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D5 dopamine receptors control glutamatergic AMPA transmission between the motor cortex and subthalamic nucleus

机译:D5多巴胺受体控制电动机皮层和亚粒细胞区之间的谷氨酸氨酰柱变速器

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Corticofugal fibers target the subthalamic nucleus (STN), a component nucleus of the basal ganglia, in addition to the striatum, their main input. The cortico-subthalamic, or hyperdirect, pathway, is thought to supplement the cortico-striatal pathways in order to interrupt/change planned actions. To explore the previously unknown properties of the neurons that project to the STN, retrograde and anterograde tools were used to specifically identify them in the motor cortex and selectively stimulate their synapses in the STN. The cortico-subthalamic neurons exhibited very little sag and fired an initial doublet followed by non-adapting action potentials. In the STN, AMPA/kainate synaptic currents had a voltage-dependent conductance, indicative of GluA2-lacking receptors and were partly inhibited by Naspm. AMPA transmission displayed short-term depression, with the exception of a limited bandpass in the 5 to 15?Hz range. AMPA synaptic currents were negatively controlled by dopamine D5 receptors. The reduction in synaptic strength was due to postsynaptic D5 receptors, mediated by a PKA-dependent pathway, but did not involve a modified rectification index. Our data indicated that dopamine, through post-synaptic D5 receptors, limited the cortical drive onto STN neurons in the normal brain.
机译:皮质法纤维靶向亚粒细胞核(STN),除了纹状体外,它们的主要输入外还具有基底神经节的组分细胞核。 Cortico-次粒子或高度途径,途径被认为是为了中断/改变计划的行动来补充皮质偏向途径。为了探讨将突出的神经元的先前未知的属性,逆行和逆行工具用于特异性地识别它们在电机皮层中,并选择性地刺激其STN中的突触。皮质次粒细胞神经元表现出非常小的凹陷,并烧制初始双重,然后是非适应动作电位。在STN中,AMPA / Kainate突触电流具有电压依赖性的电流,指示缺少的受体,并且由Naspm部分抑制。 AMPA传输显示短期凹陷,除了5至15Ω·赫兹范围内的有限带通。 AMPA突触电流受到多巴胺D5受体的负控制。突触强度的降低是由于PKA依赖性途径介导的突触后D5受体,但不涉及修饰的整流指数。我们的数据表明,通过突触后D5受体,多巴胺限制在正常脑中的STN神经元上的皮质驱动。

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