首页> 美国卫生研究院文献>The Journal of Neuroscience >Mauthner Cell-Initiated Electromotor Behavior Is Mediated via NMDA and Metabotropic Glutamatergic Receptors on Medullary Pacemaker Neurons in a Gymnotid Fish
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Mauthner Cell-Initiated Electromotor Behavior Is Mediated via NMDA and Metabotropic Glutamatergic Receptors on Medullary Pacemaker Neurons in a Gymnotid Fish

机译:Mauthner细胞启动的电动行为通过NMDA和代谢型谷氨酸能受体介导在裸斑鱼鱼的髓质起搏器神经元上。

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摘要

Weakly electric fish generate meaningful electromotor behaviors by specific modulations of the discharge of their medullary pacemaker nucleus from which the rhythmic command for each electric organ discharge (EOD) arises. Certain electromotor behaviors seem to involve the activation of specific neurotransmitter receptors on particular target cells within the nucleus, i.e., on pacemaker or on relay cells. This paper deals with the neural basis of the electromotor behavior elicited by activation of Mauthner cells in Gymnotus carapo. This behavior consists of an abrupt and prolonged increase in the rate of the EOD. The effects of specific glutamate agonists and antagonists on basal EOD frequency and on EOD accelerations induced by Mauthner cell activation were assessed. Injections of both ionotropic (AMPA, kainate, and NMDA) and metabotropic (trans-(±)-1-amino-1,3-cyclopentanedicarboxylic acid) glutamate agonists induced increases in EOD rate that were maximal when performed close to the soma of pacemaker cells. In contrast, injections in the proximity of relay cells were ineffective. Therefore, pacemaker neurons are probably endowed with diverse glutamate receptor subtypes, whereas relay cells are probably not. The Mauthner cell-evoked electromotor behavior was suppressed by injections of AP-5 and (±)-amino-4-carboxy-methyl-phenylacetic acid, NMDA receptor and metabotropic glutamate receptor antagonists, respectively. Thus, this electromotor behavior relies on the activation of the NMDA and metabotropic glutamate receptor subtypes of pacemaker cells. Our study gives evidence for the synergistic effects of NMDA and metabotropic receptor activation and shows how a simple circuit can produce specific electromotor outputs.
机译:弱电鱼通过特定调节其起搏器髓核的放电来产生有意义的电动机行为,由此产生每个电子器官放电(EOD)的节律命令。某些电动行为似乎涉及细胞核内特定靶细胞(即起搏器或中继细胞)上特定神经递质受体的激活。本文研究了金龟子中Mauthner细胞活化引起的电动行为的神经基础。此行为包括EOD速率突然且长时间增加。评估了特定的谷氨酸激动剂和拮抗剂对基础EOD频率和Mauthner细胞活化诱导的EOD加速的影响。离子型(AMPA,海藻酸酯和NMDA)和代谢型(反式((±)-1-氨基-1,3-环戊二羧酸))谷氨酸激动剂的注射诱导的EOD速率增加,在接近起搏器的体腔时最大细胞。相反,中继细胞附近的注射无效。因此,起搏器神经元可能具有多种谷氨酸受体亚型,而中继细胞则可能没有。分别注射AP-5和(±)-氨基-4-羧基-甲基-苯基乙酸,NMDA受体和代谢型谷氨酸受体拮抗剂可抑制Mauthner诱发的电动机行为。因此,这种电动行为依赖于起搏细胞的NMDA和代谢型谷氨酸受体亚型的激活。我们的研究为NMDA和代谢型受体激活的协同作用提供了证据,并显示了简单电路如何产生特定的电动机输出。

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