首页> 外文期刊>The Journal of Comparative Neurology >Postsynaptic gephyrin immunoreactivity exhibits a nearly one-to-one correspondence with gamma-aminobutyric acid-like immunogold-labeled synaptic inputs to sympathetic preganglionic neurons.
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Postsynaptic gephyrin immunoreactivity exhibits a nearly one-to-one correspondence with gamma-aminobutyric acid-like immunogold-labeled synaptic inputs to sympathetic preganglionic neurons.

机译:突触后的gephyrin免疫反应性与交感神经节前神经元的γ-氨基丁酸样免疫金标记的突触输入呈现出几乎一一对应的关系。

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摘要

Peripheral regulation of cardiovascular function is fundamentally influenced by central excitation and inhibition of sympathetic preganglionic neurons in thoracic spinal cord. This electron microscopy study investigated whether the gamma-aminobutyric acid (GABA)-ergic and glycinergic inhibitory innervation of sympathetic preganglionic neurons arises from mutually exclusive afferent populations. Sympathetic preganglionic neurons were retrogradely labeled with cholera beta subunit. GABAergic terminals were identified using strict quantitative statistical analyses as those boutons containing significantly elevated levels of GABA-like immunogold labeling (GABA+). Glycinergic terminals were classified as those boutons opposite postsynaptic gephyrin immunostaining containing background levels of GABA-like immunogold labeling (gephyrin+/GABA- association). Approximately 43% of the synaptic terminals that contacted sympathetic preganglionic somata and proximal dendrites and that were opposite gephyrin were GABA-; the remaining 57% were GABA+. Only two GABA+ boutons (4%) that synapsed on identified sympathetic preganglionic neuron (SPN) processes were not opposite gephyrin immunostaining (GABA+/gephyrin- association). GABA-/gephyrin+ associations were anticipated given prior anatomical, physiological, and pharmacological data. The observed nearly one-to-one correspondence between postsynaptic gephyrin immunoreactivity and GABA+ boutons was unexpected. Prior physiological and pharmacological experiments suggest that the postsynaptic effects of GABAergic inputs to sympathetic preganglionic neurons are mediated by activation of GABAA receptors. Those data, the present results, and other molecular, biochemical, and anatomical studies of gephyrin in the central nervous system (CNS) are consistent with two hypotheses: 1) Postsynaptic gephyrin is associated with GABAA receptors in the membranes of sympathetic preganglionic neurons, and 2) GABA+/gephyrin+ associations do not necessarily predict colocalization of GABA and glycine within single boutons synapsing on sympathetic preganglionic somata and dendrites.
机译:心血管功能的外周调节从根本上受到胸脊髓中枢兴奋和交感神经节前神经元抑制的影响。这项电子显微镜研究调查了交感神经节前神经元的γ-氨基丁酸(GABA)能和糖能抑制神经支配是否来自相互排斥的传入群体。交感神经节前神经元被霍乱β亚基逆行标记。使用严格的定量统计分析将GABA能末梢鉴定为含有显着升高的GABA样免疫金标记(GABA +)水平的钮扣。甘氨酸能终末被分类为与突触后gephyrin免疫染色相对的按钮,其包含背景水平的GABA样免疫金标记(gephyrin + / GABA-缔合)。与交感神经节前躯体和近端树突接触并与gephyrin相对的突触末端中约有43%是GABA-;其余的57%是GABA +。只有两个突触在已确定的交感神经节前神经元(SPN)过程上突触的GABA +按键(4%)与gephyrin免疫染色相反(GABA + / gephyrin-association)。鉴于先前的解剖学,生理学和药理学数据,预计会发生GABA- / gephyrin +关联。突触后gephyrin免疫反应性和GABA + boutons之间观察到几乎一对一的对应关系是出乎意料的。先前的生理和药理实验表明,GABA能输入对交感神经节前神经元的突触后作用是通过激活GABA A受体介导的。这些数据,本研究结果以及中枢神经系统(CNS)中的gephyrin的其他分子,生物化学和解剖学研究均与两个假设相符:1)突触后gephyrin与交感神经节前神经元细胞膜中的GABAA受体相关,并且2)GABA + / gephyrin +关联不一定预测在交感神经节前躯体和树突突触的单个按键内GABA和甘氨酸的共定位。

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