observed with CHPG acting on mGluR1, but not mGluR5, favoring Gi/o signaling over Gq/11, this effect does not appear sufficient to fully explain the discrepancies in the literature.
机译:背景通过选择mGluR,通过检查其诱导天然蛋白调节的能力,研究了化合物2-Chloro-5-hydroxyphenylglycine(CHPG)(一种对代谢型谷氨酸受体5(mGluR5)的名义选择性激动剂)的功效,药效和选择性。大鼠上颈神经节(SCG)分离的交感神经元中的电压依赖性离子通道。 SCG神经元提供了无效的mGluR背景,其中可以通过核内cDNA注射使特定的mGluR亚型表达。结果与以前的报道一致,CHPG强烈激活了SCG神经元中表达的mGluR5b,其EC 50 约为60?μM。出乎意料的是,当使用钙电流抑制作为受体功能测定法时,CHPG还以与mGluR5相似的效力激活了两个mGluR1剪接变体。在表达mGluR2或mGluR4的细胞中未观察到1?mM CHPG的作用,这表明CHPG仅激活I组mGluRs(mGluR1和5)。 CHPG还能够通过mGluR1诱导M型钾电流的调节,但不像谷氨酸一样持久。由于此通道是通过G q 依赖性途径调节的,因此这些数据表明CHPG可能在mGluR1上表现出一些偏向激动剂的特性。仔细检查mGluR诱导的钙电流调制数据的电压无关的,Gq介导的成分,证实了一些明显的激动作用,但作用微弱且不一致。结论这些数据与现有文献相反,该文献表明CHPG是一种选择性的mGluR5激动剂。取而代之的是,CHPG在mGluR1上表现出与激动剂同样良好的作用。尽管CHPG作用于mGluR1而不是mGluR5时观察到了一些弱的偏向激动作用,但与G q / 11 相比,更倾向于G i / o 信号传导,但这种作用似乎不足以充分解释文献中的差异。

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