Laboratory of Molecular Neurobiology and Biophysics, Howard Hughes Medical Institute, Rockefeller University, New York, United States.
Elife. 2016 Apr 13;5:e15750. doi: 10.7554/eLife.15750.
G protein gated inward rectifier potassium (GIRK) channels are gated by direct binding of G protein beta-gamma subunits (Gβγ), signaling lipids, and intracellular Na(+). In cardiac pacemaker cells, hetero-tetramer GIRK1/4 channels and homo-tetramer GIRK4 channels play a central role in parasympathetic slowing of heart rate. It is known that the Na(+) binding site of the GIRK1 subunit is defective, but the functional difference between GIRK1/4 hetero-tetramers and GIRK4 homo-tetramers remains unclear. Here, using purified proteins and the lipid bilayer system, we characterize Gβγ and Na(+) regulation of GIRK1/4 hetero-tetramers and GIRK4 homo-tetramers. We find in GIRK4 homo-tetramers that Na(+) binding increases Gβγ affinity and thereby increases the GIRK4 responsiveness to G protein stimulation. GIRK1/4 hetero-tetramers are not activated by Na(+), but rather are in a permanent state of high responsiveness to Gβγ, suggesting that the GIRK1 subunit functions like a GIRK4 subunit with Na(+) permanently bound.
G 蛋白门控内向整流钾 (GIRK) 通道通过 G 蛋白β-γ亚基 (Gβγ)、信号脂质和细胞内 Na(+)的直接结合而被门控。在心脏起搏细胞中,异四聚体 GIRK1/4 通道和同四聚体 GIRK4 通道在副交感神经减慢心率中起核心作用。已知 GIRK1 亚基的 Na(+)结合位点有缺陷,但 GIRK1/4 异四聚体和 GIRK4 同四聚体之间的功能差异尚不清楚。在这里,我们使用纯化蛋白和脂质双层系统,表征了 Gβγ 和 Na(+)对 GIRK1/4 异四聚体和 GIRK4 同四聚体的调节作用。我们在 GIRK4 同四聚体中发现,Na(+)结合增加了 Gβγ 的亲和力,从而增加了 GIRK4 对 G 蛋白刺激的反应性。Na(+)不能激活 GIRK1/4 异四聚体,而是处于对 Gβγ 高反应性的永久状态,这表明 GIRK1 亚基的功能类似于 Na(+)永久结合的 GIRK4 亚基。