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促分泌素原神经肽 A 抑制雌性金鱼(鲫鱼)放射状胶质细胞中芳香化酶 B(cyp19a1b)的表达。

Secretoneurin-A inhibits aromatase B (cyp19a1b) expression in female goldfish (Carassius auratus) radial glial cells.

作者信息

Da Fonte Dillon F, Xing Lei, Mikwar Myy, Trudeau Vance L

机构信息

Department of Biology, University of Ottawa, Ontario K1N 6N5, Canada.

Department of Biology, University of Ottawa, Ontario K1N 6N5, Canada.

出版信息

Gen Comp Endocrinol. 2018 Feb 1;257:106-112. doi: 10.1016/j.ygcen.2017.04.014. Epub 2017 May 6.

Abstract

In the teleost brain, radial glial cells (RGCs) are the main macroglia and are stem-like progenitors that express key steroidogenic enzymes, including the estrogen-synthesizing enzyme, aromatase B (cyp19a1b). As a result, RGCs are integral to neurogenesis and neurosteroidogenesis, however little is known about the regulatory factors and signaling mechanisms that control these functions. A potential new role of the secretogranin II-derived neuropeptide secretoneurin A (SNa) in the control of goldfish (Carassius auratus) RGC function is the subject of this study. Immunohistochemistry revealed a close neuroanatomical relationship between RGCs and soma of SNa-immunoreactive magnocellular and parvocellular neurons in the preoptic nucleus of female goldfish. Five hours following intracerebroventricular injection of 0.2ng/g SNa cyp19a1b mRNA levels were decreased by 86% (P<0.05) in the hypothalamus and by 88% (P<0.05) in the telencephalon. In vitro, 24 h incubation with 500nM SNa decreased cyp19a1b mRNA by 51% (P<0.05) in cultured RGCs. These data provide evidence that SNa can regulate aromatase expression in goldfish RGCs. By regulating neuroestrogen production in RGCs SNa may therefore be implicated in the control of major estrogen-dependent functions of the preoptic region such as reproductive behavior and osmoregulation.

摘要

在硬骨鱼脑中,放射状胶质细胞(RGCs)是主要的大胶质细胞,是表达关键类固醇生成酶的干细胞样祖细胞,包括雌激素合成酶芳香化酶B(cyp19a1b)。因此,RGCs对于神经发生和神经类固醇生成不可或缺,然而对于控制这些功能的调节因子和信号机制知之甚少。本研究的主题是分泌粒蛋白II衍生的神经肽促分泌素A(SNa)在控制金鱼(Carassius auratus)RGC功能方面的潜在新作用。免疫组织化学显示,雌性金鱼视前核中RGCs与SNa免疫反应性大细胞和小细胞神经元的胞体之间存在密切的神经解剖学关系。脑室内注射0.2ng/g SNa 5小时后,下丘脑cyp19a1b mRNA水平降低了86%(P<0.05),端脑降低了88%(P<0.05)。在体外,用500nM SNa孵育24小时可使培养的RGCs中cyp19a1b mRNA降低51%(P<0.05)。这些数据提供了证据,表明SNa可以调节金鱼RGCs中的芳香化酶表达。因此,通过调节RGCs中的神经雌激素产生,SNa可能参与对视前区主要雌激素依赖性功能的控制,如生殖行为和渗透压调节。

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