Departments of Microbiology, New York University School of Medicine, New York, New York, USA.
Mol Cell Biol. 2013 Sep;33(18):3700-14. doi: 10.1128/MCB.00150-13. Epub 2013 Jul 22.
Abnormal glucocorticoid and neurotrophin signaling has been implicated in numerous psychiatric disorders. However, the impact of neurotrophic signaling on glucocorticoid receptor (GR)-dependent gene expression is not understood. We therefore examined the impact of brain-derived neurotrophic factor (BDNF) signaling on GR transcriptional regulatory function by gene expression profiling in primary rat cortical neurons stimulated with the selective GR agonist dexamethasone (Dex) and BDNF, alone or in combination. Simultaneous treatment with BDNF and Dex elicited a unique set of GR-responsive genes associated with neuronal growth and differentiation and also enhanced the induction of a large number of Dex-sensitive genes. BDNF via its receptor TrkB enhanced the transcriptional activity of a synthetic GR reporter, suggesting a direct effect of BDNF signaling on GR function. Indeed, BDNF treatment induces the phosphorylation of GR at serine 155 (S155) and serine 287 (S287). Expression of a nonphosphorylatable mutant (GR S155A/S287A) impaired the induction of a subset of BDNF- and Dex-regulated genes. Mechanistically, BDNF-induced GR phosphorylation increased GR occupancy and cofactor recruitment at the promoter of a BDNF-enhanced gene. GR phosphorylation in vivo is sensitive to changes in the levels of BDNF and TrkB as well as stress. Therefore, BDNF signaling specifies and amplifies the GR transcriptome through a coordinated GR phosphorylation-dependent detection mechanism.
异常的糖皮质激素和神经营养因子信号已被牵涉到许多精神疾病中。然而,神经营养因子信号对糖皮质激素受体(GR)依赖性基因表达的影响尚不清楚。因此,我们通过对原代大鼠皮质神经元进行基因表达谱分析,研究了脑源性神经营养因子(BDNF)信号对 GR 转录调控功能的影响,这些神经元分别用选择性 GR 激动剂地塞米松(Dex)和 BDNF 单独或联合刺激。BDNF 和 Dex 的同时处理会引发一组与神经元生长和分化相关的独特的 GR 反应基因,同时还增强了大量 Dex 敏感基因的诱导。BDNF 通过其受体 TrkB 增强了合成 GR 报告基因的转录活性,这表明 BDNF 信号对 GR 功能有直接影响。事实上,BDNF 处理会诱导 GR 在丝氨酸 155(S155)和丝氨酸 287(S287)处发生磷酸化。非磷酸化突变体(GR S155A/S287A)的表达会损害一部分由 BDNF 和 Dex 调节的基因的诱导。从机制上讲,BDNF 诱导的 GR 磷酸化增加了 GR 在 BDNF 增强基因启动子上的占据和辅助因子募集。GR 磷酸化在体内对 BDNF 和 TrkB 水平以及应激的变化敏感。因此,BDNF 信号通过协调的 GR 磷酸化依赖检测机制来特异性和放大 GR 转录组。