Ferns Michael, van der List Deborah, Vierra Nicholas C, Lacey Taylor, Murray Karl, Kirmiz Michael, Stewart Robert G, Sack Jon T, Trimmer James S
Dept. of Anesthesiology and Pain Medicine, University of California Davis, One Shields Ave, Davis, CA 95616, USA.
Dept. of Physiology and Membrane Biology, University of California Davis, One Shields Ave, Davis, CA 95616, USA.
bioRxiv. 2024 Jan 25:2024.01.25.577135. doi: 10.1101/2024.01.25.577135.
Voltage-gated K channels of the Kv2 family are highly expressed in brain and play dual roles in regulating neuronal excitability and in organizing endoplasmic reticulum - plasma membrane (ER-PM) junctions. Studies in heterologous cells suggest that the two pore-forming alpha subunits Kv2.1 and Kv2.2 assemble with "electrically silent" KvS subunits to form heterotetrameric channels with distinct biophysical properties. Here, using mass spectrometry-based proteomics, we identified five KvS subunits as components of native Kv2.1 channels immunopurified from mouse brain, the most abundant being Kv5.1. We found that Kv5.1 co-immunoprecipitates with Kv2.1 and to a lesser extent with Kv2.2 from brain lysates, and that Kv5.1 protein levels are decreased by 70% in Kv2.1 knockout mice and 95% in Kv2.1/2.2 double knockout mice. Multiplex immunofluorescent labelling of rodent brain sections revealed that in neocortex Kv5.1 immunolabeling is apparent in a large percentage of Kv2.1 and Kv2.2-positive layer 2/3 neurons, and in a smaller percentage of layer 5 and 6 neurons. At the subcellular level, Kv5.1 is co-clustered with Kv2.1 and Kv2.2 at ER-PM junctions in cortical neurons, although clustering of Kv5.1-containing channels is reduced relative to homomeric Kv2 channels. We also found that in heterologous cells coexpression with Kv5.1 reduces the clustering and alters the pharmacological properties of Kv2.1 channels. Together, these findings demonstrate that the Kv5.1 electrically silent subunit is a component of a substantial fraction of native brain Kv2 channels, and that its incorporation into heteromeric channels can impact diverse aspects of Kv2 channel function.
Kv2家族的电压门控钾通道在大脑中高度表达,在调节神经元兴奋性以及在内质网 - 质膜(ER-PM)连接的组织中发挥双重作用。在异源细胞中的研究表明,两个形成孔道的α亚基Kv2.1和Kv2.2与“电沉默”的KvS亚基组装形成具有独特生物物理特性的异源四聚体通道。在此,我们使用基于质谱的蛋白质组学方法,从免疫纯化自小鼠大脑的天然Kv2.1通道中鉴定出五个KvS亚基,其中最丰富的是Kv5.1。我们发现,Kv5.1与Kv2.1在脑裂解物中共同免疫沉淀,与Kv2.2的共同免疫沉淀程度较低,并且在Kv2.1基因敲除小鼠中Kv5.1蛋白水平降低70%,在Kv2.1/2.2双基因敲除小鼠中降低95%。对啮齿动物脑切片进行多重免疫荧光标记显示,在新皮层中,Kv5.1免疫标记在很大比例的Kv2.1和Kv2.2阳性的第2/3层神经元中明显,在第5层和第6层神经元中的比例较小。在亚细胞水平上,Kv5.1与Kv2.1和Kv2.2在皮质神经元的ER-PM连接处共聚集,尽管含Kv5.1通道的聚集相对于同型Kv2通道有所减少。我们还发现,在异源细胞中与Kv5.1共表达会减少Kv2.1通道的聚集并改变其药理学特性。总之,这些发现表明Kv5.1电沉默亚基是天然脑Kv2通道相当一部分的组成成分,并且其掺入异源通道会影响Kv2通道功能的多个方面。