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VGLUT3 调控安非他命引起的精神运动效应。

VGLUT3 gates psychomotor effects induced by amphetamine.

机构信息

Neuroscience ParisSeine - Institut de Biologie Paris Seine (NPS - IBPS) INSERM, CNRS, Sorbonne Université, Paris, France.

Department of Psychiatry, Douglas Hospital Research Center, McGill University, Verdun, Quebec, Canada.

出版信息

J Neurochem. 2019 Mar;148(6):779-795. doi: 10.1111/jnc.14644. Epub 2019 Jan 15.

Abstract

Several subtypes of modulatory neurons co-express vesicular glutamate transporters (VGLUTs) in addition to their cognate vesicular transporters. These neurons are believed to establish new forms of neuronal communication. The atypical VGLUT3 is of particular interest since in the striatum this subtype is found in tonically active cholinergic interneurons (TANs) and in a subset of 5-HT fibers. The striatum plays a major role in psychomotor effects induced by amphetamine. Whether and how VGLUT3-operated glutamate/ACh or glutamate/5HT co-transmissions modulates psychostimulants-induced maladaptive behaviors is still unknown. Here, we investigate the involvement of VGLUT3 and glutamate co-transmission in amphetamine-induced psychomotor effects and stereotypies. Taking advantage of constitutive and cell-type specific VGLUT3-deficient mouse lines, we tackled the hypothesis that VGLUT3 could gate psychomotor effects (locomotor activity and stereotypies) induced by acute or chronic administration of amphetamine. Interestingly, VGLUT3-null mice demonstrated blunted amphetamine-induced stereotypies as well as reduced striatal ∆FosB expression. VGLUT3-positive varicosities within the striatum arise in part from 5HT neurons. We tested the involvement of VGLUT3 deletion in serotoninergic neurons in amphetamine-induced stereotypies. Mice lacking VGLUT3 specifically in 5HT fibers showed no alteration to amphetamine sensitivity. In contrast, specific deletion of VGLUT3 in cholinergic neurons partially phenocopied the effects observed in the constitutive knock-out mice. Our results show that constitutive deletion of VGLUT3 modulates acute and chronic locomotor effects induced by amphetamine. They point to the fact that the expression of VGLUT3 in multiple brain areas is pivotal in gating amphetamine-induced psychomotor adaptations. OPEN SCIENCE BADGES: This article has received a badge for Open Materials because it provided all relevant information to reproduce the study in the manuscript. The complete Open Science Disclosure form for this article can be found at the end of the article. More information about the Open Practices badges can be found at https://cos.io/our-services/open-science-badges/.

摘要

几种调节型神经元除了表达其特异性囊泡转运体(VGLUTs)外,还共同表达囊泡谷氨酸转运体(VGLUTs)。这些神经元被认为建立了新的神经元通讯形式。非典型 VGLUT3 尤其引人注目,因为在纹状体中,这种亚型存在于持续活跃的胆碱能中间神经元(TAN)和一部分 5-HT 纤维中。纹状体在安非他命引起的精神运动效应中起着重要作用。VGLUT3 操作的谷氨酸/ACh 或谷氨酸/5HT 共传递是否以及如何调节安非他命诱导的适应不良行为仍然未知。在这里,我们研究了 VGLUT3 和谷氨酸共传递在安非他命诱导的精神运动效应和刻板行为中的作用。利用组成型和细胞类型特异性 VGLUT3 缺陷小鼠系,我们探讨了 VGLUT3 是否可以调节急性或慢性安非他命给药引起的精神运动效应(运动活性和刻板行为)的假设。有趣的是,VGLUT3 缺失小鼠表现出安非他命诱导的刻板行为减弱,以及纹状体 ∆FosB 表达减少。纹状体中的 VGLUT3 阳性囊泡部分来源于 5-HT 神经元。我们测试了 VGLUT3 缺失在 5-HT 神经元中对安非他命诱导的刻板行为的影响。缺乏 VGLUT3 特异性 5-HT 纤维的小鼠对安非他命的敏感性没有改变。相比之下,VGLUT3 在胆碱能神经元中的特异性缺失部分模拟了在组成型敲除小鼠中观察到的效应。我们的结果表明,VGLUT3 的组成型缺失调节了安非他命诱导的急性和慢性运动效应。它们指出了这样一个事实,即在多个脑区表达 VGLUT3 对于调节安非他命诱导的精神运动适应至关重要。开放科学徽章:本文获得了“开放材料”徽章,因为它提供了重现本文研究所需的所有相关信息。本文的完整开放科学披露表格可以在文章末尾找到。有关开放实践徽章的更多信息可以在 https://cos.io/our-services/open-science-badges/ 找到。

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