Institute of Genome Biology, Leibniz Institute for Farm Animal Biology (FBN), Dummerstorf, Germany.
Neuroendocrinology. 2022;112(3):235-251. doi: 10.1159/000516500. Epub 2021 Apr 14.
Glucocorticoid (GC) receptor (GR) signaling in the hypothalamus (Hyp) and in the superordinate limbic structures, such as the hippocampus (Hip), conveys feedback regulation of the neuroendocrine stress response and acts upon other neurobiological functions that ultimately influence mental health. These responses are strongly influenced by sex, but the molecular causes are still largely unexplored.
To investigate GR targets and their GC sensitivity in the Hyp and Hip, we treated juvenile male and female piglets with 10 (D10) or 60 (D60) µg/kg dexamethasone (DEX), a selective GR agonist, and analyzed transcriptome responses compared to a saline control group using RNA sequencing.
Both doses influenced similar biological functions, including cellular response to lipid and immune cell-related functions, but the transcriptional response to D10 was considerably weaker, particularly in the Hip. Weighted Gene Co-expression Network Analysis revealed a network of genes coordinately regulated by DEX in both structures, among which the alpha-arrestin ARRDC2 takes a central position. Distinct functional groups of genes were differentially regulated by DEX between sexes depending on the dose; at D10, these included particularly mitochondrial genes, whereas at D60 interferon signaling and lipid homeostasis genes were enriched. The general and sex-specific transcriptional responses to DEX highlight microglia as the prominent target. Several key marker genes of disease-associated microglia were regulated by DEX depending on sex, such as TREM2 and LPL.
The discovered expression signatures suggest that DEX induced a dysfunctional state of microglia in males, while in females microglia were primed, which could entail predisposition for different mental disorders.
糖皮质激素(GC)受体(GR)在下丘脑(Hyp)和上级边缘结构(如海马(Hip))中的信号传递,对神经内分泌应激反应进行反馈调节,并作用于其他神经生物学功能,最终影响心理健康。这些反应受性别强烈影响,但分子原因仍在很大程度上尚未被探索。
为了研究 Hyp 和 Hip 中 GR 的靶标及其 GC 敏感性,我们用 10(D10)或 60(D60)μg/kg 地塞米松(DEX),一种选择性 GR 激动剂,处理幼年公猪和母猪,并与生理盐水对照组相比使用 RNA 测序分析转录组反应。
两种剂量都影响了类似的生物学功能,包括细胞对脂质和免疫细胞相关功能的反应,但 D10 的转录反应要弱得多,特别是在 Hip 中。加权基因共表达网络分析显示,DEX 在这两种结构中协调调节的基因网络,其中α-arrestin ARRDC2 处于中心位置。根据剂量,DEX 对雄性和雌性的基因调控存在明显的性别差异;在 D10 时,这些基因包括特别的线粒体基因,而在 D60 时,干扰素信号和脂质稳态基因被富集。DEX 对一般和性别特异性转录反应的研究强调了小胶质细胞是主要的靶标。几种与疾病相关的小胶质细胞的关键标记基因(如 TREM2 和 LPL)也受到 DEX 的性别依赖性调节。
所发现的表达特征表明,DEX 在雄性中诱导小胶质细胞功能失调,而在雌性中则使小胶质细胞处于预备状态,这可能导致不同的精神障碍易感性。