Department of Pharmacology & Toxicology, The University of Texas Medical Branch, Galveston, TX 77555, USA.
Department of Pharmacology, College of Pharmacy, King Saud University, Riyadh P.O. Box 145111, Saudi Arabia.
Int J Mol Sci. 2022 Feb 1;23(3):1700. doi: 10.3390/ijms23031700.
In neurons, changes in Akt activity have been detected in response to the stimulation of transmembrane receptors. However, the mechanisms that lead to changes in neuronal function upon Akt inhibition are still poorly understood. In the present study, we interrogate how Akt inhibition could affect the activity of the neuronal Na channels with while impacting intrinsic excitability. To that end, we employed voltage-clamp electrophysiological recordings in heterologous cells expressing the Na1.6 channel isoform and in hippocampal CA1 pyramidal neurons in the presence of triciribine, an inhibitor of Akt. We showed that in both systems, Akt inhibition resulted in a potentiation of peak transient Na+ current () density. Akt inhibition correspondingly led to an increase in the action potential firing of the CA1 pyramidal neurons that was accompanied by a decrease in the action potential current threshold. Complementary confocal analysis in the CA1 pyramidal neurons showed that the inhibition of Akt is associated with the lengthening of Na1.6 fluorescent intensity along the axonal initial segment (AIS), providing a mechanism for augmented neuronal excitability. Taken together, these findings provide evidence that Akt-mediated signal transduction might affect neuronal excitability in a Na1.6-dependent manner.
在神经元中,已经检测到 Akt 活性的变化是对跨膜受体刺激的响应。然而,Akt 抑制后导致神经元功能变化的机制仍知之甚少。在本研究中,我们探讨了 Akt 抑制如何通过影响内在兴奋性来影响神经元 Na 通道的活性。为此,我们在表达 Na1.6 通道同工型的异源细胞中和在海马 CA1 锥体神经元中,在 Akt 抑制剂 triciribine 的存在下,采用电压箝位电生理学记录来研究 Akt 抑制对瞬时 Na+电流(峰值电流密度)的影响。结果表明,在这两个系统中,Akt 抑制导致峰瞬时 Na+电流(峰值电流密度)密度增加。Akt 抑制相应地导致 CA1 锥体神经元的动作电位放电增加,同时动作电位电流阈值降低。CA1 锥体神经元的共聚焦分析显示,Akt 的抑制与 Na1.6 荧光强度沿着轴突起始段(AIS)的延长有关,为增强的神经元兴奋性提供了一种机制。总之,这些发现提供了证据表明 Akt 介导的信号转导可能以 Na1.6 依赖的方式影响神经元兴奋性。