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Weighing the evidence for a ternary protein complex mediating A-type K+ currents in neurons.

机译:权衡三元蛋白质复合物介导神经元中的A型K +电流的证据。

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The subthreshold-operating A-type K(+) current in neurons (I(SA)) has important roles in the regulation of neuronal excitability, the timing of action potential firing and synaptic integration and plasticity. The channels mediating this current (Kv4 channels) have been implicated in epilepsy, the control of dopamine release, and the regulation of pain plasticity. It has been proposed that Kv4 channels in neurons are ternary complexes of three types of protein: pore forming subunits of the Kv4 subfamily and two types of auxiliary subunits, the Ca(2+) binding proteins KChIPs and the dipeptidyl peptidase-like proteins (DPPLs) DPP6 (also known as DPPX) and DPP10 (4 molecules of each per channel for a total of 12 proteins in the complex). Here we consider the evidence supporting this hypothesis. Kv4 channels in many neurons are likely to be ternary complexes of these three types of protein. KChIPs and DPPLs are required to efficiently traffic Kv4 channels to the plasma membrane and regulate the functional properties of the channels. These proteins may also be important in determining the localization of the channels to specific neuronal compartments, their dynamics, and their response to neuromodulators. A surprisingly large number of additional proteins have been shown to modify Kv4 channels in heterologous expression systems, but their association with native Kv4 channels in neurons has not been properly validated. A critical consideration of the evidence suggests that it is unlikely that association of Kv4 channels with these additional proteins is widespread in the CNS. However, we cannot exclude that some of these proteins may associate with the channels transiently or in specific neurons or neuronal compartments, or that they may associate with the channels in other tissues.
机译:神经元(I(SA))中的亚阈值操作A型K(+)电流在调节神经元兴奋性,动作电位激发和突触整合的时间以及可塑性方面具有重要作用。介导此电流的通道(Kv4通道)与癫痫,多巴胺释放的控制和疼痛可塑性的调节有关。有人提出,神经元中的Kv4通道是三种蛋白质的三元复合物:Kv4亚家族的孔形成亚基和两种辅助亚基,即Ca(2+)结合蛋白KChIPs和二肽基肽酶样蛋白(DPPLs) )DPP6(也称为DPPX)和DPP10(每个通道4个分子,复合物中共有12种蛋白质)。在这里,我们考虑支持该假设的证据。许多神经元中的Kv4通道可能是这三种蛋白质的三元复合物。需要KChIP和DPPL才能有效地将Kv4通道运输到质膜并调节通道的功能特性。这些蛋白质在确定通道到特定神经元区室的定位,它们的动力学及其对神经调节剂的反应中也可能很重要。已显示出令人惊讶的是,大量其他蛋白质可修饰异源表达系统中的Kv4通道,但尚未与它们在神经元中的天然Kv4通道相关联。对证据的严格考虑表明,Kv4通道与这些其他蛋白质的结合不太可能在CNS中广泛传播。但是,我们不能排除这些蛋白质中的某些可能与瞬时通道或特定神经元或神经元区室相关联,或者它们可能与其他组织中的通道相关联。

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