Department of Pharmacology, University of Virginia, Charlottesville, VA 22908.
Department of Pharmacology, University of Virginia, Charlottesville, VA 22908
eNeuro. 2021 Nov 17;8(6). doi: 10.1523/ENEURO.0212-21.2021. Print 2021 Nov-Dec.
Select neuronal populations display steady rhythmic neuronal firing that provides tonic excitation to drive downstream networks and behaviors. In noradrenergic neurons of the locus coeruleus (LC), circadian neurons of the suprachiasmatic nucleus (SCN), and CO/H-activated neurons of the brainstem retrotrapezoid nucleus (RTN), large subthreshold membrane potential oscillations contribute to the pacemaker-like action potential discharge. The oscillations and firing in LC and SCN involve contributions from leak sodium (NALCN) and L-type calcium channels while recent work from RTN suggested an additional pivotal role for a secondary calcium-activated and voltage-gated cationic current sensitive to TRPM4 channel blockers. Here, we tested whether TRPM4 contributes to subthreshold oscillations in mouse LC and SCN. By RNAscope hybridization, transcripts were detected in both cell groups. In whole-cell recordings from acute slice preparations, prominent voltage-dependent membrane potential oscillations were revealed in LC and SCN after blocking action potentials. These oscillations were inhibited by two chemically-distinct blockers of TRPM4, 9-phenanthrol (9-pt) and 4-chloro-2-[[2-(2-chlorophenoxy)acetyl]amino]benzoic acid (CBA). Under whole-cell voltage clamp, inward currents evoked by oscillation voltage waveforms were inhibited in LC by blocking L-type calcium channels and TRPM4. These data implicate TRPM4 in the large subthreshold membrane potential oscillations that underlie tonic action potential discharge in LC and SCN, providing a voltage-dependent and calcium-dependent cationic current to augment the depolarizing inward Na and Ca currents previously associated with this distinctive electroresponsive property.
选择神经元群体显示稳定的节律性神经元放电,为下游网络和行为提供紧张性兴奋。在蓝斑核(LC)的去甲肾上腺素能神经元、视交叉上核(SCN)的昼夜节律神经元和脑干延髓腹外侧核(RTN)的 CO/H 激活神经元中,大的亚阈膜电位振荡有助于类似起搏器的动作电位放电。LC 和 SCN 中的振荡和放电涉及漏钠(NALCN)和 L 型钙通道的贡献,而最近来自 RTN 的工作表明,辅助钙激活和电压门控阳离子电流对于 TRPM4 通道阻滞剂具有额外的关键作用。在这里,我们测试了 TRPM4 是否有助于小鼠 LC 和 SCN 中的亚阈振荡。通过 RNAscope 杂交,在这两个细胞群中都检测到了转录本。在急性切片制备的全细胞膜片钳记录中,在阻断动作电位后,LC 和 SCN 中显示出明显的电压依赖性膜电位振荡。这些振荡被两种化学上不同的 TRPM4 阻滞剂 9-苯并噻吩(9-pt)和 4-氯-2-[[2-(2-氯苯氧基)乙酰基]氨基]苯甲酸(CBA)抑制。在全细胞膜电压钳下,用 L 型钙通道和 TRPM4 阻断剂阻断 LC 中的内向电流,由振荡电压波形诱发。这些数据表明 TRPM4 参与了大的亚阈膜电位振荡,为 LC 和 SCN 中的紧张性动作电位放电提供了电压依赖性和钙依赖性阳离子电流,增强了先前与这种独特电响应特性相关的去极化内向 Na 和 Ca 电流。