Mondal Yugarshi, Calabrese Ronald L, Marder Eve
Volen Center and Biology Department, Brandeis University, Waltham, MA 02454.
Biology Department, Emory University, Atlanta, GA, 30322.
bioRxiv. 2025 Jun 6:2025.02.05.636744. doi: 10.1101/2025.02.05.636744.
Neurons can maintain stable activity profiles over their lifetimes despite ion channel turnover over minutes to weeks. Neuronal activity is also influenced by regulating the voltage-dependence of ion channels. How do these two forms of plasticity work together to maintain a stable activity profile? We augment a classical model of activity-dependent ion channel density regulation with a mechanism that adjusts channel voltage-dependence based on activity. These findings reveal that the timescale of these mechanisms shape the specific electrical activity patterns that achieve a target activity profile. Moreover, alterations in channel voltage-dependence can impact a neuron's ability to recover from perturbations. These results highlight a potentially distinct role for activity-dependent regulation of channel voltage-dependence in maintaining stable neuronal activity profiles.
尽管离子通道在数分钟到数周内会更新换代,但神经元在其整个生命周期中仍能保持稳定的活动模式。神经元活动还受到离子通道电压依赖性调节的影响。这两种可塑性形式是如何共同作用以维持稳定的活动模式的呢?我们通过一种基于活动来调整通道电压依赖性的机制,对活动依赖性离子通道密度调节的经典模型进行了扩充。这些发现表明,这些机制的时间尺度塑造了实现目标活动模式的特定电活动模式。此外,通道电压依赖性的改变会影响神经元从扰动中恢复的能力。这些结果突出了活动依赖性通道电压依赖性调节在维持稳定神经元活动模式中可能具有的独特作用。