Department of Molecular Pharmacology, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
J Neurosci. 2011 Jun 15;31(24):8948-57. doi: 10.1523/JNEUROSCI.1692-11.2011.
Serotonin [5-hydroxytryptamine (5-HT)]-absorbing neurons use serotonin reuptake transporter (SERT) to uptake 5-HT from extracellular space but do not synthesize it. While 5-HT-absorbing neurons have been identified in diverse organisms from Caenorhabditis elegans to humans, their function has not been elucidated. Here, we show that SERT in 5-HT-absorbing neurons controls behavioral response to food deprivation in C. elegans. The AIM and RIH interneurons uptake 5-HT released from chemosensory neurons and secretory neurons. Genetic analyses suggest that 5-HT secreted by both synaptic vesicles and dense core vesicles diffuse readily to the extrasynaptic space adjacent to the AIM and RIH neurons. Loss of mod-5/SERT function blocks the 5-HT absorption. mod-5/SERT mutants have been shown to exhibit exaggerated locomotor response to food deprivation. We found that transgenic expression of MOD-5/SERT in the 5-HT-absorbing neurons fully corrected the exaggerated behavior. Experiments of cell-specific inhibition of synaptic transmission suggest that the synaptic release of 5-HT from the 5-HT-absorbing neurons is not required for this behavioral modulation. Our data point to the role of 5-HT-absorbing neurons as temporal-spatial regulators of extrasynaptic 5-HT. Regulation of extrasynaptic 5-HT levels by 5-HT-absorbing neurons may represent a fundamental mechanism of 5-HT homeostasis, integrating the activity of 5-HT-producing neurons with distant targets in the neural circuits, and could be relevant to some actions of selective serotonin reuptake inhibitors in humans.
血清素[5-羟色胺(5-HT)]吸收神经元使用血清素再摄取转运体(SERT)从细胞外空间摄取 5-HT,但不合成它。虽然已经在从秀丽隐杆线虫到人类的各种生物体中鉴定出 5-HT 吸收神经元,但它们的功能尚未阐明。在这里,我们表明 5-HT 吸收神经元中的 SERT 控制秀丽隐杆线虫对食物剥夺的行为反应。AIM 和 RIH 中间神经元摄取化学感觉神经元和分泌神经元释放的 5-HT。遗传分析表明,突触小泡和致密核心小泡释放的 5-HT 很容易扩散到与 AIM 和 RIH 神经元相邻的细胞外间隙。MOD-5/SERT 功能的丧失会阻止 5-HT 的吸收。已经表明 mod-5/SERT 突变体对食物剥夺表现出过度的运动反应。我们发现,在 5-HT 吸收神经元中过表达 MOD-5/SERT 可完全纠正过度行为。针对突触传递的细胞特异性抑制实验表明,5-HT 吸收神经元从突触释放 5-HT 对于这种行为调节不是必需的。我们的数据表明 5-HT 吸收神经元作为细胞外 5-HT 的时空调节者的作用。5-HT 吸收神经元对细胞外 5-HT 水平的调节可能代表 5-HT 稳态的基本机制,将 5-HT 产生神经元的活性与神经回路中的遥远靶点整合在一起,并且可能与选择性 5-HT 再摄取抑制剂在人类中的某些作用有关。