Lee C Justin, Bardoni Rita, Tong Chi Kun, Engelman Holly Sue, Joseph Donald J, Magherini Pier Cosimo, MacDermott Amy B
Department of Physiology and Cellular Biophysics, Columbia University, New York, New York 10032, USA.
Neuron. 2002 Jul 3;35(1):135-46. doi: 10.1016/s0896-6273(02)00729-8.
No direct evidence has been found for expression of functional AMPA receptors by dorsal root ganglion neurons despite immunocytochemical evidence suggesting they are present. Here we report evidence for expression of functional AMPA receptors by a subpopulation of dorsal root ganglion neurons. The AMPA receptors are most prominently located near central terminals of primary afferent fibers. AMPA and kainate receptors were detected by recording receptor-mediated depolarization of the central terminals under selective pharmacological conditions. We demonstrate that activation of presynaptic AMPA receptors by exogenous agonists causes inhibition of glutamate release from the terminals, possibly via primary afferent depolarization (PAD). These results challenge the traditional view that GABA and GABA(A) receptors exclusively mediate PAD, and indicate that PAD is also mediated by glutamate acting on presynaptically localized AMPA and kainate receptors.
尽管免疫细胞化学证据表明背根神经节神经元存在功能性AMPA受体,但尚未找到直接证据。在此,我们报告了背根神经节神经元亚群表达功能性AMPA受体的证据。AMPA受体最显著地位于初级传入纤维的中枢终末附近。通过在选择性药理条件下记录受体介导的中枢终末去极化来检测AMPA和海人藻酸受体。我们证明,外源性激动剂激活突触前AMPA受体可导致终末谷氨酸释放受到抑制,可能是通过初级传入去极化(PAD)实现的。这些结果挑战了传统观点,即GABA和GABAA受体专门介导PAD,并表明PAD也可由作用于突触前定位的AMPA和海人藻酸受体的谷氨酸介导。