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鉴定 VAPA 和 VAPB 为 Kv2 通道相互作用蛋白,定义哺乳动物脑神经元中的内质网-质膜连接点。

Identification of VAPA and VAPB as Kv2 Channel-Interacting Proteins Defining Endoplasmic Reticulum-Plasma Membrane Junctions in Mammalian Brain Neurons.

机构信息

Department of Neurobiology, Physiology and Behavior, and.

Department of Neurobiology, Physiology and Behavior, and

出版信息

J Neurosci. 2018 Aug 29;38(35):7562-7584. doi: 10.1523/JNEUROSCI.0893-18.2018. Epub 2018 Jul 16.

Abstract

Membrane contacts between endoplasmic reticulum (ER) and plasma membrane (PM), or ER-PM junctions, are ubiquitous in eukaryotic cells and are platforms for lipid and calcium signaling and homeostasis. Recent studies have revealed proteins crucial to the formation and function of ER-PM junctions in non-neuronal cells, but little is known of the ER-PM junctions prominent in aspiny regions of mammalian brain neurons. The Kv2.1 voltage-gated potassium channel is abundantly clustered at ER-PM junctions in brain neurons and is the first PM protein that functions to organize ER-PM junctions. However, the molecular mechanism whereby Kv2.1 localizes to and remodels these junctions is unknown. We used affinity immunopurification and mass spectrometry-based proteomics on brain samples from male and female WT and Kv2.1 KO mice and identified the resident ER vesicle-associated membrane protein-associated proteins isoforms A and B (VAPA and VAPB) as prominent Kv2.1-associated proteins. Coexpression with Kv2.1 or its paralog Kv2.2 was sufficient to recruit VAPs to ER-PM junctions. Multiplex immunolabeling revealed colocalization of Kv2.1 and Kv2.2 with endogenous VAPs at ER-PM junctions in brain neurons from male and female mice and in cultured rat hippocampal neurons, and KO of VAPA in mammalian cells reduces Kv2.1 clustering. The association of VAPA with Kv2.1 relies on a "two phenylalanines in an acidic tract" (FFAT) binding domain on VAPA and a noncanonical phosphorylation-dependent FFAT motif comprising the Kv2-specific clustering or PRC motif. These results suggest that Kv2.1 localizes to and organizes neuronal ER-PM junctions through an interaction with VAPs. Our study identified the endoplasmic reticulum (ER) proteins vesicle-associated membrane protein-associated proteins isoforms A and B (VAPA and VAPB) as proteins copurifying with the plasma membrane (PM) Kv2.1 ion channel. We found that expression of Kv2.1 recruits VAPs to ER-PM junctions, specialized membrane contact sites crucial to distinct aspects of cell function. We found endogenous VAPs at Kv2.1-mediated ER-PM junctions in brain neurons and other mammalian cells and that knocking out VAPA expression disrupts Kv2.1 clustering. We identified domains of VAPs and Kv2.1 necessary and sufficient for their association at ER-PM junctions. Our study suggests that Kv2.1 expression in the PM can affect ER-PM junctions via its phosphorylation-dependent association to ER-localized VAPA and VAPB.

摘要

内质网 (ER) 和质膜 (PM) 之间的膜接触,或 ER-PM 连接,在真核细胞中无处不在,是脂质和钙信号转导及平衡的平台。最近的研究揭示了在非神经元细胞中形成和发挥功能的 ER-PM 连接所必需的蛋白质,但在哺乳动物大脑神经元无棘突区域中突出的 ER-PM 连接知之甚少。Kv2.1 电压门控钾通道在大脑神经元的 ER-PM 连接中大量聚集,是第一个具有组织 ER-PM 连接功能的质膜蛋白。然而,Kv2.1 定位到这些连接并重塑这些连接的分子机制尚不清楚。我们使用雄性和雌性 WT 和 Kv2.1 KO 小鼠的脑样本进行亲和免疫沉淀和基于质谱的蛋白质组学分析,鉴定出驻留的内质网囊泡相关膜蛋白相关蛋白亚型 A 和 B (VAPA 和 VAPB) 是突出的 Kv2.1 相关蛋白。与 Kv2.1 或其同源物 Kv2.2 的共表达足以将 VAPs 募集到 ER-PM 连接。多重免疫标记显示,Kv2.1 和 Kv2.2 与内源性 VAPs 在雄性和雌性小鼠的脑神经元和培养的大鼠海马神经元中的 ER-PM 连接中共定位,并且哺乳动物细胞中 VAPA 的 KO 减少了 Kv2.1 的聚集。VAPA 与 Kv2.1 的关联依赖于 VAPA 上的“酸性片段中的两个苯丙氨酸”(FFAT) 结合域和包含 Kv2 特异性聚集或 PRC 基序的非典型磷酸化依赖性 FFAT 基序。这些结果表明,Kv2.1 通过与 VAPs 的相互作用定位到并组织神经元 ER-PM 连接。我们的研究鉴定出内质网 (ER) 蛋白囊泡相关膜蛋白相关蛋白亚型 A 和 B (VAPA 和 VAPB) 是与质膜 (PM) Kv2.1 离子通道共纯化的蛋白质。我们发现 Kv2.1 的表达将 VAPs 募集到 ER-PM 连接,这些特殊的膜接触位点对细胞功能的不同方面至关重要。我们在脑神经元和其他哺乳动物细胞中的 Kv2.1 介导的 ER-PM 连接中发现了内源性 VAPs,并且敲除 VAPA 表达会破坏 Kv2.1 的聚集。我们确定了 VAPs 和 Kv2.1 的必需和充分的结构域,用于它们在 ER-PM 连接处的关联。我们的研究表明,PM 中的 Kv2.1 表达可以通过其磷酸化依赖性与 ER 定位的 VAPA 和 VAPB 的关联来影响 ER-PM 连接。

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