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Presynaptic and postsynaptic effects of neuropeptide Y in the rat pineal gland.

作者信息

Simonneaux V, Ouichou A, Craft C, Pévet P

机构信息

Neurobiologie des Fonctions Rythmiques et Saisonnières, URA-CNRS 1332, Université Louis Pasteur, Strasbourg, France.

出版信息

J Neurochem. 1994 Jun;62(6):2464-71. doi: 10.1046/j.1471-4159.1994.62062464.x.

DOI:10.1046/j.1471-4159.1994.62062464.x
PMID:8189249
Abstract

Neuropeptide Y is colocalized with noradrenaline in sympathetic fibers innervating the rat pineal gland. In this article we present a study of the effects and mechanisms of action of neuropeptide Y on the pineal noradrenergic transmission, the main input leading to the rhythmic secretion of melatonin. At the presynaptic level, neuropeptide Y inhibits by 45%, with an EC50 of 50 nM, the potassium-evoked noradrenaline release from pineal nerve endings. This neuropeptide Y inhibition occurs via the activation of pertussis toxin-sensitive G protein-coupled neuropeptide Y-Y2 receptors and is independent from, but additive to, the alpha 2-adrenergic inhibition of noradrenaline release. At the postsynaptic level, neuropeptide Y decreases by a maximum of 35%, with an EC50 of 5 nM, the beta-adrenergic induction of cyclic AMP elevation via the activation of neuropeptide Y-Y1 receptors. This moderate neuropeptide Y-induced inhibition of cyclic AMP accumulation, however, has no effect on the melatonin secretion induced by a beta-adrenergic stimulation. On the contrary, in the presence of 1 mM ascorbic acid, neuropeptide Y potentiates (up to threefold) the melatonin secretion. In conclusion, this study has demonstrated that neuropeptide Y modulates the noradrenergic transmission in the rat pineal gland at both presynaptic and postsynaptic levels, using different receptor subtypes and transduction pathways.

摘要

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Adrenergic and peptidergic control of the regulation of cAMP efflux and melatonin secretion from perifused rat pineal gland.肾上腺素能和肽能对灌流大鼠松果体中环磷酸腺苷流出及褪黑素分泌调节的控制
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Multiple NPY receptors coexist in pre- and postsynaptic sites: inhibition of GABA release in isolated self-innervating SCN neurons.多种神经肽Y受体共存于突触前和突触后位点:对分离的自支配视交叉上核神经元中γ-氨基丁酸释放的抑制作用
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Neuropeptide Y depresses GABA-mediated calcium transients in developing suprachiasmatic nucleus neurons: a novel form of calcium long-term depression.神经肽Y抑制发育中视交叉上核神经元中γ-氨基丁酸介导的钙瞬变:一种新型的钙长期抑制形式。
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