Leitch B, Laurent G
California Institute of Technology, Biology Division, Pasadena 91125.
J Comp Neurol. 1993 Nov 15;337(3):461-70. doi: 10.1002/cne.903370309.
Double-labelling and electron microscopy were used to assess the distribution of GABAergic synapses made onto the neurites of spiking local interneurones in the locust. The aims were to determine the sites of inputs mediating inhibition of the spiking local interneurones and to ascertain the relative abundance of such inputs. This information should allow us to understand better the integrative properties of these spiking local interneurones and the role of inhibition in shaping their receptive field properties or in fine tuning their spike-mediated outputs. Spiking interneurones in a midline population were labelled by intracellular injection of horseradish peroxidase after physiological characterisation. Colloidal gold immunocytochemistry was then used on ultrathin sections of these neurones with a polyclonal antibody raised against GABA. Most GABAergic (inhibitory) input synapses onto the interneurones are made on their ventral neurites, which also receive afferent (excitatory) inputs. These inhibitory inputs to the ventral neurites constitute 43% of the identifiable synapses. Relatively few GABAergic inputs were found onto the dorsal neurites, which are predominantly the sites of output synapses from these interneurones. These results suggest that much synaptic integration takes place in the ventral field of branches and that GABA-mediated presynaptic inhibitory control of spike-mediated outputs from the dorsal neurites is unlikely to occur.
采用双重标记和电子显微镜技术来评估蝗虫中向发放脉冲的局部中间神经元神经突上形成的γ-氨基丁酸(GABA)能突触的分布。目的是确定介导对发放脉冲的局部中间神经元抑制作用的输入位点,并确定此类输入的相对丰度。这些信息应能让我们更好地理解这些发放脉冲的局部中间神经元的整合特性,以及抑制作用在塑造其感受野特性或微调其脉冲介导输出方面的作用。在对中线群体中的发放脉冲中间神经元进行生理学特征描述后,通过细胞内注射辣根过氧化物酶对其进行标记。然后,使用针对GABA的多克隆抗体对这些神经元的超薄切片进行胶体金免疫细胞化学分析。大多数作用于中间神经元的GABA能(抑制性)输入突触位于其腹侧神经突上,腹侧神经突也接收传入(兴奋性)输入。这些向腹侧神经突的抑制性输入占可识别突触的43%。在背侧神经突上发现的GABA能输入相对较少,背侧神经突主要是这些中间神经元输出突触的位点。这些结果表明,许多突触整合发生在分支的腹侧区域,并且从背侧神经突进行的GABA介导的对脉冲介导输出的突触前抑制控制不太可能发生。