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神经介素U缺乏会破坏大鼠的每日睾酮波动并降低其转轮活动。

Neuromedin U Deficiency Disrupts Daily Testosterone Fluctuation and Reduces Wheel-Running Activity in Rats.

作者信息

Otsuka Mai, Takeuchi Yu, Moriyama Maho, Egoshi Sakura, Goto Yuki, Gu Tingting, Kimura Atsushi P, Haraguchi Shogo, Yoshii Taishi, Takeuchi Sakae, Matsuyama Makoto, Bentley George E, Aizawa Sayaka

机构信息

Graduate School of Natural Science and Technology, Okayama University, Okayama 700-8530, Japan.

Department of Biology, Faculty of Science, Okayama University, Okayama 700-8530, Japan.

出版信息

Endocrinology. 2025 Jun 10;166(8). doi: 10.1210/endocr/bqaf102.

Abstract

The objective of this study was to elucidate the role of endogenous Neuromedin U (NMU) in rats by performing NMU knockout (KO). Male, but not female NMU KO rats exhibited decreased wheel-running activity vs wildtype (WT), although overall home cage activity was not affected. Plasma testosterone in WT rats varied significantly over the course of a day, with a peak at ZT1 and a nadir at ZT18, whereas in NMU KO rats testosterone remained stable throughout the day. Chronic administration of testosterone restored wheel-running activity in NMU KO rats to the same level as in WT rats, suggesting that the decrease in wheel-running activity in NMU KO rats is due to the disruption of the diurnal change of testosterone. Accordingly, expression of the luteinizing hormone beta subunit (Lhb) mRNA in the pars distalis of anterior pituitary was significantly lower in NMU KO rats; immunostaining revealed that the size of luteinizing hormone (LH)-expressing cells was also relatively small in those animals. In the brain of male WT rats, Nmu was highly expressed in the pars tuberalis, and the NMU receptor Nmur2 was highly expressed in the ependymal cell layer of the third ventricle. This study reveals a novel function of NMU and indicates that endogenous NMU in rats plays a role in the regulation of motivated activity via regulation of testosterone.

摘要

本研究的目的是通过进行神经介素U(NMU)基因敲除(KO)来阐明内源性NMU在大鼠中的作用。雄性而非雌性NMU基因敲除大鼠与野生型(WT)相比,转轮活动减少,尽管总体笼内活动未受影响。野生型大鼠的血浆睾酮在一天中变化显著,在ZT1时达到峰值,在ZT18时达到最低点,而在NMU基因敲除大鼠中,睾酮在一天中保持稳定。长期给予睾酮可使NMU基因敲除大鼠的转轮活动恢复到与野生型大鼠相同的水平,这表明NMU基因敲除大鼠转轮活动的减少是由于睾酮昼夜变化的破坏所致。因此,NMU基因敲除大鼠垂体前叶远侧部促黄体生成素β亚基(Lhb)mRNA的表达显著降低;免疫染色显示,这些动物中表达促黄体生成素(LH)的细胞大小也相对较小。在雄性野生型大鼠的大脑中,Nmu在结节部高度表达,而NMU受体Nmur2在第三脑室的室管膜细胞层高度表达。本研究揭示了NMU的一种新功能,并表明大鼠体内的内源性NMU通过调节睾酮在动机活动的调节中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/647c/12204324/ec261df0c199/bqaf102f9.jpg

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