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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Bidirectional activity-dependent regulation of neuronal ion channel phosphorylation.
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Bidirectional activity-dependent regulation of neuronal ion channel phosphorylation.

机译:神经元离子通道磷酸化的双向活性依赖性调节。

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Activity-dependent dephosphorylation of neuronal Kv2.1 channels yields hyperpolarizing shifts in their voltage-dependent activation and homoeostatic suppression of neuronal excitability. We recently identified 16 phosphorylation sites that modulate Kv2.1 function. Here, we show that in mammalian neurons, compared with other regulated sites, such as serine (S)563, phosphorylation at S603 is supersensitive to calcineurin-mediated dephosphorylation in response to kainate-induced seizures in vivo, and brief glutamate stimulation of cultured hippocampal neurons. In vitro calcineurin digestion shows that supersensitivity of S603 dephosphorylation is an inherent property of Kv2.1. Conversely, suppression of neuronal activity by anesthetic in vivo causes hyperphosphorylation at S603 but not S563. Distinct regulation of individual phosphorylation sites allows for graded and bidirectional homeostatic regulation of Kv2.1 function. S603 phosphorylation represents a sensitive bidirectional biosensor of neuronal activity.
机译:神经元Kv2.1通道的活动依赖性去磷酸化在其电压依赖性激活和神经兴奋性的均压抑制中产生超极化位移。我们最近发现了16个磷酸化位点,可调节Kv2.1功能。在这里,我们表明,在哺乳动物神经元中,与其他受调控的位点(如丝氨酸(S)563)相比,S603的磷酸化对钙调神经磷酸酶介导的去磷酸化反应超敏感,响应体内的海因酸盐诱导的癫痫发作,以及短暂的谷氨酸刺激培养的海马体神经元。体外钙调神经磷酸酶消化显示S603脱磷酸的超敏性是Kv2.1的固有特性。相反,体内麻醉对神经元活性的抑制会在S603而不是S563引起磷酸化过高。各个磷酸化位点的不同调节可实现Kv2.1功能的分级和双向稳态调节。 S603磷酸化代表神经元活动的敏感双向生物传感器。

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