Aix Marseille Univ, CNRS, Institut de Neurosciences de la Timone (INT), UMR 7289, Marseille, France.
Center for Interdisciplinary Research in Biology, Collège de France, CNRS, INSERM, Labex Memolife, Université PSL, Paris, France.
Glia. 2023 May;71(5):1259-1277. doi: 10.1002/glia.24337. Epub 2023 Jan 16.
Neuronal rhythmogenesis in the spinal cord is correlated with variations in extracellular K levels ([K ] ). Astrocytes play important role in [K ] homeostasis and compute neuronal information. Yet it is unclear how neuronal oscillations are regulated by astrocytic K homeostasis. Here we identify the astrocytic inward-rectifying K channel Kir4.1 (a.k.a. Kcnj10) as a key molecular player for neuronal rhythmicity in the spinal central pattern generator (CPG). By combining two-photon calcium imaging with electrophysiology, immunohistochemistry and genetic tools, we report that astrocytes display Ca transients before and during oscillations of neighboring neurons. Inhibition of astrocytic Ca transients with BAPTA decreases the barium-sensitive Kir4.1 current responsible of K clearance. Finally, we show in mice that Kir4.1 knockdown in astrocytes progressively prevents neuronal oscillations and alters the locomotor pattern resulting in lower motor performances in challenging tasks. These data identify astroglial Kir4.1 channels as key regulators of neuronal rhythmogenesis in the CPG driving locomotion.
脊髓中的神经元节律发生与细胞外 K 水平 ([K ]) 的变化有关。星形胶质细胞在 [K ] 动态平衡和计算神经元信息方面发挥着重要作用。然而,神经元振荡如何受星形胶质细胞 K 动态平衡调节尚不清楚。在这里,我们将星形胶质细胞内向整流钾通道 Kir4.1(也称为 Kcnj10)鉴定为脊髓中枢模式发生器 (CPG) 中神经元节律的关键分子参与者。通过结合双光子钙成像与电生理学、免疫组织化学和遗传工具,我们报告说星形胶质细胞在相邻神经元振荡之前和期间显示 Ca 瞬变。用 BAPTA 抑制星形胶质细胞 Ca 瞬变会降低负责 K 清除的钡敏感 Kir4.1 电流。最后,我们在小鼠中表明,星形胶质细胞中的 Kir4.1 敲低逐渐阻止神经元振荡并改变运动模式,导致在具有挑战性的任务中运动表现降低。这些数据表明,星形胶质细胞 Kir4.1 通道是驱动运动的 CPG 中神经元节律发生的关键调节剂。