Department of Physiology and Pharmacology, Wake Forest School of Medicine, Winston-Salem, NC 27157; and.
Department of Neurobiology and Anatomy, Drexel University College of Medicine, Philadelphia, PA 19129.
Proc Natl Acad Sci U S A. 2014 Jul 1;111(26):E2751-9. doi: 10.1073/pnas.1407935111. Epub 2014 Jun 16.
The majority of neurotransmitter systems shows variations in state-dependent cell firing rates that are mechanistically linked to variations in extracellular levels, or tone, of their respective neurotransmitter. Diurnal variation in dopamine tone has also been demonstrated within the striatum, but this neurotransmitter is unique, in that variation in dopamine tone is likely not related to dopamine cell firing; this is largely because of the observation that midbrain dopamine neurons do not display diurnal fluctuations in firing rates. Therefore, we conducted a systematic investigation of possible mechanisms for the variation in extracellular dopamine tone. Using microdialysis and fast-scan cyclic voltammetry in rats, as well as wild-type and dopamine transporter (DAT) knock-out mice, we demonstrate that dopamine uptake through the DAT and the magnitude of subsecond dopamine release is inversely related to the magnitude of extracellular dopamine tone. We investigated dopamine metabolism, uptake, release, D2 autoreceptor sensitivity, and tyrosine hydroxylase expression and activity as mechanisms for this variation. Using this approach, we have pinpointed the DAT as a critical governor of diurnal variation in extracellular dopamine tone and, as a consequence, influencing the magnitude of electrically stimulated dopamine release. Understanding diurnal variation in dopamine tone is critical for understanding and treating the multitude of psychiatric disorders that originate from perturbations of the dopamine system.
大多数神经递质系统的细胞发射率都呈现状态依赖性变化,这种变化与细胞外神经递质水平或“音调”的变化在机制上相关联。纹状体中的多巴胺音调也表现出昼夜变化,但这种神经递质是独特的,因为多巴胺音调的变化可能与多巴胺细胞的发射无关;这主要是因为观察到中脑多巴胺神经元的发射率没有昼夜波动。因此,我们对细胞外多巴胺音调变化的可能机制进行了系统研究。我们使用大鼠微透析和快速扫描循环伏安法以及野生型和多巴胺转运体(DAT)敲除小鼠,证明通过 DAT 的多巴胺摄取以及亚秒级多巴胺释放的幅度与细胞外多巴胺音调的幅度呈反比关系。我们研究了多巴胺代谢、摄取、释放、D2 自身受体敏感性以及酪氨酸羟化酶表达和活性作为这种变化的机制。通过这种方法,我们确定 DAT 是细胞外多巴胺音调昼夜变化的关键调节因子,因此影响了电刺激多巴胺释放的幅度。了解多巴胺音调的昼夜变化对于理解和治疗源于多巴胺系统紊乱的多种精神疾病至关重要。