首页> 美国卫生研究院文献>The Journal of Neuroscience >PMCA2 via PSD-95 Controls Calcium Signaling by α7-Containing Nicotinic Acetylcholine Receptors on Aspiny Interneurons
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PMCA2 via PSD-95 Controls Calcium Signaling by α7-Containing Nicotinic Acetylcholine Receptors on Aspiny Interneurons

机译:通过PSD-95的PMCA2通过尖刺中枢神经元上的含α7烟碱乙酰胆碱受体控制钙信号传导。

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摘要

Local control of calcium concentration within neurons is critical for signaling and regulation of synaptic communication in neural circuits. How local control can be achieved in the absence of physical compartmentalization is poorly understood. Challenging examples are provided by nicotinic acetylcholine receptors that contain α7 nicotinic receptor subunits (α7-nAChRs). These receptors are highly permeable to calcium and are concentrated on aspiny dendrites of interneurons, which lack obvious physical compartments for constraining calcium diffusion. Using functional proteomics on rat brain, we show that α7-nAChRs are associated with plasma membrane calcium-ATPase pump isoform 2 (PMCA2). Analysis of α7-nAChR function in hippocampal interneurons in culture shows that PMCA2 activity limits the duration of calcium elevations produced by the receptors. Unexpectedly, PMCA2 inhibition triggers rapid calcium-dependent loss of α7-nAChR clusters. This extreme regulatory response is mediated by CaMKII, involves proteasome activity, depends on the second intracellular loop of α7-nAChR subunits, and is specific in that it does not alter two other classes of calcium-permeable ionotropic receptors on the same neurons. A critical link is provided by the scaffold protein PSD-95 (postsynaptic density-95), which is associated with α7-nAChRs and constrains their mobility as revealed by single-particle tracking on neurons. The PSD-95 link is required for PMCA2-mediated removal of α7-nAChR clusters. This three-component combination of PMCA2, PSD-95, and α7-nAChR offers a novel mechanism for tight control of calcium dynamics in neurons.
机译:神经元内钙浓度的局部控制对于信号和神经回路中突触通讯的调节至关重要。在没有物理分隔的情况下如何实现本地控制的了解很少。具有挑战性的例子是含有α7烟碱受体亚基(α7-nAChRs)的烟碱乙酰胆碱受体。这些受体对钙具有很高的渗透性,并且集中在中间神经的棘突状树突上,而中间神经元缺乏明显的物理隔室来限制钙的扩散。使用大鼠脑上的功能蛋白质组学,我们显示,α7-nAChRs与质膜钙-ATP酶泵同工型2(PMCA2)相关。对培养的海马中间神经元中的α7-nAChR功能的分析表明,PMCA2活性限制了受体产生的钙升高的持续时间。出乎意料的是,PMCA2抑制会触发快速的钙依赖性α7-nAChR簇丢失。这种极端的调节反应是由CaMKII介导的,涉及蛋白酶体的活性,取决于α7-nAChR亚基的第二个细胞内环,其特异性在于它不会改变同一神经元上的其他两类钙渗透性离子受体。支架蛋白PSD-95(突触后密度-95)提供了关键的链接,该蛋白与α7-nAChRs相关联,并通过对神经元的单粒子跟踪揭示了它们的活动性。 PSD-95链接对于PMCA2介导的α7-nAChR簇的去除是必需的。 PMCA2,PSD-95和α7-nAChR的这种三组分组合提供了一种严密控制神经元钙动力学的新机制。

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