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促性腺激素释放激素调节 SH-SY5Y 细胞中的胆固醇合成和类固醇生成。

Gonadotropin-releasing hormone modulates cholesterol synthesis and steroidogenesis in SH-SY5Y cells.

机构信息

Endocrine Unit, Department of Clinical Physiopathology, University of Florence, Viale G. Pieraccini 6, 50139 Firenze, Italy.

出版信息

J Steroid Biochem Mol Biol. 2011 Apr;124(3-5):77-83. doi: 10.1016/j.jsbmb.2011.01.012. Epub 2011 Feb 3.

Abstract

Neurosteroids are involved in Central Nervous System development, brain functionality and neuroprotection but little is known about regulators of their biosynthesis. Recently gonadotropins, Gonadotropin-releasing Hormone (GnRH) and their receptors have been localized in different brain regions, such as hippocampus and cortex. Using human neuronal-like cells we found that GnRH up-regulates the expression of key genes of cholesterol and steroid synthesis when used in a narrow range around 1.0 nM. The expression of Hydroxysterol D24-reductase (seladin-1/DHCR24), that catalyzes the last step of cholesterol biosynthesis, is increased by 50% after 90 min of incubation with GnRH. StAR protein and P450 side chain cleavage (P450scc) are up-regulated by 3.3 times after 90 min and by 3.5 times after 3 h, respectively. GnRH action is mediated by LH and 1.0 nM GnRH enhances the expression of LHβ as well. A two fold increase of cell cholesterol is induced after 90 min of GnRH incubation and 17β-estradiol (E2) production is increased after 24, 48 and 72 h. These data indicate for the first time that GnRH regulates both cholesterol and steroid biosynthesis in human neuronal-like cells and suggest a new physiological role for GnRH in the brain.

摘要

神经甾体参与中枢神经系统发育、脑功能和神经保护,但关于其生物合成的调节剂知之甚少。最近,促性腺激素、促性腺激素释放激素 (GnRH) 及其受体已在海马体和皮质等不同脑区定位。使用人类神经样细胞,我们发现 GnRH 在 1.0 nM 左右的狭窄范围内使用时会上调胆固醇和类固醇合成的关键基因的表达。羟甾醇 D24-还原酶 (seladin-1/DHCR24) 的表达在与 GnRH 孵育 90 分钟后增加了 50%,该酶催化胆固醇生物合成的最后一步。StAR 蛋白和 P450 侧链裂解 (P450scc) 在 90 分钟后分别上调 3.3 倍和 3.5 倍。GnRH 作用是通过 LH 介导的,而 1.0 nM GnRH 也增强了 LHβ的表达。在 GnRH 孵育 90 分钟后,细胞胆固醇增加了两倍,17β-雌二醇 (E2) 的产生在 24、48 和 72 小时后增加。这些数据首次表明,GnRH 调节人类神经样细胞中的胆固醇和类固醇生物合成,并提示 GnRH 在大脑中的新的生理作用。

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