Department of Neuroscience, Uppsala University, Box 587, 751 23 Uppsala, Sweden.
Mol Cell Neurosci. 2012 Mar;49(3):322-32. doi: 10.1016/j.mcn.2012.01.003. Epub 2012 Jan 17.
Gamma motor neurons (MNs), the efferent component of the fusimotor system, regulate muscle spindle sensitivity. Muscle spindle sensory feedback is required for proprioception that includes sensing the relative position of neighboring body parts and appropriately adjust the employed strength in a movement. The lack of a single and specific genetic marker has long hampered functional and developmental studies of gamma MNs. Here we show that the serotonin receptor 1d (5-ht1d) is specifically expressed by gamma MNs and proprioceptive sensory neurons. Using mice expressing GFP driven by the 5-ht1d promotor, we performed whole-cell patch-clamp recordings of 5-ht1d::GFP⁺ and 5-ht1d::GFP⁻ motor neurons from young mice. Hierarchal clustering analysis revealed that gamma MNs have distinct electrophysiological properties intermediate to fast-like and slow-like alpha MNs. Moreover, mice lacking 5-ht1d displayed lower monosynaptic reflex amplitudes suggesting a reduced response to sensory stimulation in motor neurons. Interestingly, adult 5-ht1d knockout mice also displayed improved coordination skills on a beam-walking task, implying that reduced activation of MNs by Ia afferents during provoked movement tasks could reduce undesired exaggerated muscle output. In summary, we show that 5-ht1d is a novel marker for gamma MNs and that the 5-ht1d receptor is important for the ability of proprioceptive circuits to receive and relay accurate sensory information in developing and mature spinal cord motor circuits.
γ 运动神经元(MNs)是梭内肌运动系统的传出成分,调节肌梭敏感性。肌梭感觉反馈是本体感觉所必需的,包括感知相邻身体部位的相对位置,并在运动中适当调整所使用的力量。缺乏单一和特定的遗传标记长期以来一直阻碍了 γ MNs 的功能和发育研究。在这里,我们表明 5-羟色胺受体 1d(5-ht1d)特异性表达于 γ MNs 和本体感觉神经元。使用表达 GFP 的 5-ht1d 启动子驱动的小鼠,我们对年轻小鼠的 5-ht1d::GFP⁺和 5-ht1d::GFP⁻运动神经元进行了全细胞膜片钳记录。层次聚类分析显示,γ MNs 具有独特的电生理特性,介于快肌样和慢肌样 α MNs 之间。此外,缺乏 5-ht1d 的小鼠表现出较低的单突触反射幅度,这表明运动神经元对感觉刺激的反应降低。有趣的是,成年 5-ht1d 敲除小鼠在走棒任务中也表现出更好的协调技能,这意味着在诱发运动任务中 Ia 传入纤维对 MNs 的激活减少可能会减少不期望的过度肌肉输出。总之,我们表明 5-ht1d 是 γ MNs 的一个新标记物,5-ht1d 受体对于本体感觉回路在发育和成熟脊髓运动回路中接收和传递准确感觉信息的能力很重要。