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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >All for One But Not One for All: Excitatory Synaptic Scaling and Intrinsic Excitability Are Coregulated by CaMKIV, Whereas Inhibitory Synaptic Scaling Is Under Independent Control
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All for One But Not One for All: Excitatory Synaptic Scaling and Intrinsic Excitability Are Coregulated by CaMKIV, Whereas Inhibitory Synaptic Scaling Is Under Independent Control

机译:全部除了一个但不是一个:兴奋性突触缩放和内在兴奋是通过Camkiv进行内核的,而抑制突触缩放是独立的控制

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摘要

Neocortical circuits use a family of homeostatic plasticity mechanisms to stabilize firing, including excitatory and inhibitory synaptic scaling and homeostatic intrinsic plasticity (Turrigiano and Nelson, 2004). All three mechanisms can be induced in tandem in cultured rat neocortical pyramidal neurons by chronic manipulations of firing, but it is unknown whether they are coinduced by the same activitysensors and signaling pathways, or whether they are under independent control. Calcium/ calmodulin-dependent protein kinase type IV (CaMKIV) is a key sensory/effector in excitatory synaptic scaling that senses perturbations in firing through changes in calcium influx, and translates this into compensatory changes in excitatory quantal amplitude (Ibata et al., 2008; Goold and Nicoll, 2010). Whether CaMKIValso controls inhibitory synaptic scaling and intrinsic homeostatic plasticity was unknown. To test thiswemanipulatedCaMKIV signaling in individual neurons using dominant-negative (dn) or constitutively-active (ca) forms of nuclear-localized CaMKIV and measured the induction of all three forms of homeostatic plasticity. Wefound that excitatory synaptic scaling and intrinsic plasticity were bidirectionally coinduced by these manipulations. In contrast, these cell-autonomous manipulations had no impact on inhibitory quantal amplitude. Finally, we found that spontaneous firing rates were shifted up or down by dnCaMKIV or caCaMKIV, respectively, suggesting that uncoupling CaMKIV activation from activity generates an error signal in the negative feedback mechanism that controls firing rates. Together, our data show that excitatory synaptic scaling and intrinsic excitability are tightly coordinated through bidirectional changes in the same signaling pathway, whereas inhibitory synaptic scaling is sensed and regulated through an independent control mechanism.
机译:Neocortical电路使用一个稳重塑性机制的家族稳定烧制,包括兴奋性和抑制突触缩放和稳态内在塑性(Turrigiano和Nelson,2004)。所有三种机制都可以在培养的大鼠Neocortical金字塔神经元串联诱导次次烧制,但是尚不清楚它们是否被相同的活性筛和信号通路突出,或者它们是否在独立控制下。钙/钙调蛋白依赖性蛋白激酶型IV(CAMKIV)是兴奋性突触缩放中的关键感觉/效应器,可通过钙流入的变化感测射击的扰动,并将其转化为兴奋性量子幅度的补偿变化(Ibata等,2008 ; Goold和Nicoll,2010)。 Camkivalso是否控制抑制性突触缩放和内在稳态塑性未知。使用核局部化CAMKIV的主体阴性(DN)或组成型露珠的组成型凸起的单个神经元中的特征在单独的神经元中进行测试,并测量所有三种形式的稳态可塑性的诱导。我们通过这些操作双向突出兴奋性突触缩放和内在可塑性。相比之下,这些细胞自主操纵对抑制量幅度没有影响。最后,我们发现,DNCamkiv或Cacamkiv分别向上或向下移动自发点火率,表明从活动的解耦Camkiv激活在控制射击速率的负反馈机制中产生误差信号。我们的数据表明,通过相同信号通路中的双向变化紧密地协调兴奋性突触缩放和内在兴奋性,而抑制突触缩放通过独立的控制机制来感测和调节。

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