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胎盘中依赖血清素转运体的组蛋白血清素化作用对神经发育转录组有贡献。

Serotonin transporter-dependent histone serotonylation in placenta contributes to the neurodevelopmental transcriptome.

作者信息

Chan Jennifer C, Alenina Natalia, Cunningham Ashley M, Ramakrishnan Aarthi, Shen Li, Bader Michael, Maze Ian

机构信息

Nash Family Department of Neuroscience, Friedman Brain Institute, Icahn School of Medicine at Mount Sinai, New York, NY, USA.

Max-Delbrück-Center for Molecular Medicine (MDC), Berlin, Germany.

出版信息

bioRxiv. 2023 Nov 14:2023.11.14.567020. doi: 10.1101/2023.11.14.567020.

Abstract

Brain development requires appropriate regulation of serotonin (5-HT) signaling from distinct tissue sources across embryogenesis. At the maternal-fetal interface, the placenta is thought to be an important contributor of offspring brain 5-HT and is critical to overall fetal health. Yet, how placental 5-HT is acquired, and the mechanisms through which 5-HT influences placental functions, are not well understood. Recently, our group identified a novel epigenetic role for 5-HT, in which 5-HT can be added to histone proteins to regulate transcription, a process called H3 serotonylation. Here, we show that H3 serotonylation undergoes dynamic regulation during placental development, corresponding to gene expression changes that are known to influence key metabolic processes. Using transgenic mice, we demonstrate that placental H3 serotonylation largely depends on 5-HT uptake by the serotonin transporter (SERT/SLC6A4). SERT deletion robustly reduces enrichment of H3 serotonylation across the placental genome, and disrupts neurodevelopmental gene networks in early embryonic brain tissues. Thus, these findings suggest a novel role for H3 serotonylation in coordinating placental transcription at the intersection of maternal physiology and offspring brain development.

摘要

大脑发育需要在胚胎发育过程中对来自不同组织来源的血清素(5-羟色胺,5-HT)信号进行适当调节。在母胎界面,胎盘被认为是子代大脑5-HT的重要贡献者,对胎儿整体健康至关重要。然而,胎盘5-HT是如何获得的,以及5-HT影响胎盘功能的机制,目前尚不清楚。最近,我们的研究小组发现了5-HT的一种新的表观遗传作用,即5-HT可以添加到组蛋白中以调节转录,这一过程称为H3血清素化。在这里,我们表明H3血清素化在胎盘发育过程中经历动态调节,这与已知影响关键代谢过程的基因表达变化相对应。使用转基因小鼠,我们证明胎盘H3血清素化很大程度上依赖于血清素转运体(SERT/SLC6A4)对5-HT的摄取。SERT缺失显著降低了胎盘基因组中H3血清素化的富集,并破坏了早期胚胎脑组织中的神经发育基因网络。因此,这些发现表明H3血清素化在协调母体生理和子代大脑发育交叉点的胎盘转录方面具有新作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b7d/10680709/baa576e450aa/nihpp-2023.11.14.567020v1-f0001.jpg

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