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Identification of neuromedin S and its possible role in the mammalian circadian oscillator system

机译:神经介素S的鉴定及其在哺乳动物昼夜节律系统中的可能作用

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摘要

The discovery of neuropeptides has resulted in an increased understanding of novel regulatory mechanisms of certain physiological phenomena. Here we identify a novel neuropeptide of 36 amino-acid residues in rat brain as an endogenous ligand for the orphan G protein-coupled receptor FM-4/TGR-1, which was identified to date as the neuromedin U (NMU) receptor, and designate this peptide ‘neuromedin S (NMS)' because it is specifically expressed in the suprachiasmatic nuclei (SCN) of the hypothalamus. NMS shares a C-terminal core structure with NMU. The NMS precursor contains another novel peptide. NMS mRNA is highly expressed in the central nervous system, spleen and testis. In rat brain, NMS expression is restricted to the core of the SCN and has a diurnal peak under light/dark cycling, but remains stable under constant darkness. Intracerebroventricular administration of NMS in rats activates SCN neurons and induces nonphotic type phase shifts in the circadian rhythm of locomotor activity. These findings suggest that NMS in the SCN is implicated in the regulation of circadian rhythms through autocrine and/or paracrine actions.
机译:神经肽的发现导致人们对某些生理现象的新型调节机制有了更多的了解。在这里,我们确定了大鼠脑中36个氨基酸残基的新型神经肽,作为​​孤儿G蛋白偶联受体FM-4 / TGR-1的内源性配体,该受体迄今已被确定为Neuromedin U(NMU)受体,并且之所以指定此肽为“ neuromedin S(NMS)”,是因为其在下丘脑的视交叉上核(SCN)中特异性表达。 NMS与NMU共享C端核心结构。 NMS前体包含另一种新型肽。 NMS mRNA在中枢神经系统,脾脏和睾丸中高表达。在大鼠大脑中,NMS表达仅限于SCN的核心,在明/暗循环下具有昼夜峰,但在恒定黑暗下仍保持稳定。在大鼠的脑室内进行NMS激活SCN神经元,并在运动活动的昼夜节律中诱导非光性类型的相移。这些发现表明,SCN中的NMS通过自分泌和/或旁分泌的作用参与了昼夜节律的调节。

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