Department of Neurobiology, Physiology, and Behavior, University of California, Davis, Davis, CA 95616.
Department of Physiology and Membrane Biology, University of California, Davis, Davis, CA 95616.
Mol Biol Cell. 2018 Oct 1;29(20):2410-2432. doi: 10.1091/mbc.E18-05-0337. Epub 2018 Aug 9.
The endoplasmic reticulum (ER) and plasma membrane (PM) form junctions crucial to ion and lipid signaling and homeostasis. The Kv2.1 ion channel is localized at ER-PM junctions in brain neurons and is unique among PM proteins in its ability to remodel these specialized membrane contact sites. Here, we show that this function is conserved between Kv2.1 and Kv2.2, which differ in their biophysical properties, modulation, and cellular expression. Kv2.2 ER-PM junctions are present at sites deficient in the actin cytoskeleton, and disruption of the actin cytoskeleton affects their spatial organization. Kv2.2-containing ER-PM junctions overlap with those formed by canonical ER-PM tethers. The ability of Kv2 channels to remodel ER-PM junctions is unchanged by point mutations that eliminate their ion conduction but eliminated by point mutations within the Kv2-specific proximal restriction and clustering (PRC) domain that do not impact their ion channel function. The highly conserved PRC domain is sufficient to transfer the ER-PM junction-remodeling function to another PM protein. Last, brain neurons in Kv2 double-knockout mice have altered ER-PM junctions. Together, these findings demonstrate a conserved in vivo function for Kv2 family members in remodeling neuronal ER-PM junctions that is distinct from their canonical role as ion-conducting channels shaping neuronal excitability.
内质网 (ER) 和质膜 (PM) 形成的连接对于离子和脂质信号转导以及体内平衡至关重要。Kv2.1 离子通道位于脑神经元的 ER-PM 连接点,是 PM 蛋白中独一无二的,因为它能够重塑这些特化的膜接触位点。在这里,我们表明这种功能在 Kv2.1 和 Kv2.2 之间是保守的,它们在生物物理特性、调节和细胞表达上存在差异。Kv2.2 的 ER-PM 连接点存在于肌动蛋白细胞骨架缺失的部位,而肌动蛋白细胞骨架的破坏会影响它们的空间组织。含有 Kv2 通道的 ER-PM 连接点与由规范的 ER-PM 系绳形成的连接点重叠。尽管点突变消除了 Kv2 通道的离子传导能力,但不会影响其离子通道功能的 Kv2 特异性近端限制和聚集 (PRC) 结构域内的点突变消除了它们重塑 ER-PM 连接点的能力。高度保守的 PRC 结构域足以将 ER-PM 连接点重塑功能转移到另一个 PM 蛋白上。最后,Kv2 双敲除小鼠的脑神经元具有改变的 ER-PM 连接点。总之,这些发现表明 Kv2 家族成员在重塑神经元 ER-PM 连接点方面具有保守的体内功能,这与它们作为调节神经元兴奋性的离子通道的规范作用不同。