Kukley Maria, Capetillo-Zarate Estibaliz, Dietrich Dirk
Experimental Neurophysiology, Department of Neurosurgery, University Clinic Bonn, Germany.
Nat Neurosci. 2007 Mar;10(3):311-20. doi: 10.1038/nn1850. Epub 2007 Feb 11.
Vesicular release of neurotransmitter is the universal output signal of neurons in the brain. It is generally believed that fast transmitter release is restricted to nerve terminals that contact postsynaptic cells in the gray matter. Here we show in the rat brain that the neurotransmitter glutamate is also released at discrete sites along axons in white matter in the absence of neurons and nerve terminals. The propagation of single action potentials along axons leads to rapid vesicular release of glutamate, which is detected by ionotropic glutamate receptors on local oligodendrocyte precursor cells. Axonal release of glutamate is reliable, involves highly localized calcium microdomain signaling and is strongly calcium cooperative, similar to vesicle fusion at synapses. This axonal transmitter release represents a widespread mechanism for high-fidelity, activity-dependent signaling at the axon-glia interface in white matter.
神经递质的囊泡释放是大脑中神经元的普遍输出信号。人们普遍认为,快速递质释放仅限于与灰质中的突触后细胞接触的神经末梢。在这里,我们在大鼠脑中发现,在没有神经元和神经末梢的情况下,神经递质谷氨酸也会在白质中沿轴突的离散部位释放。单个动作电位沿轴突的传播会导致谷氨酸的快速囊泡释放,这可被局部少突胶质前体细胞上的离子型谷氨酸受体检测到。谷氨酸的轴突释放是可靠的,涉及高度局部化的钙微域信号传导,并且具有很强的钙协同作用,类似于突触处的囊泡融合。这种轴突递质释放代表了白质中轴突-胶质界面处高保真、活动依赖性信号传导的广泛机制。