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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Blockade of ethanol-induced potentiation of glycine receptors by a peptide that interferes with Gbetagamma binding.
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Blockade of ethanol-induced potentiation of glycine receptors by a peptide that interferes with Gbetagamma binding.

机译:干扰Gbetagamma结合的肽阻止乙醇诱导的甘氨酸受体增强。

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摘要

The large intracellular loop (IL) of the glycine receptor (GlyR) interacts with various signaling proteins and plays a fundamental role in trafficking and regulation of several receptor properties, including a direct interaction with Gbetagamma. In the present study, we found that mutation of basic residues in the N-terminal region of the IL reduced the binding of Gbetagamma to 21 +/- 10% of control. Two basic residues in the C-terminal region, on the other hand, contributed to a smaller extent to Gbetagamma binding. Using docking analysis, we found that both basic regions of the IL bind in nearby regions to the Gbetagamma dimer, within an area of high density of amino acids having an electronegative character. Thereafter, we generated a 17-amino acid peptide with the N-terminal sequence of the wild-type IL (RQH) that was able to inhibit the in vitro binding of Gbetagamma to GlyRs to 57 +/- 5% of control in glutathione S-transferase pull-down assays using purified proteins. More interestingly, when the peptide was intracellularly applied to human embryonic kidney 293 cells, it inhibited the Gbetagamma-mediated modulations of G protein-coupled inwardly rectifying potassium channel by baclofen (24 +/- 14% of control) and attenuated the GlyR potentiation by ethanol (51 +/- 10% versus 10 +/- 3%).
机译:甘氨酸受体(GlyR)的大细胞内环(IL)与各种信号蛋白相互作用,并且在运输和调节几种受体特性(包括与Gbetagamma的直接相互作用)中起基本作用。在本研究中,我们发现IL N端区域碱性残基的突变使Gbetagamma的结合降低至对照的21 +/- 10%。另一方面,C-末端区域中的两个碱性残基在较小程度上促进了Gbetagamma的结合。使用对接分析,我们发现IL的两个基本区域在附近区域中与具有电负性特征的高密度氨基酸区域内的Gbetagamma二聚体结合。此后,我们生成了具有野生型IL(RQH)N端序列的17个氨基酸的肽,该肽能够抑制Gbetagamma与GlyRs的体外结合,达到谷胱甘肽S对照的57 +/- 5%。使用纯化的蛋白质的β-转移酶下拉测定法。更有趣的是,当该肽在细胞内应用于人类胚胎肾293细胞时,它会抑制巴氯芬对Gbetagamma介导的G蛋白偶联的内向整流钾通道的调节(占对照组的24 +/- 14%),并通过乙醇(51 +/- 10%对10 +/- 3%)。

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