Aging & Metabolism Research Program, Oklahoma Medical Research Foundation, Oklahoma City, Oklahoma 73104
Department of Neuroscience, Developmental, and Regenerative Biology, University of Texas at San Antonio, San Antonio, Texas 78249.
eNeuro. 2023 Apr 10;10(4). doi: 10.1523/ENEURO.0445-22.2023. Print 2023 Apr.
Midbrain dopamine (DA) neurons are among the best characterized pacemaker neurons, having intrinsic, rhythmic firing activity even in the absence of synaptic input. However, the mechanisms of DA neuron pacemaking have not been systematically related to how these cells respond to synaptic input. The input-output properties of pacemaking neurons can be characterized by the phase-resetting curve (PRC), which describes the sensitivity of interspike interval (ISI) length to inputs arriving at different phases of the firing cycle. Here we determined PRCs of putative DA neurons in the substantia nigra pars compacta in brain slices from male and female mice using gramicidin-perforated current-clamp recordings with electrical noise stimuli applied through the patch pipette. On average, and compared with nearby putative GABA neurons, DA neurons showed a low, nearly constant level of sensitivity across most of the ISI, but individual cells had PRCs showing relatively greater sensitivity at early or late phases. Pharmacological experiments showed that DA neuron PRCs are shaped by small-conductance calcium-activated potassium and Kv4 channels, which limit input sensitivity across early and late phases of the ISI. Our results establish the PRC as a tractable experimental measurement of individual DA neuron input-output relationships and identify two of the major ionic conductances that limit perturbations to rhythmic firing. These findings have applications in modeling and for identifying biophysical changes in response to disease or environmental manipulations.
中脑多巴胺(DA)神经元是最具特征的起搏神经元之一,即使在没有突触输入的情况下,也具有内在的、有节奏的放电活动。然而,DA 神经元起搏的机制尚未与这些细胞如何响应突触输入系统地联系起来。起搏神经元的输入-输出特性可以通过相位复位曲线(PRC)来描述,该曲线描述了尖峰间隔(ISI)长度对在放电周期不同相位到达的输入的敏感性。在这里,我们使用通过贴片电极施加电噪声刺激的革兰氏菌素穿孔电流钳记录,在来自雄性和雌性小鼠的脑切片中确定了黑质致密部中的假定 DA 神经元的 PRC。平均而言,与附近的假定 GABA 神经元相比,DA 神经元在大多数 ISI 中表现出低且几乎恒定的敏感性,但单个细胞的 PRC 在早期或晚期表现出相对更高的敏感性。药理学实验表明,DA 神经元的 PRC 由小电导钙激活钾和 Kv4 通道形成,这些通道限制了 ISI 的早期和晚期的输入敏感性。我们的结果将 PRC 确立为个体 DA 神经元输入-输出关系的可处理的实验测量方法,并确定了限制节律性放电干扰的两种主要离子电导。这些发现可用于建模,并可识别响应疾病或环境操作的生物物理变化。