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首页> 外文期刊>The Journal of Experimental Biology >Opposing actions of nitric oxide on synaptic inputs of identifiedinterneurones in the central nervous system of the crayfish
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Opposing actions of nitric oxide on synaptic inputs of identifiedinterneurones in the central nervous system of the crayfish

机译:一氧化氮对小龙虾中枢神经系统中已确定的中间神经元突触输入的反作用

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摘要

Little is known of the action of nitric oxide (NO) at the synaptic level on identified interneurones in local circuits that process mechanosensory signals. Here, we examine the action of NO in the terminal abdominal ganglion of the crayfish Pacifastacus leniusculus, where it has modulatory effects on the synaptic inputs of 17 identified ascending interneurones mediated by electrical stimulation of a sensory nerve. To analyse the role of NO in the processing of sensory signals, we bath-applied the NO donor SNAP, the NO scavenger PTIO, the nitric oxide synthase (NOS) inhibitor L-NAME, the NOS substrate L-arginine, a cyclic GMP (cGMP) analogue, 8-Br-cGMP, and the soluble guanylate cyclase (sGC) inhibitor ODQ. The effects of these chemicals on the synaptic inputs of the interneurones could be divided into two distinct classes. The NO donor SNAP enhanced the inputs to one class of interneurone (class 1) and depressed those to another (class 2). Neither the inactive isomer NAP nor degassed SNAP had any effect on the inputs to these same classes of interneurone, The NO scavenger PTIO caused the opposite effects to those of the NO donor SNAP, indicating that endogenous NO may have an action in local circuits. Preventing the synthesis of NO using L-NAME had the opposite effect to that of SNAP an each response class of interneurone, Increasing the synthesis of endogenous NO by applying L-arginine Led to effects on both response classes of interneurone similar to those of SNAP, Taken together, these results suggested that NO was the active component in mediating the changes in amplitude of the excitatory postsynaptic potentials. Finally, the effects of 8-Br-cGMP were similar to those of the NO donor, indicating the possible involvement of a NO-sensitive guanylate cyclase, This was confirmed by preventing the synthesis of cGMP by sGC using ODQ, which caused the opposite effects to those of 8-Br-cGMP on the two response classes of interneurone, The results indicate that a NO-cGMP signal transduction pathway, in which NO regulates transmitter release from mechanosensory afferents onto intersegmental ascending interneurones, is probably present in the local circuits of the crayfish.
机译:关于突触水平的一氧化氮(NO)对处理机械感觉信号的局部电路中识别的中间神经元的作用知之甚少。在这里,我们检查了NO在小龙虾Pacifastacus leniusculus的末端腹部神经节中的作用,在该处它对17条由感觉神经电刺激介导的上升的中间神经元的突触输入具有调节作用。为了分析NO在感觉信号处理中的作用,我们对NO供体SNAP,NO清除剂PTIO,一氧化氮合酶(NOS)抑制剂L-NAME,NOS底物L-精氨酸,环状GMP( cGMP)类似物,8-Br-cGMP和可溶性鸟苷酸环化酶(sGC)抑制剂ODQ。这些化学物质对中间神经元突触输入的影响可分为两类。 NO供体SNAP增强了对一类中间神经元(第1类)的输入,而抑制了对另一类中间神经元(第2类)的输入。惰性异构体NAP和脱气SNAP都不会对这些相同类型的中间神经元的输入产生任何影响。NO清除剂PTIO引起的作用与NO供体SNAP的作用相反,表明内源性NO可能在局部回路中起作用。使用L-NAME阻止NO的合成具有与SNAP相对的效果,即对每个反应类别的中间神经元,通过应用L-精氨酸Led对类似于SNAP的两个中间神经元反应类别的作用来增加内源性NO的合成,综上所述,这些结果表明NO是介导兴奋性突触后电位幅度变化的活性成分。最后,8-Br-cGMP的作用与NO供体的相似,表明可能存在NO敏感的鸟苷酸环化酶。这可以通过使用ODQ防止sGC合成cGMP来证实,这引起相反的作用。相对于8 -Br-cGMP在中间神经元的两种反应类别上的结果,结果表明NO-cGMP信号转导途径可能在NO的局部回路中存在,其中NO调节递质从机械感觉传入体到节间性上升的中间神经元的释放。小龙虾。

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