Cobb S R, Halasy K, Vida I, Nyiri G, Tamás G, Buhl E H, Somogyi P
Department of Pharmacology, Oxford University, U.K.
Neuroscience. 1997 Aug;79(3):629-48. doi: 10.1016/s0306-4522(97)00055-9.
GABAergic interneurons sculpt the activity of principal cells and are themselves governed by GABAergic inputs. To determine directly some of the sources and mechanisms of this GABAergic innervation, we have used dual intracellular recordings with biocytin-filled microelectrodes and investigated synaptic interactions between pairs of interneurons in area CA1 of the adult rat hippocampus. Of four synaptically-coupled interneuron-to-interneuron cell pairs, three presynaptic cells were identified as basket cells, preferentially innervating somata and proximal dendrites of pyramidal cells, but one differing from the other two in the laminar distribution of its dendritic and axonal fields. The fourth presynaptic interneuron was located at the border between strata lacunosum moleculare and radiatum, with axon ramifying within stratum radiatum. Action potentials evoked in all four presynaptic interneurons were found to elicit fast hyperpolarizing inhibitory postsynaptic potentials (mean amplitude 0.35 +/- 0.10 mV at a membrane potential of -59 +/- 2.8 mV) in other simultaneously recorded interneurons (n=4). In addition, three of the presynaptic interneurons were also shown to produce similar postsynaptic responses in subsequently recorded pyramidal cells (n=4). Electron microscopic evaluation revealed one of the presynaptic basket cells to form 12 synaptic junctions with the perisomatic domain (seven somatic synapses and five synapses onto proximal dendritic shafts) of the postsynaptic interneuron in addition to innervating the same compartments of randomly-selected local pyramidal cells (50% somatic and 50% proximal dendritic synapses, n=12). In addition, light microscopic analysis also indicated autaptic self-innervation in basket (12 of 12) and bistratified cells (six of six). Electron microscopic investigation of one basket cell confirmed six autaptic junctions made by five of its boutons. Together, these data demonstrate that several distinct types of interneuron have divergent output to both principal cells and local interneurons of the same (basket cells) or different type. The fast synaptic effects, probably mediated by GABA in both postsynaptic interneurons and principal cells are similar. These additional sources of GABA identified here in the input to GABAergic cells could contribute to the differential temporal patterning of distinct GABAergic synaptic networks.
γ-氨基丁酸能中间神经元塑造了主细胞的活动,而它们自身也受γ-氨基丁酸能输入的调控。为了直接确定这种γ-氨基丁酸能神经支配的一些来源和机制,我们使用了填充生物胞素的微电极进行双细胞内记录,并研究了成年大鼠海马体CA1区中间神经元对之间的突触相互作用。在四对通过突触耦合的中间神经元对中,三个突触前细胞被鉴定为篮状细胞,它们优先支配锥体细胞的胞体和近端树突,但其中一个在其树突和轴突场的层状分布上与另外两个不同。第四个突触前中间神经元位于分子层和辐射层之间的边界,其轴突在辐射层内分支。发现在所有四个突触前中间神经元中诱发的动作电位,能在其他同时记录的中间神经元(n = 4)中引发快速超极化抑制性突触后电位(在膜电位为-59±2.8 mV时,平均幅度为0.35±0.10 mV)。此外,还显示三个突触前中间神经元在随后记录的锥体细胞(n = 4)中也产生类似的突触后反应。电子显微镜评估显示,其中一个突触前篮状细胞除了支配随机选择的局部锥体细胞的相同区域(50%为胞体突触和50%为近端树突突触,n = 12)外,还与突触后中间神经元的胞体周围区域形成了12个突触连接(七个胞体突触和五个近端树突干突触)。此外,光学显微镜分析还表明篮状细胞(12/12)和双分层细胞(6/6)存在自突触自我神经支配。对一个篮状细胞的电子显微镜研究证实了其五个终扣形成了六个自突触连接。总之,这些数据表明,几种不同类型的中间神经元对主细胞以及相同类型(篮状细胞)或不同类型的局部中间神经元具有不同的输出。快速突触效应可能由γ-氨基丁酸在突触后中间神经元和主细胞中介导,二者相似。这里在γ-氨基丁酸能细胞输入中确定的这些额外的γ-氨基丁酸来源,可能有助于不同γ-氨基丁酸能突触网络的不同时间模式形成。