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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >A novel DPP6 isoform (DPP6-E) can account for differences between neuronal and reconstituted A-type K(+) channels.
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A novel DPP6 isoform (DPP6-E) can account for differences between neuronal and reconstituted A-type K(+) channels.

机译:新型DPP6同工型(DPP6-E)可以解释神经元和重构的A型K(+)通道之间的差异。

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摘要

The channels mediating most of the somatodendritic A-type K(+) current in neurons are thought to be ternary complexes of Kv4 pore-forming subunits and two types of auxiliary subunits, the K(+) channel interacting proteins (KChIPs) and dipeptidyl-peptidase-like (DPPL) proteins. The channels expressed in heterologous expression systems by mixtures of Kv4.2, KChIP1 and DPP6-S resemble in many properties the A-type current in hippocampal CA1 pyramidal neurons and cerebellar granule cells, neurons with prominent A-type K(+) currents. However, the native currents have faster kinetics. Moreover, the A-type currents in neurons in intermediary layers of the superior colliculus have even faster inactivating rates. We have characterized a new DPP6 spliced isoform, DPP6-E, that produces in heterologous cells ternary Kv4 channels with very fast kinetics. DPP6-E is selectively expressed in a few neuronal populations in brain including cerebellar granule neurons, hippocampal pyramidal cells and neurons in intermediary layers of the superior colliculus. The effects of DPP6-E explain past discrepancies between reconstituted and native Kv4 channels in some neurons, and contributes to the diversity of A-type K(+) currents in neurons.
机译:介导神经元中大多数体树突状A型K(+)电流的通道被认为是Kv4孔形成亚基和两种类型的辅助亚基的三元复合物,即K(+)通道相互作用蛋白(KChIPs)和二肽基-肽酶样(DPPL)蛋白。 Kv4.2,KChIP1和DPP6-S混合物在异源表达系统中表达的通道在许多特性上类似于海马CA1锥体神经元和小脑颗粒细胞中的A型电流,这些神经元具有明显的A型K(+)电流。但是,自然电流具有更快的动力学。此外,上丘中间层神经元中的A型电流的失活速度甚至更快。我们已经表征了新的DPP6剪接异构体DPP6-E,它在异源细胞中产生动力学非常快的三元Kv4通道。 DPP6-E在大脑的一些神经元群体中选择性表达,包括小脑颗粒神经元,海马锥体细胞和上丘中间层的神经元。 DPP6-E的作用解释了某些神经元中重构Kv4和天然Kv4通道之间的过去差异,并有助于神经元中A型K(+)电流的多样性。

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