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碱性成纤维细胞生长因子通过 MAP 激酶通路增加皮质神经元中的糖皮质激素受体。

Basic fibroblast growth factor increased glucocorticoid receptors in cortical neurons through MAP kinase pathway.

机构信息

Department of Mental Disorder Research, National Institute of Neuroscience, NCNP, Tokyo, Japan; Department of Cell Modulation, Institute of Molecular Embryology and Genetics, Kumamoto University, 2-2-1 Honjo, Chuo-ku, Kumamoto 860-0811, Japan.

Department of Mental Disorder Research, National Institute of Neuroscience, NCNP, Tokyo, Japan; Department of Cell Modulation, Institute of Molecular Embryology and Genetics, Kumamoto University, 2-2-1 Honjo, Chuo-ku, Kumamoto 860-0811, Japan; Department of Life Science and Medical Bioscience, School of Advanced Science and Engineering, Waseda University, Tokyo, Japan.

出版信息

Neurochem Int. 2018 Sep;118:217-224. doi: 10.1016/j.neuint.2018.06.009. Epub 2018 Jun 26.

Abstract

Prolonged and intense stress chronically increases blood concentration of glucocorticoids, which in turn causes downregulation of glucocorticoid receptor (GR) in the central nervous system (CNS). This process has been suggested to be involved in the pathogenesis of major depressive disorder (MDD). Here, we found that basic fibroblast growth factor (bFGF) increased the expression of GR in the rat cerebral cortex and cultured cortical neurons and restored the reduced GR expression caused by glucocorticoid exposure. Among intracellular signaling pathways stimulated by bFGF, extracellular signal-regulated kinase/mitogen-activated protein kinase (ERK/MAPK) pathway was responsible for the upregulation of GR. The bFGF-induced GR was functional as a transcription factor to enhance transcription of a target gene. Because high stress augments bFGF levels in the brain, it is likely that bFGF plays a compensating role for reduced GR expression after stress and thus should be studied as a therapeutic target for the treatment of MDD.

摘要

长期而剧烈的压力会使血液中的糖皮质激素浓度持续升高,进而导致中枢神经系统(CNS)中糖皮质激素受体(GR)的下调。这一过程被认为与重度抑郁症(MDD)的发病机制有关。在这里,我们发现碱性成纤维细胞生长因子(bFGF)可增加大鼠大脑皮层和培养的皮质神经元中 GR 的表达,并恢复糖皮质激素暴露引起的 GR 表达减少。在 bFGF 刺激的细胞内信号通路中,细胞外信号调节激酶/丝裂原活化蛋白激酶(ERK/MAPK)通路负责 GR 的上调。bFGF 诱导的 GR 作为转录因子发挥作用,增强靶基因的转录。由于高应激会增加大脑中的 bFGF 水平,因此 bFGF 很可能在应激后对 GR 表达减少起到代偿作用,因此应作为 MDD 治疗的治疗靶点进行研究。

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