Buhl E H, Cobb S R, Halasy K, Somogyi P
MRC Anatomical Neuropharmacology Unit, Oxford University, UK.
Eur J Neurosci. 1995 Sep 1;7(9):1989-2004. doi: 10.1111/j.1460-9568.1995.tb00721.x.
Hippocampal pyramidal cells receive GABA-mediated synaptic input from several distinct interneurons. In order to define the effect of perisomatic synapses, intracellular recordings were made with biocytin-containing microelectrodes from synaptically connected inhibitory and pyramidal cell pairs in subfields CA1 and CA3 of the rat hippocampus. Subsequent physiological analysis were restricted to the category of cells, here referred to as basket cells (n = 14), which had an efferent synaptic target profile (n = 282 synaptic contacts) of predominantly somatic (48.2%) and proximal dendritic synapses (45.0%). Electron microscopic analysis revealed that in two instances identified postsynaptic pyramidal cells received a total of 10 and 12 labelled basket cell synapses respectively. At an average membrane potential of -57.8 +/- 4.6 mV, unitary inhibitory postsynaptic potentials (IPSPs; n = 24) had a mean amplitude of 450 +/- 238 microV, a 10-90% rise time of 4.6 +/- 3.2 ms and, measured at half-amplitude, a mean duration of 31.6 +/- 18.2 ms. In most instances (n = 19) the IPSP decay could be fitted with a single exponential with a mean time constant of 32.4 +/- 18.0 ms. Unitary basket cell-evoked IPSPs (n = 5) was extrapolated to be at -74.9 +/- 6.0 mV. Averages of unitary IPSPs had a mean calculated conductance of 0.95 +/- 0.29 nS, ranging from 0.52 to 1.16 nS. Unitary basket cell IPSPs (n = 3) increased in amplitude by 26.6 +/- 19.9% following bath application of the GABAB receptor antagonist CGP 55845A [correction of CGP 35845A] (1-4 microM), whereas subsequent addition of the GABAA receptor antagonist bicuculline (10-13 microM) reduced the IPSP amplitude to 13.5 +/- 3.1% of the control response. Rapid presynaptic trains of basket cell action potentials resulted in the summation of up to four postsynaptic responses (n = 5). However, any increase in the rate of tonic firing (2- to 10-fold) led to a > 50% reduction of the postsynaptic response amplitude. At depolarized membrane potentials, averaged IPSPs could be followed by a distinct depolarizing overshoot or postinhibitory facilitation (n = 4). At firing threshold, pyramidal cells fired postinhibitory rebound-like action potentials, the latter in close temporal overlap with the depolarizing overshoot. In conclusion, hippocampal basket cells have been identified as one source of fast, GABAA receptor-evoked perisomatic inhibition. Unitary events are mediated by multiple synaptic release sites, thus providing an effective mechanism to avoid total transmission failures.
海马锥体细胞从几种不同的中间神经元接收GABA介导的突触输入。为了确定胞体周围突触的作用,在大鼠海马CA1和CA3亚区,用含有生物胞素的微电极对突触连接的抑制性和锥体细胞对进行细胞内记录。随后的生理学分析仅限于一类细胞,这里称为篮状细胞(n = 14),其传出突触靶点分布(n = 282个突触接触)主要为胞体(48.2%)和近端树突突触(45.0%)。电子显微镜分析显示,在两个实例中,已鉴定的突触后锥体细胞分别总共接收了10个和12个标记的篮状细胞突触。在平均膜电位为-57.8±4.6 mV时,单突触抑制性突触后电位(IPSPs;n = 24)的平均幅度为450±238 μV,10 - 90%上升时间为4.6±3.2 ms,在半幅度处测量,平均持续时间为31.6±18.2 ms。在大多数情况下(n = 19),IPSP衰减可以用单个指数拟合,平均时间常数为32.4±18.0 ms。单突触篮状细胞诱发的IPSPs(n = 5)外推至-74.9±6.0 mV时。单突触IPSPs的平均值计算得出的平均电导为0.95±0.29 nS,范围为0.52至1.16 nS。在浴用GABAB受体拮抗剂CGP 55845A[纠正为CGP 35845A](1 - 4 μM)后,单突触篮状细胞IPSPs(n = 3)的幅度增加了26.6±19.9%,而随后加入GABAA受体拮抗剂荷包牡丹碱(10 - 13 μM)将IPSP幅度降低至对照反应的13.5±3.1%。篮状细胞动作电位的快速突触前串刺激导致多达四个突触后反应的总和(n = 5)。然而,任何紧张性放电频率的增加(2至10倍)都会导致突触后反应幅度降低>50%。在去极化膜电位下,平均IPSPs之后可能会出现明显的去极化超射或抑制后易化(n = 4)。在发放阈值时,锥体细胞发放抑制后反弹样动作电位,后者在时间上与去极化超射紧密重叠。总之,海马篮状细胞已被确定为快速的、GABAA受体诱发的胞体周围抑制的一个来源。单突触事件由多个突触释放位点介导,从而提供了一种有效的机制来避免完全的传递失败。