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From the CoverPNAS Plus: Kv2 potassium channels form endoplasmic reticulum/plasma membrane junctions via interaction with VAPA and VAPB

机译:来自CoverPNAS Plus:Kv2钾离子通道通过与VAPA和VAPB相互作用形成内质网/质膜连接

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摘要

Kv2.1 exhibits two distinct forms of localization patterns on the neuronal plasma membrane: One population is freely diffusive and regulates electrical activity via voltage-dependent K+ conductance while a second one localizes to micrometer-sized clusters that contain densely packed, but nonconducting, channels. We have previously established that these clusters represent endoplasmic reticulum/plasma membrane (ER/PM) junctions that function as membrane trafficking hubs and that Kv2.1 plays a structural role in forming these membrane contact sites in both primary neuronal cultures and transfected HEK cells. Clustering and the formation of ER/PM contacts are regulated by phosphorylation within the channel C terminus, offering cells fast, dynamic control over the physical relationship between the cortical ER and PM. The present study addresses the mechanisms by which Kv2.1 and the related Kv2.2 channel interact with the ER membrane. Using proximity-based biotinylation techniques in transfected HEK cells we identified ER VAMP-associated proteins (VAPs) as potential Kv2.1 interactors. Confirmation that Kv2.1 and -2.2 bind VAPA and VAPB employed colocalization/redistribution, siRNA knockdown, and Förster resonance energy transfer (FRET)-based assays. CD4 chimeras containing sequence from the Kv2.1 C terminus were used to identify a noncanonical VAP-binding motif. VAPs were first identified as proteins required for neurotransmitter release in Aplysia and are now known to be abundant scaffolding proteins involved in membrane contact site formation throughout the ER. The VAP interactome includes AKAPs, kinases, membrane trafficking machinery, and proteins regulating nonvesicular lipid transport from the ER to the PM. Therefore, the Kv2-induced VAP concentration at ER/PM contact sites is predicted to have wide-ranging effects on neuronal cell biology.
机译:Kv2.1在神经元质膜上表现出两种不同形式的定位模式:一个群体自由扩散,并通过电压依赖性K + 电导调节电活动,而第二个群体定位于微米大小的簇,包含密集但不导电的通道。我们先前已经确定,这些簇代表内质网/质膜(ER / PM)交界处,其充当膜运输枢纽,并且Kv2.1在初级神经元培养物和转染的HEK细胞中形成这些膜接触位点时发挥结构性作用。 ER / PM触点的聚集和形成受通道C末端内的磷酸化作用的调节,从而使细胞能够快速动态地控制皮质ER和PM之间的物理关系。本研究解决了Kv2.1和相关Kv2.2通道与ER膜相互作用的机制。在转染的HEK细胞中使用基于接近度的生物素化技术,我们鉴定了ER VAMP相关蛋白(VAP)作为潜在的Kv2.1相互作用物。 Kv2.1和-2.2结合VAPA和VAPB的确证采用了共定位/重分布,siRNA敲低和基于Förster共振能量转移(FRET)的检测方法。包含来自Kv2.1 C末端的序列的CD4嵌合体用于鉴定非典型的VAP结合基序。 VAPs首先被确定为海藻中神经递质释放所需的蛋白,现在已知是在整个ER中参与膜接触位点形成的丰富支架蛋白。 VAP相互作用基因组包括AKAP,激酶,膜运输机制和调节从ER到PM的非囊状脂质转运的蛋白质。因此,预测ER / PM接触部位Kv2诱导的VAP浓度对神经元细胞生物学有广泛影响。

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