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母体舔舐通过甲状腺激素-血清素-NGFI-A 信号级联调节海马糖皮质激素受体转录。

Maternal licking regulates hippocampal glucocorticoid receptor transcription through a thyroid hormone-serotonin-NGFI-A signalling cascade.

机构信息

Sackler Program for Epigenetics and Psychobiology, Douglas Mental Health University Institute, McGill University, , 6875 Boul. LaSalle, Montréal, Québec, Canada , H4H1R3.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2012 Sep 5;367(1601):2495-510. doi: 10.1098/rstb.2012.0223.

Abstract

Variations in parental care direct phenotypic development across many species. Variations in maternal pup licking/grooming (LG) in the rat regulate the development of individual differences in hypothalamic-pituitary-adrenal responses to stress. The adult offspring of mothers that show an increased frequency of pup LG have increased hippocampal glucocorticoid receptor (GR) expression and more modest pituitary-adrenal responses to stress. This parental effect is mediated by the epigenetic programming of a GR exon 1 promoter (exon 1(7)) through the binding of the transcription factor nerve growth factor-inducible factor A (NGFI-A). In this paper, we report that: (i) the association of NGFI-A with the exon 1(7) GR promoter is dynamically regulated by mother-pup interactions; (ii) this effect is mimicked by artificial tactile stimulation comparable to that provided by pup LG; (iii) that serotonin (5-HT) induces an NGFI-A-dependent increase in GR transcription in hippocampal neurons and NGFI-A overexpression is sufficient for this effect; and (iv) that thyroid hormones and 5-HT are key mediators of the effects of pup LG and tactile stimulation on NGFI-A binding to the exon 1(7) GR promoter in hippocampus. These findings suggest that pup LG directly activates 5-HT systems to initiate intracellular signalling pathways in the hippocampus that regulate GR transcription.

摘要

父母照顾的变化会直接影响许多物种的表型发育。在大鼠中,母体对幼崽的舔舐/梳理(LG)频率的变化会调节下丘脑-垂体-肾上腺对压力的反应的个体差异的发展。LG 频率增加的母亲的成年后代,其海马糖皮质激素受体(GR)表达增加,对压力的垂体肾上腺反应更为温和。这种亲代效应是通过神经生长因子诱导因子 A(NGFI-A)的转录因子结合,对 GR 外显子 1 启动子(exon 1(7))的表观遗传编程介导的。在本文中,我们报告:(i)NGFI-A 与 exon 1(7) GR 启动子的结合通过母幼互动受到动态调节;(ii)这种效应可通过与幼崽 LG 提供的类似的人工触觉刺激来模拟;(iii)血清素(5-HT)诱导海马神经元中 GR 转录的 NGFI-A 依赖性增加,而 NGFI-A 的过表达足以产生这种效应;以及(iv)甲状腺激素和 5-HT 是幼崽 LG 和触觉刺激对海马中 exon 1(7) GR 启动子上 NGFI-A 结合的影响的关键介质。这些发现表明,幼崽 LG 直接激活 5-HT 系统,在海马中启动调节 GR 转录的细胞内信号通路。

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