Department of Neuroscience, Physiology & Pharmacology, University College London, London WC1E 6BT, UK.
Neuropharmacology. 2018 Jul 1;136(Pt A):3-9. doi: 10.1016/j.neuropharm.2017.11.006. Epub 2017 Nov 8.
Before discovering the GABA-B receptor, Norman Bowery completed a series of studies on an extrasynaptic or asynaptic "GABA system" in the rat superior cervical sympathetic ganglion. First, he discovered an uptake system for GABA in neuroglial cells in the ganglia and in peripheral nerves, with a different substrate specificity than that in neurons. Second, he showed that accumulated GABA in sympathetic glial cells was metabolized to succinate by a transaminase enzyme. Third, he provided detailed structure-activity information about compounds activating an extrasynaptic GABA-A receptor on neurons in the rat sympathetic ganglion. Fourth, he showed that some amino acid substrates for the neuroglial transporter could indirectly stimulate neurons by releasing GABA from adjacent glial cells, and that GABA could also be released from neuroglial cells by membrane depolarization. In this review, these discoveries are briefly described and updated and some of their implications assessed. This article is part of the "Special Issue Dedicated to Norman G. Bowery".
在发现 GABA-B 受体之前,Norman Bowery 完成了一系列关于大鼠颈上交感神经节中突触外或非突触“GABA 系统”的研究。首先,他在神经胶质细胞和周围神经中发现了 GABA 的摄取系统,其底物特异性与神经元中的摄取系统不同。其次,他表明累积在交感神经胶质细胞中的 GABA 通过转氨酶酶代谢为琥珀酸。第三,他提供了关于化合物的详细结构-活性信息,这些化合物可以激活大鼠交感神经节神经元上的突触外 GABA-A 受体。第四,他表明神经胶质转运体的一些氨基酸底物可以通过从相邻的胶质细胞释放 GABA 间接刺激神经元,并且 GABA 也可以通过膜去极化从神经胶质细胞中释放。在这篇综述中,简要描述并更新了这些发现,并评估了它们的一些影响。本文是为 Norman G. Bowery 专门设立的“特刊”的一部分。