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首页> 外文期刊>American Journal of Physiology >Neuregulin-1/ErbB4 signaling regulates Kv4.2-mediated transient outward K+ current through the Akt/mTOR pathway
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Neuregulin-1/ErbB4 signaling regulates Kv4.2-mediated transient outward K+ current through the Akt/mTOR pathway

机译:Neuregulin-1 / ErbB4信号通过Akt / mTOR途径调节Kv4.2介导的瞬时向外K +电流

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摘要

Neuregulin-1 (NRG-1) is a member of a family of neurotrophic factors that is required for the differentiation, migration, and development of neurons. NRG-1 signaling is thought to contribute to both neuronal development and the neuropathology of schizophrenia, which is believed to be a neurodevelopmental disorder. However, few studies have investigated the role of NRG-1 on voltage-gated ion channels. In this study, we report that NRG-1 specifically increases the density of transient outward K+ currents (IA) in rat cerebellar granule neurons (CGNs) in a time-dependent manner without modifying the activation or inactivation properties of IA channels. The increase in IA density is mediated by increased protein expression of Kv4.2, the main α-subunit of the IA channel, most likely by upregulation of translation. The effect of NRG-1 on IA density and Kv4.2 expression was only significant in immature neurons. Mechanistically, both Akt and mammalian target of rapamycin (mTOR) signaling pathways are required for the increased NRG-1-induced IA density and expression of Kv4.2. Moreover, pharmacological blockade of the ErbB4 receptor reduced the effect of NRG-1 on IA density and Kv4.2 induction. Our data reveal, for the first time, that stimulation of ErbB4 signaling by NRG-1 upregulates the expression of K+ channel proteins via activation of the Akt/mTOR signaling pathway and plays an important role in neuronal development and maturation. NRG1 does not acutely change IA and delayed-rectifier outward (IK) of rat CGNs, suggesting that it may not alter excitability of immature neurons by altering potassium channel property.
机译:神经调节蛋白1(NRG-1)是神经元分化,迁移和发育所必需的神经营养因子家族的成员。 NRG-1信号被认为有助于神经元发展和精神分裂症的神经病理学,精神分裂症被认为是一种神经发育障碍。但是,很少有研究研究NRG-1在电压门控离子通道上的作用。在这项研究中,我们报告了NRG-1以时间依赖的方式特异性地增加了大鼠小脑颗粒神经元(CGNs)的瞬时向外K +电流(IA)的密度,而没有改变IA通道的激活或失活特性。 IA密度的增加是由Kv4.2(IA通道的主要α亚基)的蛋白质表达增加所介导的,很可能是翻译的上调。 NRG-1对IA密度和Kv4.2表达的影响仅在未成熟神经元中显着。从机理上讲,增加NRG-1诱导的IA密度和Kv4.2的表达都需要Akt和雷帕霉素(mTOR)信号转导的哺乳动物靶标。此外,对ErbB4受体的药理阻断降低了NRG-1对IA密度和Kv4.2诱导的影响。我们的数据首次揭示了NRG-1对ErbB4信号的刺激通过激活Akt / mTOR信号通路来上调K +通道蛋白的表达,并在神经元发育和成熟中起重要作用。 NRG1不会急性改变大鼠CGN的IA和延迟整流器向外(IK),表明它可能不会通过改变钾通道特性来改变未成熟神经元的兴奋性。

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