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首页> 外文期刊>Neuron >Dynamic Interactions Mediated by Nonredundant Signaling Mechanisms Couple Circadian Clock Neurons
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Dynamic Interactions Mediated by Nonredundant Signaling Mechanisms Couple Circadian Clock Neurons

机译:非冗余信号机制介导的动态相互作用与昼夜节律时钟神经元耦合

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Interactions among suprachiasmatic nucleus (SCN) neurons are required for robust circadian rhythms entrained to local time. To investigate these signaling mechanisms, we developed a functional coupling assay that uniquely captures the dynamic process by which SCN neurons interact. As a population, SCN neurons typically display synchronized rhythms with similar peak times, but will peak 6-12hr apart after invivo exposure to long days. Once they are removed from these conditions, SCN neurons resynchronize through a phase-dependent coupling process mediated by both vasoactive intestinal polypeptide (VIP) and GABAA signaling. Notably, GABAA signaling contributes to coupling when the SCN network is in an antiphase configuration, but opposes synchrony under steady-state conditions. Further, VIP acts together with GABAA signaling to couple the network in an antiphase configuration, but promotes synchrony under steady-state conditions by counteracting the actions of GABAA signaling. Thus, SCN neurons interact through nonredundant coupling mechanisms influenced by the state of the network.
机译:chi上神经节核(SCN)神经元之间的相互作用是必需的强健的昼夜节律所夹带的本地时间。为了研究这些信号传导机制,我们开发了一种功能性偶联测定法,可唯一捕获SCN神经元相互作用的动态过程。作为一个群体,SCN神经元通常显示出具有相似峰值时间的同步节律,但在长时间暴露于体内后,将间隔6-12小时达到峰值。一旦将它们从这些条件中移出,SCN神经元就会通过由血管活性肠多肽(VIP)和GABAA信号传导介导的阶段依赖性偶联过程重新同步。值得注意的是,当SCN网络处于反相配置时,GABAA信号有助于耦合,但在稳态条件下则反对同步。此外,VIP与GABAA信号一起发挥作用,以反相配置耦合网络,但在稳态条件下通过抵消GABAA信号的作用来促进同步。因此,SCN神经元通过受网络状态影响的非冗余耦合机制进行交互。

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