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环境富集增加前额叶皮层中的 Bdnf 转录本:对受表观遗传控制机制的影响。

Environmental Enrichment Increased Bdnf Transcripts in the Prefrontal Cortex: Implications for an Epigenetically Controlled Mechanism.

机构信息

Pharmacology Department, Institute of Biomedical Sciences, University of São Paulo, São Paulo, Brazil.

School of Biosciences & Medicine, Faculty of Health & Medical Sciences, University of Surrey, Guildford, UK.

出版信息

Neuroscience. 2023 Aug 21;526:277-289. doi: 10.1016/j.neuroscience.2023.07.001. Epub 2023 Jul 5.

Abstract

Environmental enrichment (EE) is a condition characterized by its complexity regarding social contact, exposure to novelty, tactile stimuli and voluntary exercise, also is considered as a eustress model. The impact of EE on brain physiology and behavioral outcomes may be at least partly underpinned by mechanisms involving the modulation of the brain-derived neurotrophic factor (BDNF), but the connection between specific Bdnf exon expression and their epigenetic regulation remain poorly understood. This study aimed to dissect the transcriptional and epigenetic regulatory effect of 54-day exposure to EE on BDNF by analysing individual BDNF exons mRNA expression and the DNA methylation profile of a key transcriptional regulator of the Bdnf gene, exon IV, in the prefrontal cortex (PFC) of C57BL/6 male mice (sample size = 33). Bdnf exons II, IV, VI and IX mRNA expression were upregulated and methylation levels at two CpG sites of exon IV were reduced in the PFC of EE mice. As deficit in exon IV expression has also been causally implicated in stress-related psychopathologies, we also assessed anxiety-like behavior and plasma corticosterone levels in these mice to determine any potential correlation. However, no changes were observed in EE mice. The findings may suggest an EE-induced epigenetic control of BDNF exon expression via a mechanism involving exon IV methylation. The findings of this study contribute to the current literature by dissecting the Bdnf gene topology in the PFC where transcriptional and epigenetic regulatory effect of EE takes place.

摘要

环境丰富(EE)是一种以社会接触、接触新奇事物、触觉刺激和自愿运动为特征的复杂状态,也被认为是一种正应激模型。EE 对大脑生理学和行为结果的影响可能至少部分归因于涉及脑源性神经营养因子(BDNF)调节的机制,但特定 Bdnf 外显子表达与它们的表观遗传调控之间的联系仍知之甚少。本研究旨在通过分析 C57BL/6 雄性小鼠前额叶皮质(PFC)中单个 BDNF 外显子 mRNA 表达和 Bdnf 基因关键转录调节剂外显子 IV 的 DNA 甲基化谱,剖析 54 天 EE 暴露对 BDNF 的转录和表观遗传调节作用(样本量=33)。EE 小鼠的 Bdnf 外显子 II、IV、VI 和 IX 的 mRNA 表达上调,外显子 IV 的两个 CpG 位点的甲基化水平降低。由于外显子 IV 的表达缺失也与应激相关的精神病理学有关,我们还评估了这些小鼠的焦虑样行为和血浆皮质酮水平,以确定任何潜在的相关性。然而,在 EE 小鼠中没有观察到变化。这些发现可能表明,EE 通过涉及外显子 IV 甲基化的机制,对 BDNF 外显子表达进行了表观遗传控制。本研究的结果通过剖析 EE 发生转录和表观遗传调节的 PFC 中的 Bdnf 基因拓扑结构,为当前文献做出了贡献。

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