首页> 美国卫生研究院文献>The Journal of Physiology >Developmental regulation of the 5-HT7 serotonin receptor and transcription factor NGFI-A in the fetal guinea-pig limbic system: influence of GCs
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Developmental regulation of the 5-HT7 serotonin receptor and transcription factor NGFI-A in the fetal guinea-pig limbic system: influence of GCs

机译:5-HT7血清素受体和转录因子NGFI-A在胎儿豚鼠边缘系统中的发育调控:GC的影响

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摘要

Fetal exposure to excess glucocorticoids (GCs) programs the developing hypothalamo–pituitary–adrenal (HPA) axis, and may predispose offspring to adult-onset disease. During development, serotonin (5-HT) influences transcription of hippocampal GR mRNA via the 5-HT7 receptor. The effect of 5-HT on GR involves the transcription factor NGFI-A. Given the developmental changes which we have previously reported in hippocampal GR mRNA expression, we hypothesized that (1) there are progressive developmental changes in 5-HT7 receptor and NGFI-A mRNA expression in the fetal guinea-pig limbic system, and (2) repeated exposure to synthetic GC treatment will significantly modify developmental expression of these genes. 5-HT7 receptor mRNA was highly expressed in the hippocampus and thalamus at gestational day (gd) 40 (term ∼70 days), and significantly decreased (P < 0.05) with advancing gestation. Conversely, NGFI-A mRNA expression in the hippocampus and frontal cortex was almost undetectable at gd40, but was dramatically elevated (P < 0.05; 8-fold) near term. Changes in mRNA were refelected by NGFI-A protein levels. These changes were significantly correlated to hippocampal GR expression and fetal plasma cortisol concentrations. Synthetic GC treatment increased NGFI-A mRNA levels in CA1 and the cingulate cortex, but had no effect on 5-HT7 receptor expression. In conclusion our results suggest that (1) limbic 5-HT7 receptor expression is not directly linked to maturation of hippocampal GR in late gestation; (2) the up-regulation of NGFI-A expression near term is driven by glucocorticoid; and (3) premature exposure to synthetic glucocorticoid significantly increases NGFI-A-related transcriptional activity in the fetal limbic system.
机译:胎儿暴露于过量的糖皮质激素(GCs)会影响正在发育的下丘脑-垂体-肾上腺(HPA)轴,并可能使后代易患成年性疾病。在发育过程中,血清素(5-HT)通过5-HT7受体影响海马GR mRNA的转录。 5-HT对GR的影响涉及转录因子NGFI-A。鉴于我们先前在海马GR mRNA表达中报道的发育变化,我们假设(1)胎儿豚鼠边缘系统中5-HT7受体和NGFI-A mRNA表达有逐渐发展的变化,以及(2)反复暴露于合成GC处理将显着改变这些基因的发育表达。 5-HT7受体mRNA在妊娠第40天(足月〜70天)在海马和丘脑中高表达,并且随着妊娠的进行而显着降低(P <0.05)。相反,在gd40时几乎未检测到海马和额叶皮层中NGFI-A mRNA的表达,但在短期内显着升高(P <0.05; 8倍)。 NGFI-A蛋白水平反映了mRNA的变化。这些变化与海马GR表达和胎儿血浆皮质醇浓度显着相关。合成GC处理增加了CA1和扣带回皮层中NGFI-A mRNA的水平,但对5-HT7受体的表达没有影响。总之,我们的结果表明:(1)边缘5-HT7受体的表达与妊娠后期海马GR的成熟没有直接关系; (2)NGFI-A表达在短期内上调是由糖皮质激素驱动的; (3)过早暴露于合成糖皮质激素会明显增加胎儿边缘系统中与NGFI-A相关的转录活性。

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