Laufer Jörg, Boehmer Christoph, Jeyaraj Sankarganesh, Knuwer Martin, Klaus Fabian, Lindner Ricco, Palmada Monica, Lang Florian
Department of Physiology I, University of Tubingen, Germany.
Cell Physiol Biochem. 2009;23(1-3):25-36. doi: 10.1159/000204077. Epub 2009 Feb 18.
Kv1.5 belongs to the family of voltage-gated potassium (Kv) channels and contains a N- and a C-terminal PDZ-binding motif that might be recognized by PDZ domains on the scaffold proteins NHERF1 and NHERF2. Expression studies in Xenopus oocytes demonstrated that NHERF1 and NHERF2 activate Kv1.5, an effect requiring the C-terminal PDZ-binding motif on Kv1.5. NHERF2 enhances Kv1.5 activity and cell surface expression as determined by electrophysiology and immunoassays. NHERF2 elevates Kv1.5 abundance at the plasma membrane by decreasing channel internalization as proven by Brefeldin A experiments. Kv1.5 is stimulated by the serum and glucocorticoid inducible kinase SGK1, a kinase known to interact with the second PDZ domain of NHERF2. This study aims to identify if SGK1 and NHERF2 synergize to increase Kv1.5 currents. Expression of NHERF2 potentiated SGK1-mediated Kv1.5 activation, which was significantly attenuated by deletion of the second PDZ domain in NHERF2. Specificity of observed effects was verified by evaluating the influence of NHERFs on Kv1.3, a known SGK1 target that contains an internal PDZ binding motif. In summary, our results suggest that NHERFs might participate in the regulation of electrical excitability in part by controlling Kv1.5 surface abundance and by clustering signal transduction molecules to the channel.
Kv1.5属于电压门控钾(Kv)通道家族,包含一个N端和一个C端PDZ结合基序,可能被支架蛋白NHERF1和NHERF2上的PDZ结构域识别。在非洲爪蟾卵母细胞中的表达研究表明,NHERF1和NHERF2可激活Kv1.5,这种效应需要Kv1.5上的C端PDZ结合基序。通过电生理学和免疫测定确定,NHERF2可增强Kv1.5活性和细胞表面表达。布雷菲德菌素A实验证明,NHERF2通过减少通道内化来提高质膜上Kv1.5的丰度。Kv1.5受血清和糖皮质激素诱导激酶SGK1刺激,SGK1是一种已知与NHERF2的第二个PDZ结构域相互作用的激酶。本研究旨在确定SGK1和NHERF2是否协同作用以增加Kv1.5电流。NHERF2的表达增强了SGK1介导的Kv1.5激活,而NHERF2中第二个PDZ结构域的缺失则显著减弱了这种激活。通过评估NHERF对Kv1.3的影响,验证了观察到的效应的特异性,Kv1.3是一个已知的SGK1靶点,含有一个内部PDZ结合基序。总之,我们的结果表明,NHERF可能部分通过控制Kv1.5的表面丰度以及将信号转导分子聚集到通道上来参与电兴奋性的调节。