Zolles Gerd, Wenzel Daniela, Bildl Wolfgang, Schulte Uwe, Hofmann Andreas, Müller Catrin S, Thumfart Jörg-Oliver, Vlachos Andreas, Deller Thomas, Pfeifer Alexander, Fleischmann Bernd K, Roeper Jochen, Fakler Bernd, Klöcker Nikolaj
Institute of Physiology, University of Freiburg, Engesserstrasse 4, 79108 Freiburg, Germany.
Neuron. 2009 Jun 25;62(6):814-25. doi: 10.1016/j.neuron.2009.05.008.
Hyperpolarization-activated cyclic nucleotide-gated (HCN) channels are key modulators of neuronal activity by providing the depolarizing cation current I(h) involved in rhythmogenesis, dendritic integration, and synaptic transmission. These tasks critically depend on the availability of HCN channels, which is dynamically regulated by intracellular cAMP; the range of this regulation, however, largely differs among neurons in the mammalian brain. Using affinity purification and high-resolution mass spectrometry, we identify the PEX5R/Trip8b protein as the beta subunit of HCN channels in the mammalian brain. Coassembly of PEX5R/Trip8b affects HCN channel gating in a subtype-dependent and mode-specific way: activation of HCN2 and HCN4 by cAMP is largely impaired, while gating by phosphoinositides and basal voltage-dependence remain unaffected. De novo expression of PEX5R/Trip8b in cardiomyocytes abolishes beta-adrenergic stimulation of HCN channels. These results demonstrate that PEX5R/Trip8b is an intrinsic auxiliary subunit of brain HCN channels and establish HCN-PEX5R/Trip8b coassembly as a mechanism to control the channels' responsiveness to cyclic nucleotide signaling.
超极化激活的环核苷酸门控(HCN)通道是神经元活动的关键调节因子,通过提供参与节律生成、树突整合和突触传递的去极化阳离子电流I(h)来实现。这些功能严重依赖于HCN通道的可用性,而其可用性受细胞内cAMP动态调节;然而,这种调节的范围在哺乳动物大脑的神经元中差异很大。利用亲和纯化和高分辨率质谱,我们鉴定出PEX5R/Trip8b蛋白是哺乳动物大脑中HCN通道的β亚基。PEX5R/Trip8b的共组装以亚型依赖性和模式特异性方式影响HCN通道门控:cAMP对HCN2和HCN4的激活在很大程度上受损,而磷酸肌醇门控和基础电压依赖性不受影响。在心肌细胞中从头表达PEX5R/Trip8b可消除β-肾上腺素能对HCN通道的刺激。这些结果表明,PEX5R/Trip8b是脑HCN通道的固有辅助亚基,并确立了HCN-PEX5R/Trip8b共组装作为控制通道对环核苷酸信号反应性的一种机制。