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NMR Analyses of the Gβγ Binding and Conformational Rearrangements of the Cytoplasmic Pore of G Protein-activated Inwardly Rectifying Potassium Channel 1 (GIRK1)*

机译:核磁共振分析G蛋白活化的内向整流钾通道1(GIRK1)的Gβγ结合和胞质孔的构象重排*

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摘要

G protein-activated inwardly rectifying potassium channel (GIRK) plays crucial roles in regulating heart rate and neuronal excitability in eukaryotic cells. GIRK is activated by the direct binding of heterotrimeric G protein βγ subunits (Gβγ) upon stimulation of G protein-coupled receptors, such as M2 acetylcholine receptor. The binding of Gβγ to the cytoplasmic pore (CP) region of GIRK causes structural rearrangements, which are assumed to open the transmembrane ion gate. However, the crucial residues involved in the Gβγ binding and the structural mechanism of GIRK gating have not been fully elucidated. Here, we have characterized the interaction between the CP region of GIRK and Gβγ, by ITC and NMR. The ITC analyses indicated that four Gβγ molecules bind to a tetramer of the CP region of GIRK with a dissociation constant of 250 μm. The NMR analyses revealed that the Gβγ binding site spans two neighboring subunits of the GIRK tetramer, which causes conformational rearrangements between subunits. A possible binding mode and mechanism of GIRK gating are proposed.
机译:G蛋白激活的内向整流钾通道(GIRK)在调节真核细胞的心率和神经元兴奋性中起关键作用。刺激G蛋白偶联受体(例如M2乙酰胆碱受体)后,异源三聚G蛋白βγ亚基(Gβγ)的直接结合可激活GIRK。 Gβγ与GIRK的细胞质孔(CP)区域的结合会引起结构重排,假定该重排打开了跨膜离子门。然而,尚未完全阐明与Gβγ结合有关的关键残基和GIRK门控的结构机理。在这里,我们通过ITC和NMR表征了GIRK的CP区和Gβγ之间的相互作用。 ITC分析表明,四个Gβγ分子以250μm的解离常数与GIRK CP区的四聚体结合。 NMR分析表明,Gβγ结合位点跨越了GIRK四聚体的两个相邻的亚基,这引起了亚基之间的构象重排。提出了可能的GIRK门控绑定模式和机制。

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