Inserm, U952, Université Pierre et Marie Curie (UPMC), 75005 Paris, France.
J Neurosci. 2010 Feb 10;30(6):2198-210. doi: 10.1523/JNEUROSCI.5196-09.2010.
Three different subtypes of H(+)-dependent carriers (named VGLUT1-3) concentrate glutamate into synaptic vesicles before its exocytotic release. Neurons using other neurotransmitter than glutamate (such as cholinergic striatal interneurons and 5-HT neurons) express VGLUT3. It was recently reported that VGLUT3 increases acetylcholine vesicular filling, thereby, stimulating cholinergic transmission. This new regulatory mechanism is herein designated as vesicular-filling synergy (or vesicular synergy). In the present report, we found that deletion of VGLUT3 increased several anxiety-related behaviors in adult and in newborn mice as early as 8 d after birth. This precocious involvement of a vesicular glutamate transporter in anxiety led us to examine the underlying functional implications of VGLUT3 in 5-HT neurons. On one hand, VGLUT3 deletion caused a significant decrease of 5-HT(1A)-mediated neurotransmission in raphe nuclei. On the other hand, VGLUT3 positively modulated 5-HT transmission of a specific subset of 5-HT terminals from the hippocampus and the cerebral cortex. VGLUT3- and VMAT2-positive serotonergic fibers show little or no 5-HT reuptake transporter. These results unravel the existence of a novel subset of 5-HT terminals in limbic areas that might play a crucial role in anxiety-like behaviors. In summary, VGLUT3 accelerates 5-HT transmission at the level of specific 5-HT terminals and can exert an inhibitory control at the raphe level. Furthermore, our results suggest that the loss of VGLUT3 expression leads to anxiety-associated behaviors and should be considered as a potential new target for the treatment of this disorder.
三种不同的 H(+)-依赖性载体亚型(分别命名为 VGLUT1-3)在其胞吐释放之前将谷氨酸浓缩到突触小泡中。使用谷氨酸以外的其他神经递质的神经元(如胆碱能纹状体中间神经元和 5-HT 神经元)表达 VGLUT3。最近有报道称,VGLUT3 增加了乙酰胆碱囊泡的填充,从而刺激了胆碱能传递。这种新的调节机制在此被指定为囊泡填充协同作用(或囊泡协同作用)。在本报告中,我们发现 VGLUT3 的缺失会增加成年和新生小鼠(出生后 8 天)的几种与焦虑相关的行为。这种囊泡谷氨酸转运体在焦虑中的早期参与促使我们检查 VGLUT3 在 5-HT 神经元中的潜在功能意义。一方面,VGLUT3 的缺失导致中缝核中 5-HT(1A)介导的神经传递显著减少。另一方面,VGLUT3 正向调节来自海马体和大脑皮层的特定 5-HT 末梢的 5-HT 传递。VGLUT3 和 VMAT2 阳性的 5-HT 纤维显示出很少或没有 5-HT 再摄取转运体。这些结果揭示了在边缘区域存在一种新的 5-HT 末梢亚群,它可能在类似焦虑的行为中发挥关键作用。总之,VGLUT3 加速了特定 5-HT 末梢水平的 5-HT 传递,并可以在中缝核水平发挥抑制性控制。此外,我们的结果表明,VGLUT3 表达的丧失导致与焦虑相关的行为,应被视为治疗这种疾病的潜在新靶点。