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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Hyperdopaminergia and altered locomotor activity in GABAB1-deficient mice.
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Hyperdopaminergia and altered locomotor activity in GABAB1-deficient mice.

机译:高多巴胺痛和GABA B1缺陷小鼠的运动功能改变。

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GABAB1-/- mice, which are devoid of functional GABAB receptors, consistently exhibit marked hyperlocomotion when exposed to a novel environment. Telemetry recordings now revealed that, in a familiar environment, GABAB1-/- mice display an altered pattern of circadian activity but no hyperlocomotion. This indicates that hyperlocomotion is only triggered when GABAB1-/- mice are aroused by novelty. In microdialysis experiments, GABAB1-/- mice exhibited a 2-fold increased extracellular level of dopamine in the striatum. Following D-amphetamine administration, GABAB1-/- mice released less dopamine than wild-type mice, indicative of a reduced cytoplasmic dopamine pool. The hyperdopaminergic state of GABAB1-/- mice is accompanied by molecular changes, including reduced levels of tyrosine hydroxylase mRNA, D1 receptor binding-sites and Ser40 phosphorylation of tyrosine hydroxylase. Tyrosine hydroxylase activity, tissue dopamine content and dopamine metabolism do not appear to be measurably altered. Pharmacological and electrophysiological experiments support that the hyperdopaminergic state of GABAB1-/- mice is not severe enough to inactivate dopamine D2 receptors and to disrupt D2-mediated feedback inhibition of tyrosine hydroxylase activity. The data support that loss of GABAB activity results in a sustained moderate hyperdopaminergic state, which is phenotypically revealed by contextual hyperlocomotor activity. Importantly, the presence of an inhibitory GABA tone on the dopaminergic system mediated by GABAB receptors provides an opportunity for therapeutic intervention.
机译:缺少功能性GABA B受体的GABA B1-/-小鼠在暴露于新环境中始终表现出明显的运动过度。现在,遥测记录表明,在熟悉的环境中,GABA B1-/-小鼠的昼夜节律活动模式发生了改变,但没有超速运动。这表明仅当新颖性引起GABAB1-/-小鼠时才触发运动过度。在微透析实验中,GABA B1-/-小鼠纹状体中多巴胺的细胞外水平增加了2倍。施用D-苯异丙胺后,GABAB1-/-小鼠释放的多巴胺比野生型小鼠少,表明细胞质多巴胺池减少。 GABAB1-/-小鼠的高多巴胺能状态伴随着分子变化,包括酪氨酸羟化酶mRNA水平降低,D1受体结合位点降低以及酪氨酸羟化酶Ser40磷酸化。酪氨酸羟化酶活性,组织多巴胺含量和多巴胺代谢似乎没有明显改变。药理和电生理实验支持GABAB1-/-小鼠的高多巴胺能状态不足以使多巴胺D2受体失活并破坏D2介导的酪氨酸羟化酶反馈抑制作用。数据支持GABA B活性的丧失导致持续的中度高多巴胺能状态,这在表型上由运动过度运动表现出来。重要的是,由GABAB受体介导的多巴胺能系统上抑制性GABA调的存在为治疗干预提供了机会。

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