Schwenk Jochen, Zolles Gerd, Kandias Nikolaos G, Neubauer Isabel, Kalbacher Hubert, Covarrubias Manuel, Fakler Bernd, Bentrop Detlef
Institute of Physiology II, University of Freiburg, D-79104 Freiburg, Germany.
J Biol Chem. 2008 Jul 4;283(27):18937-46. doi: 10.1074/jbc.M800976200. Epub 2008 May 5.
Potassium channel-interacting proteins (KChIPs) are EF-hand calcium-binding proteins of the recoverin/neuronal calcium sensor 1 family that co-assemble with the pore-forming Kv4 alpha-subunits and thus control surface trafficking of the voltage-gated potassium channels mediating the neuronal I(A) and cardiac I(to) currents. Different from the other KChIPs, KChIP4a largely reduces surface expression of the Kv4 channel complexes. Using solution NMR we show that the unique N terminus of KChIP4a forms a 6-turn alpha-helix that is connected to the highly conserved core of the KChIP protein via a solvent-exposed linker. As identified by chemical shift changes, N-terminal alpha-helix and core domain of KChIP4a interact with each other through the same hydrophobic surface pocket that is involved in intermolecular interaction between the N-terminal helix of Kv4alpha and KChIP in Kv4-KChIP complexes. Electrophysiological recordings and biochemical interaction assays of complexes formed by wild-type and mutant Kv4alpha and KChIP4a proteins suggest that competition of these two helical domains for the surface groove is responsible for the reduced trafficking of Kv4-KChIP4a complexes to the plasma membrane. Surface expression of Kv4 complexes may thus be controlled by an auto-inhibitory domain in the KChIP subunit.
钾通道相互作用蛋白(KChIPs)是恢复蛋白/神经元钙传感器1家族的EF手型钙结合蛋白,它们与形成孔道的Kv4α亚基共同组装,从而控制介导神经元I(A)电流和心脏I(to)电流的电压门控钾通道的表面转运。与其他KChIPs不同,KChIP4a在很大程度上降低了Kv4通道复合物的表面表达。利用溶液核磁共振技术,我们发现KChIP4a独特的N末端形成了一个6圈α螺旋,该螺旋通过一个暴露于溶剂的连接子与KChIP蛋白高度保守的核心相连。通过化学位移变化鉴定,KChIP4a的N末端α螺旋和核心结构域通过相同的疏水表面口袋相互作用,该口袋参与了Kv4-KChIP复合物中Kv4α的N末端螺旋与KChIP之间的分子间相互作用。野生型和突变型Kv4α与KChIP4a蛋白形成的复合物的电生理记录和生化相互作用分析表明,这两个螺旋结构域对表面凹槽的竞争导致了Kv4-KChIP4a复合物向质膜转运的减少。因此,Kv4复合物的表面表达可能受KChIP亚基中一个自抑制结构域的控制。