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鲸脑衍生乙醇胺质体可刺激牛促性腺激素分泌卵泡刺激素和黄体生成素。

Ethanolamine plasmalogens derived from whale brain stimulate both follicle-stimulating hormone and luteinizing hormone secretion by bovine gonadotrophs.

机构信息

Joint Faculty of Veterinary Medicine, Yamaguchi University, Yamaguchi, Japan.

Institute of Cetacean Research, Tokyo, Japan.

出版信息

Anim Sci J. 2023 Jan-Dec;94(1):e13839. doi: 10.1111/asj.13839.

Abstract

Ethanolamine plasmalogens (EPls) are the only known ligands of a novel receptor, G protein-coupled receptor 61, and bovine brain EPls stimulate follicle-stimulating hormone (FSH) but not luteinizing hormone (LH), secreted by bovine gonadotrophs. We hypothesized that the brain EPls of whales (Balaenoptera edeni), another Cetartiodactyla with at least twice the lifespan of bovines, could stimulate FSH secretion by gonadotrophs. To test this hypothesis, bovine gonadotrophs (from approximately 2-year-old Japanese Black heifers) were cultured for 3.5 days and treated with increasing concentrations of brain EP1s from whales (approximately 22 years old). FSH and LH secretion was stimulated by all tested concentrations of whale EPls (p < 0.05). To clarify the important differences between bovine and whale EPls, we utilized two-dimensional liquid chromatography-mass spectrometry, which revealed 35 peaks. Among them, we observed significant differences between 12 EPl molecular species. Additionally, we identified differentially expressed genes for enzymes involved in EPl synthesis or degradation in the hypothalamus of young heifers and old cows (approximately 10 years old) as compared to whales (approximately 28 years old) via deep sequencing of the transcriptome. We conclude that whale brains contain unique EPls that stimulate both FSH and LH secretion by bovine gonadotrophs.

摘要

乙醇胺-plasmalogens (EPls) 是唯一已知的新型受体,G 蛋白偶联受体 61 的配体,牛脑 EPls 刺激卵泡刺激素 (FSH),但不刺激黄体生成素 (LH),由牛促性腺激素分泌。我们假设鲸鱼的脑 EPls(长须鲸),另一种具有比牛长两倍以上寿命的鲸类偶蹄目动物,可能刺激促性腺激素分泌 FSH。为了验证这一假设,我们培养了牛促性腺激素(来自大约 2 岁的日本黑母牛)3.5 天,并使用鲸鱼脑 EP1s(大约 22 岁)的不同浓度处理它们。所有测试浓度的鲸鱼 EPls 都刺激了 FSH 和 LH 的分泌(p<0.05)。为了阐明牛和鲸鱼 EPls 之间的重要差异,我们利用二维液相色谱-质谱联用技术,发现了 35 个峰。其中,我们观察到 12 种 EPl 分子物种之间存在显著差异。此外,我们通过对年轻小母牛和老牛(大约 10 岁)与鲸鱼(大约 28 岁)下丘脑的转录组进行深度测序,发现了参与 EPl 合成或降解的酶的差异表达基因。我们的结论是,鲸鱼大脑中含有独特的 EPls,可刺激牛促性腺激素同时分泌 FSH 和 LH。

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