Peptide Biology Laboratories, The Salk Institute for Biological Studies, La Jolla, California, United States of America.
PLoS One. 2013;8(3):e59800. doi: 10.1371/journal.pone.0059800. Epub 2013 Mar 25.
G protein-gated inwardly rectifying potassium (GIRK) channels play an important role in regulating neuronal excitability. Sorting nexin 27b (SNX27b), which reduces surface expression of GIRK channels through a PDZ domain interaction, contains a putative Ras-association (RA) domain with unknown function. Deleting the RA domain in SNX27b (SNX27b-ΔRA) prevents the down-regulation of GIRK2c/GIRK3 channels. Similarly, a point mutation (K305A) in the RA domain disrupts regulation of GIRK2c/GIRK3 channels and reduces H-Ras binding in vitro. Finally, the dominant-negative H-Ras (S17N) occludes the SNX27b-dependent decrease in surface expression of GIRK2c/GIRK3 channels. Thus, the presence of a functional RA domain and the interaction with Ras-like G proteins comprise a novel mechanism for modulating SNX27b control of GIRK channel surface expression and cellular excitability.
G 蛋白门控内向整流钾 (GIRK) 通道在调节神经元兴奋性方面发挥着重要作用。通过 PDZ 结构域相互作用降低 GIRK 通道表面表达的分选连接蛋白 27b (SNX27b) 包含一个具有未知功能的假定 Ras 关联 (RA) 结构域。删除 SNX27b 中的 RA 结构域 (SNX27b-ΔRA) 可防止 GIRK2c/GIRK3 通道下调。类似地,RA 结构域中的点突变 (K305A) 破坏了对 GIRK2c/GIRK3 通道的调节,并减少了体外的 H-Ras 结合。最后,显性负性 H-Ras (S17N) 阻断了 SNX27b 依赖性的 GIRK2c/GIRK3 通道表面表达的减少。因此,功能性 RA 结构域的存在以及与 Ras 样 G 蛋白的相互作用构成了调节 SNX27b 控制 GIRK 通道表面表达和细胞兴奋性的新机制。