首页> 外文期刊>The Journal of Physiology >Evidence for association of GABA(B) receptors with Kir3 channels and regulators of G protein signalling (RGS4) proteins.
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Evidence for association of GABA(B) receptors with Kir3 channels and regulators of G protein signalling (RGS4) proteins.

机译:GABA(B)受体与Kir3通道和G蛋白信号传导(RGS4)调节剂缔合的证据。

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Many neurotransmitters and hormones signal by stimulating G protein-coupled neurotransmitter receptors (GPCRs), which activate G proteins and their downstream effectors. Whether these signalling proteins diffuse freely within the plasma membrane is not well understood. Recent studies have suggested that direct protein-protein interactions exist between GPCRs, G proteins and G protein-gated inwardly rectifying potassium (GIRK or Kir3) channels. Here, we used fluorescence resonance energy transfer (FRET) combined with total internal reflection fluorescence microscopy to investigate whether proteins within this signalling pathway move within 100 A of each other in the plasma membrane of living cells. GABA(B) R1 and R2 receptors, Kir3 channels, Galphao subunits and regulators of G protein signalling (RGS4) proteins were each fused to cyan fluorescent protein (CFP) or yellow fluorescent protein (YFP) and first assessed for functional expression in HEK293 cells. The presence of the fluorophore did not significantly alter the signalling properties of these proteins. Possible FRET was then investigated for different protein pair combinations. As a positive control, FRET was measured between tagged GABA(B) R1 and R2 subunits ( approximately 12% FRET), which are known to form heterodimers. We measured significant FRET between tagged RGS4 and GABA(B) R1 or R2 subunits ( approximately 13% FRET), and between Galphao and GABA(B) R1 or R2 subunits ( approximately 10% FRET). Surprisingly, FRET also occurred between tagged Kir3.2a/Kir3.4 channels and GABA(B) R1 or R2 subunits ( approximately 10% FRET). FRET was not detected between Kir3.2a and RGS4 nor between Kir3.2a and Galphao. These data are discussed in terms of a model in which GABA(B) receptors, G proteins, RGS4 proteins and Kir3 channels are closely associated in a signalling complex.
机译:许多神经递质和激素通过刺激G蛋白偶联的神经递质受体(GPCR)发出信号,从而激活G蛋白及其下游效应物。这些信号蛋白是否在质膜内自由扩散尚不清楚。最近的研究表明,GPCR,G蛋白和G蛋白门控的内向整流钾离子通道(GIRK或Kir3)之间存在直接的蛋白-蛋白相互作用。在这里,我们使用了荧光共振能量转移(FRET)结合全内反射荧光显微镜技术来研究此信号通路内的蛋白质在活细胞的质膜中是否相互之间移动100A。将GABA(B)R1和R2受体,Kir3通道,Galphao亚基和G蛋白信号传导蛋白(RGS4)的调节剂分别与青色荧光蛋白(CFP)或黄色荧光蛋白(YFP)融合,然后首先评估其在HEK293细胞中的功能性表达。荧光团的存在并未显着改变这些蛋白质的信号传导特性。然后针对不同的蛋白质对组合研究了可能的FRET。作为阳性对照,在已知形成异二聚体的标记GABA(B)R1和R2亚基(约12%FRET)之间测量FRET。我们测量了标记的RGS4和GABA(B)R1或R2亚基之间的显着FRET(约13%FRET),以及Galphao和GABA(B)R1或R2亚基(约10%FRET)之间的显着FRET。出人意料的是,FRET也发生在标记的Kir3.2a / Kir3.4通道与GABA(B)R1或R2亚基之间(约10%FRET)。在Kir3.2a和RGS4之间或Kir3.2a和Galphao之间未检测到FRET。这些数据是根据其中GABA(B)受体,G蛋白,RGS4蛋白和Kir3通道在信号传导复合物中紧密相关的模型进行讨论的。

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