神经科学
谷氨酸受体
白质
谷氨酸的
生物
AMPA受体
少突胶质细胞
代谢型谷氨酸受体
胼胝体
中枢神经系统
髓鞘
受体
生物化学
医学
放射科
磁共振成像
作者
Jennifer Ziskin,Akiko Nishiyama,María E. Rubio,Masahiro Fukaya,Dwight E. Bergles
摘要
Directed fusion of transmitter-laden vesicles enables rapid intercellular signaling in the central nervous system and occurs at synapses within gray matter. Here we show that action potentials also induce the release of glutamate from axons in the corpus callosum, a white matter region responsible for interhemispheric communication. Callosal axons release glutamate by vesicular fusion, which induces quantal AMPA receptor-mediated currents in NG2(+) glial progenitors at anatomically distinct axo-glial synaptic junctions. Glutamate release from axons was facilitated by repetitive stimulation and could be inhibited through activation of metabotropic autoreceptors. Although NG2(+) cells form associations with nodes of Ranvier in white matter, measurements of conduction velocity indicated that unmyelinated fibers are responsible for glutamatergic signaling with NG2(+) glia. This activity-dependent secretion of glutamate was prevalent in the developing and mature mouse corpus callosum, indicating that axons within white matter both conduct action potentials and engage in rapid neuron-glia communication.
科研通智能强力驱动
Strongly Powered by AbleSci AI