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杏仁核5-羟色胺转运体基因网络调节产后逆境对注意力问题的影响:解剖功能相关性和表观遗传变化

Amygdala 5-HTT Gene Network Moderates the Effects of Postnatal Adversity on Attention Problems: Anatomo-Functional Correlation and Epigenetic Changes.

作者信息

de Lima Randriely Merscher Sobreira, Barth Barbara, Arcego Danusa Mar, de Mendonça Filho Euclides José, Clappison Andrew, Patel Sachin, Wang Zihan, Pokhvisneva Irina, Sassi Roberto Britto, Hall Geoffrey B C, Kobor Michael S, O'Donnell Kieran J, Bittencourt Ana Paula Santana de Vasconcellos, Meaney Michael J, Dalmaz Carla, Silveira Patrícia Pelufo

机构信息

Programa de Pós-Graduação em Neurociências, Instituto de Ciências Básicas da Saúde (ICBS), Universidade Federal do Rio Grande do Sul, Porto Alegre, Brazil.

Integrated Program in Neuroscience (IPN), McGill University, Montreal, QC, Canada.

出版信息

Front Neurosci. 2020 Mar 17;14:198. doi: 10.3389/fnins.2020.00198. eCollection 2020.

Abstract

Variations in serotoninergic signaling have been related to behavioral outcomes. Alterations in the genome, such as DNA methylation and histone modifications, are affected by serotonin neurotransmission. The amygdala is an important brain region involved in emotional responses and impulsivity, which receives serotoninergic input. In addition, studies suggest that the serotonin transporter gene network may interact with the environment and influence the risk for psychiatric disorders. We propose to investigate whether/how interactions between the exposure to early life adversity and serotonin transporter gene network in the amygdala associate with behavioral disorders. We constructed a co-expression-based polygenic risk score (ePRS) reflecting variations in the function of the serotonin transporter gene network in the amygdala and investigated its interaction with postnatal adversity on attention problems in two independent cohorts from Canada and Singapore. We also described how interactions between ePRS-5-HTT and postnatal adversity exposure predict brain gray matter density and variation in DNA methylation across the genome. We observed that the expression-based polygenic risk score, reflecting the function of the amygdala 5-HTT gene network, interacts with postnatal adversity, to predict attention and hyperactivity problems across both cohorts. Also, both postnatal adversity score and amygdala ePRS-5-HTT score, as well as their interaction, were observed to be associated with variation in DNA methylation across the genome. Variations in gray matter density in brain regions linked to attentional processes were also correlated to our ePRS score. These results confirm that the amygdala 5-HTT gene network is strongly associated with ADHD-related behaviors, brain cortical density, and epigenetic changes in the context of adversity in young children.

摘要

血清素能信号传导的变化与行为结果有关。基因组的改变,如DNA甲基化和组蛋白修饰,会受到血清素神经传递的影响。杏仁核是参与情绪反应和冲动性的重要脑区,它接受血清素能输入。此外,研究表明血清素转运体基因网络可能与环境相互作用并影响精神疾病的风险。我们建议研究早年逆境暴露与杏仁核中的血清素转运体基因网络之间的相互作用是否以及如何与行为障碍相关联。我们构建了一个基于共表达的多基因风险评分(ePRS),以反映杏仁核中血清素转运体基因网络功能的变化,并在来自加拿大和新加坡的两个独立队列中研究了其与产后逆境对注意力问题的相互作用。我们还描述了ePRS - 5 - HTT与产后逆境暴露之间的相互作用如何预测全基因组的脑灰质密度和DNA甲基化变化。我们观察到,反映杏仁核5 - HTT基因网络功能的基于表达的多基因风险评分与产后逆境相互作用,以预测两个队列中的注意力和多动问题。此外,观察到产后逆境评分、杏仁核ePRS - 5 - HTT评分及其相互作用均与全基因组DNA甲基化变化相关。与注意力过程相关的脑区灰质密度变化也与我们的ePRS评分相关。这些结果证实,在幼儿逆境的背景下,杏仁核5 - HTT基因网络与ADHD相关行为、脑皮质密度和表观遗传变化密切相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac7f/7093057/aa019caced3d/fnins-14-00198-g0001.jpg

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